RSS Feed
Tampilkan postingan dengan label sustainability. Tampilkan semua postingan
Tampilkan postingan dengan label sustainability. Tampilkan semua postingan

Washington Dialogue on Sustainable Palm Oil – NGOs Fail to Sabotage Event

Posted by Flora Sawita Labels: , , , , , , ,

Palm oil is green and sustainable too. Just like trees, it absorbs carbon and releases oxygenRecently, the Malaysian and Indonesian Ministers in charge of the palm oil industry had a roundtable dialogue with US NGOs, government officials and other food and non-food customers to discuss palm oil sustainability issues. Both the Malaysian and Indonesian delegation members were keen to hear green NGOs views and were prepared to provide counter viewpoints explaining how palm oil is produced sustainably in their respective countries.

What I have noticed lately is that the ultra green NGOs often fail to attend these dialogues. They prefer instead to raise their same old issues not in a face to face manner, but via their media channels on the internet, where they can repeat their infamous allegations on oil palm linking it to deforestation. This time, they broadcasted their counter views through the internet just a few days after the dialogue ended when the Ministers had returned home to their respective countries. In fact, our organizers informed us that the NGOs were so paranoid about the dialogue being held that they sent out emails twice unethically informing all invitees that the dialogue had been cancelled! The unscrupulous attempt to sabotage the meeting did not work and merit our condemnation. More than 50 important stakeholders including friendly NGOs attended the meeting. Nevertheless, we have to take this threat seriously. Next time around, the sabotage could be life threatening.

The Ministers decided to make a trip to the land of the green NGOs to dialogue on palm oil sustainability and to convey their convictions that palm oil does not cause any significant deforestation nor does it contribute significantly to greenhouse gas emissions(GHG). They were ready to explain these to the dialogue participants and additionally, share the more important secret of the vital contribution of palm oil towards global food security, national employment opportunities and lifting developing country farmers out of poverty. Palm oil as an agricultural crop has that potential.

I did notice, in reading the ultra green NGO statements which make reference to issues raised at the dialogue, that the information they received from their friends present at the meeting seemed to have deviated substantially from the original consensus arrived at the dialogue. All questions were fully answered by the delegation from Malaysia and Indonesia during the dialogue which ended with everyone fairly contented that their doubts and wrong perceptions were satisfactorily addressed.

During the dialogue, I elaborated on the progress made towards ensuring that our palm oil is the most sustainable in the oils and fats industry and this is restated as follows:-

Globally accepted definition of sustainability contains the three Ps: concern for the People, Planet and Profit. Palm oil fits the three Ps rather strategically.

1. People: People globally benefit from palm oil through improved food security and an access to cheaper supply of cooking oil; and for the two main producer countries, namely Malaysia and Indonesia, palm oil earns an estimated US$40 billion a year in terms of export revenue. Most of the income would be well distributed to families in the rural farming communities who can then send their children for basic education which will enable them to earn a decent living in future, and live comfortably in the modern world where hand phones are a common need and ipads are occasionally a new household item to replace the need to buy newspapers.

Green NGO allegations of oil palm plantations encroaching into land belonging to indigenous people in Borneo are already being addressed by the authorities. The indigenous people truly want a share of income from the development of the land in the vicinity of their traditional villages and long houses. Oil palm will help them achieve this, thus enabling them to have an assured income as opposed to their past and traditional practice of cutting logs and hunting animals from the forest (often illegally and unsustainably). In Malaysia, the authorities are undertaking perimeter survey of indigenous people community land-claims to ensure ownership is clearly established and overlapping claims on land are minimized. This will take some time to resolve and in all cases, the courts are there to help settle outstanding issues. Developed countries should understand that developing countries have to face such unresolved issues. That is why we are called developing countries.

2. Planet: Planet means environment conservation. Oil palm occupies only 6 % of the total land area of Indonesia. The ultra green NGO allegations that 2 million hectares of forests are destroyed to make way for oil palm cultivation every year in Indonesia is pure rubbish. The arithmetic simply does not add up. With these half baked figures, there would be 20 million hectares of oil palm plantations added between the year 2000 and 2010. The fact remains that Indonesia has only over 7 million hectares of oil palm plantations and not over 20 million hectares as implied by the ultra green NGOs!

Malaysia has a land area of 33 million hectares. It has envisaged that its total oil palm plantations of 4.85 million hectares are part of it allowable agricultural land which occupies about 25 % of the total land area of the country. The country has pledged to keep at least 50 % of its land area as permanent forest. The remaining 25 % of the country’s land area would be utilized for industrial development, cities, towns and villages and other infrastructural facilities such as roads and highways, recreation areas, lakes and other water bodies. Under this strategy, the entire palm oil produced in Malaysia is already sustainable as it has a balanced provision of permanent forest and agriculture areas that meet the standard practiced by any developed country. Ideally, certification for sustainability should be undertaken for the whole country as one production unit for palm oil. All the elements relating to palm oil’s sustainability, such as the need to conserve forests, are met when the whole country is regarded as one production facility for palm oil.

Ironically, the oil produced by developed countries is not sustainable and cannot be certified sustainable partly because it is often genetically modified and NGOs such as WWF have not been successful in forcing the US soyabean farmers to agree to have a sustainability scheme for soya bean oil.

3. Profit: The profit component in the requirement for sustainability is sufficiently met by palm oil production. Oil palm cultivation has undergone many cycles of replanting and yields have been maintained at a high level reflecting no deterioration in land fertility. The high yield of 10 times that of rivals such as soyabean means that oil palm plantations remain profitable whether operated by big plantation operators or by smallholders.

Misguided campaigns against palm oil
The current contention by green NGOs that only WWF introduced RSPO certified palm oil must be used in their countries is a big disservice to the thousands of small oil palm farmers globally who aspire to have fair access for their palm oil into the world markets. These farmers have similar aspirations to those of developed country small farmers who hope to export competing oilseeds and oils that they produce to the rest of the world. The recent initiative of green NGOs to use girl scouts to propagate campaigns against palm oil is indeed shameful. It will only poison their young minds by teaching them to spread lies. Their actions may well lead to a restricted market access for palm oil which will affect the livelihood of millions of poor farmers in the developing countries. Without a steady source of income, poor farmers and rural communities who need to survive will resort to more deforestation and animal hunting, leading to unsustainable conservation of forests and wildlife. Will the girl scouts take responsibility for putting developing country farmers and their families into a life of misery?

The ultra green NGOs, the green politicians and some concerned individual consumers who act against palm oil should read the latest interview given by a WWF official where he states that the anti-palm oil campaign is a result of their environmental protection strategy based on their skewed definition of sustainability and transformation of markets.. WWF, as claimed, has identified some 15 top sectors with environmental risk which needs to be saved from further destruction. It appears that only environmental conservation is important in their definition of sustainability and not the 3 Ps as practiced universally. According to the WWF philosophy, as long as there is deforestation, the producers will be harassed accordingly. In addition, big international corporations have been identified to be shamed for using ‘unsustainable’ raw materials. WWF has proudly cited palm oil as their most successful project where some 6% of palm oil exports has been certified through the WWF introduced RSPO scheme for the last two years, while for other commodities, there was a poor success rate of the WWF initiated certification campaigns with no more than 1 % adoption after years of campaigning.

Palm oil producers did realize the skewed definition of sustainability propagated by WWF. As palm oil is already highly sustainable, the producers nevertheless agreed to give the RSPO scheme a try, hoping that those needing certified palm oil can have access to such products. It does not mean that non-certified palm oil is less sustainable or not sustainable. It is just that it has not undergone a certification process. For example, small holders who have operated their oil palm plantations for generations cannot afford the certification cost. WWF or other NGOs have not provided them with financial assistance to enable them to be certified. The RSPO scheme, if made mandatory will mean that the smallholders who are long established farmers (nothing to do with deforestation) will be victimized and their produce will be denied market access because they do not have the money to employ costly foreign auditors to certify their farms as per RSPO criteria in order to have certification for the palm oil produced.

It is therefore important for WWF to revise its strategy and devise a better scheme to include participation of the small holders which form 40% of the producers of palm oil in Malaysia. One way is to regard the whole country as one production unit for producing palm oil sustainably. Sustainable principles and criteria can be devised accordingly at a macro level to ensure there is proper balance between the need for the three Ps. Malaysia is probably ready to adopt such a scheme if NGOs such as WWF can support this move. Otherwise, there will continue to be a clash of definitions relating to sustainability. The end result will be a lose-lose situation with WWF failing to save the forests and conserving the environment and the oil palm farmers becoming victims of vicious NGO campaigns.

No sovereign government will agree to subject its most important economic sector such as oil palm to be dictated by NGOs such as WWF on how to produce this crop. This is akin to allowing backdoor legislation where rules governing the country’s land resources are made not in parliament but by NGO driven organizations such as the RSPO.

Fearing that the monopoly of the WWF initiated RSPO scheme for palm oil will cost producers dearly, the Indonesians have established an alternative national sustainability scheme for palm oil (ISPO) to compete with the RSPO. ISPO is offering sustainability guarantee on a macro national scale since it is mandatory for all producers to comply. In addition, Indonesia has already initiated a moratorium on deforestation, to further give assurance that their oil palm cultivation does not cause deforestation.

Similarly, the Malaysians would probably introduce their own national sustainability scheme (MSPO) to be operated on a macro level by viewing the whole country as a single production unit for palm oil. The Germans have already introduced their own scheme for sustainable supply of raw material for biodiesel under the ISCC standard and the US has introduced a similar sustainability standard scheme under the EPA RFS series. None of them chose a WWF driven sustainability scheme as such a process would be tantamount to surrendering country level rule- making to foreign based NGOs.

While sustainability in raw material production is a common aspiration shared by producer countries and the NGOs, both defer on the definition of the concept. Producer countries cooperation to implement the NGO initiated RSPO scheme has been abused by the appearance of anti-palm oil campaigns where the demand is unclear. Many of the NGOs and green politicians take the stance that the oil palm should not exist because it was planted on former forest land and therefore causes deforestation. This extreme view has no room or provision for developing countries that need to develop their land assets, stabilize their forest reserve areas and generate employment to provide income for the rural farmers.

It must be realized that forcing unfair schemes to be adopted by poor farmers will be a futile attempt. The NGOs are not elected representatives of the farmers. It is the politicians who are entrusted to make legislations and look after the needs of the voters. There must be a better approach for attaining sustainability objectives perhaps through international agreements on how much forest each developing country should preserve and how much of the country’s land area is allowed for agriculture. For now, it looks like it is a free- for- all rule of the jungle that the NGOs are practicing, condoning one set of rules and exemptions for the developed world and another set of rules on sustainability for Malaysia and Indonesia even though the two countries have shown willingness to get its palm oil certified for sustainability on a voluntary basis. Little appreciation is given to the fact that by using only 14 % of its land area to plant oil palm, Malaysia is able to supply almost 30 % of the world’s oils and fats export requirements with 20 million tonnes of palm and palm kernel oils produced. If Malaysia were to produce the equivalent of 20 million tonnes by growing soyabean like the US or Brazil where no certification is needed to enter the world market, a land area of 50 million hectares would be needed compared with only 33 million hectares available as total land area of the country. The world should be thankful for the high productivity of oil palm. Income from palm oil generates enough prosperity to prevent forest from being converted into agriculture areas. Oil palm is a better paymaster for keeping forest intact as desired, compared to developed countries who have failed in their promise to compensate developing countries for keeping their forests conserved under the REDD scheme introduced by the UNFCC climate change agenda.

Kraft upping sustainability goals

Posted by Flora Sawita Labels:

When Kraft Foods acquired Cadbury a couple of years ago, concerns were raised that Cadbury's ethical image would suffer. Some even said Kraft takeover would hit Cadbury's ethical rating. But nothing of that sort has happened. Kraft continues to up sustainability goals for the group, including Cadbury.

They have just announced more aggressive sustainability goals. A summary of their new goals:

From a 2010 base, by the end of 2015 Kraft Foods plans to:

·Increase sustainable sourcing of agricultural commodities by 25 percent

·Reduce energy use in manufacturing plants by 15 percent

·Reduce energy-related CO2 emissions in manufacturing plants by 15 percent

·Reduce water consumption in manufacturing plants by 15 percent

·Reduce waste at manufacturing plants by 15 percent

·Eliminate 50,000 metric tons (100 million lbs.) of packaging material

·Reduce 80 million km (50 million miles) from transportation network

See here my story in Ethical Corporation magazine on the much debated Cadbury takeover.

How Sustainable Production of Palm Oil Contibutes to Reduced Global Warming

Posted by Flora Sawita Labels: , , , , , , , , , , , , , , ,

At a recent forum organized by the Palm Oil Refiners Association of Malaysia (PORAM), it was revealed that there was no moral case for Western Environmental NGOs (WENGOs) campaigns against palm oil. Data indicates that the agricultural land occupied by the world palm oil industry is miniscule as compared to the total land allocated to growing grains and oilseeds. This is shown in Fig 1 below where the segment for oil palm area is only 1.56 % of the total grain and oilseed area (see arrow) and it is hardly visible in the bar chart.
 
Figure 1 - Oil Palm VS Total Grain & Oilseed Area
Oil Palm VS Total Grain & Oilseed Area


Oil palm is the main agricultural crop of major palm oil producer countries such as Malaysia and Indonesia where it occupies 13% and 5% of their land area respectively. Assuming that developing countries are allowed to use part of their land area for agriculture and plant the most profitable crops to provide employment, produce food and generate income, the above figures show that there is no excessive over exploitation of forests due to planting oil palm as a cash crop. Nationally, both countries retain much higher percentages of forest as compared to developed countries as shown in Fig 2.

Figure 2 - Forest in Developed VS Developing Countries
Forest in Developed VS Developing Countries

 
If WENGOs claim that global warming is caused by loss of forests due to oil palm cultivation, it would be useful to know that oil palm share of world agricultural land is only 0.22 % as shown in Fig 3. The share of loss of carbon stock (deforestation) caused by oil palm compared to total global agriculture is thus assumed to be 0.22 %. This does not include the positive carbon sequestering effect of the oil palm trees. It is therefore morally unacceptable for WENGOs to discourage palm oil producing countries from practicing their share of agriculture which accounts for merely 0.22 % of world agricultural area.

Figure 3 - World Cultivated Area of Oilseeds
World Cultivated Area of Oilseeds

 
Even the total GHG emission of global agriculture of 17 % is considered small compared to that from the burning of fossil fuel which contributes to a high 57% of GHG emission as shown in Fig 4. The carbon foot print of the oil palm cultivation globally is therefore 0.22% x 17% of the total or 0.0374 % of global GHG emissions. This has no bearing on global warming hence making it immoral to blame oil palm as a significant contributor of global warming while facts prove otherwise.

Figure 4 - Largest Contributor to Climate Change is Fossil Fuel Usage
Largest Contributor to Climate Change is Fossil Fuel Usage

 
Many other economic activities are responsible for the vast amount of GHG emission. These activities are accepted as part of the economic growth processes needed to sustain the world economy. Efforts to reduce GHG emissions should be directed at these economic activities as they are the main cause of GHG emission. Curtailing the expansion of oil palm on the basis of its impact on global warming is therefore scientifically unjustified as the contribution is only 0.0374 % of global GHG emission.

If the loss of biodiversity is used as an argument to discourage oil palm cultivation, there is ample forest being conserved as shown in Fig 2 above. The UN Convention only requires 10 % of the country land area to be kept as forest for conserving biodiversity and Malaysia has far exceeded this by committing 50%.

Despite the lack of convincing evidence to pin down the palm oil industry against global warming or biodiversity loss, both producer countries have given full cooperation to comply with the needs of stakeholders and WENGOs to produce palm oil sustainably. They have fully embraced the Round Table on Sustainable Palm Oil (RSPO) to enable palm oil to be certified to meet sustainability principles and criteria. The Indonesians have signed an agreement with Norway to have a moratorium on deforestation while the Malaysian government has repeatedly announced its assurance of maintaining at least 50% of its land area as permanent forest. Deforestation thus appears as a non issue.

To ensure a level playing field, it is timely that a similar certification for sustainability be required for other oils produced by various countries worldwide. Otherwise, it will be a clear reflection of the oil palm industry being victimised by being asked to comply to certification needs for sustainability when no scientific justification exist to allow the world to benefit from global warming mitigation or improved biodiversity. Without premiums given to RSPO certified palm oil it becomes a big burden for oil palm farmers to bear the added cost of certification when their counterpart farmers producing soyabean or rapeseed do not have to be certified for sustainability.

Certifying the other (low yielding and land inefficient) oilseed crops for sustainability would at least contribute to a greater amount of carbon emission reduction compared to oil palm, even though the quantum of saving is still small compared to the carbon footprint of fossil fuel and other agricultural activities.

All evidence clearly shows that there is no moral ground for the WENGOs to campaign against palm oil. Unless the WENGOs can quantify and show that there are clear benefits relating to global warming or biodiversity improvements, or economic premiums for sustainable certified palm oil, then it is only a matter of time when the palm oil producers realise that they have been hoodwink by the NGOs who only impose the no deforestation condition on palm oil but don’t bother to do likewise on other low yielding crops which occupy vast area of land.

What Affects Soil Biota and How to Manage it

Posted by Flora Sawita Labels: , , , , , , ,

Soil biota multiply rapidly when organic material, roots, and plant litter, their food source, are available and the soil is moist and warm. Seasonal patterns of biological activity coincide with plant growth stages, litter fall, and root die-off. To be active, bacteria require films of water in soil pores, whereas fungi can function in drier conditions. When the soil is too dry, bacteria and fungi become less active or temporarily shut down, protozoa form dormant cysts, and the number of most other organisms declines. When the soil is saturated and anaerobic, the number of denitrifying bacteria increases. Organisms affect each other through predation and competition for food and space. Small soil pores can restrict the movement of large soil organisms. Different types of vegetation produce different types of litter and plant residue and thus provide different food sources for soil biota. Changes in the vegetation or the pattern of plant distribution affect the soil organisms.

Grazing.—Proper management of the plant community is the best strategy for maintaining the benefits of the soil food web. Plant production and the supply of organic matter can be maintained or enhanced by timely grazing, the proper frequency of grazing, and control of the amount of vegetation removed. If the plant community is overgrazed, a reduction in the amount of surface plant material and roots will result in less food for soil organisms. As biological activity decreases, a downward spiral of the important functions of soil organisms results in a lower content of organic matter and impedes nutrient cycling, water infiltration, and water storage. Heavy grazing also can reduce the abundance of nitrogen-fixing plants, causing a decrease in the supply of nitrogen for the entire plant community.

Erosion.—Erosion removes or redistributes the surface layer of the soil, the layer with the greatest concentration of soil organisms, organic matter, and plant nutrients. Runoff and wind erosion redistribute litter from one area of rangeland to a surrounding area. The loss of organic matter reduces the activity of soil biota in the areas from which the litter has been removed.

Compaction by grazing animals and vehicles.—Soil compaction reduces the larger pores and pathways, thus reducing the amount of habitat for nematodes and the larger soil organisms. Compaction can also cause the soil to become anaerobic, increasing losses of nitrogen to the atmosphere.

Fire and pest control.—Fire can kill some soil organisms and reduce their food source while also increasing the availability of some nutrients. Pesticides that kill above-ground insects can also kill beneficial soil insects. Herbicides and foliar insecticides applied at recommended rates have a smaller impact on soil organisms. Fungicides and fumigants have a much greater impact on the soil organisms.

Source

Soil Crust Management Strategies

Posted by Flora Sawita Labels: , , , , , ,

The development of objectives relative to soil crusts is an important part of rangeland management. Biological crusts protect the soil from water erosion and wind erosion. Physical crusts can protect soils from wind erosion as effectively as biological crusts, except on very coarse textured soils. In the more humid areas, it generally is desirable to break up physical crusts and thus improve seedling emergence and plant establishment; however, desirable biological crusts can be destroyed when the physical crusts are broken. Adequate organic matter, seeds of desirable species, and a period of rest are needed for successful establishment of plants after crusts are broken.

Recovery of biological crusts may take decades to hundreds of years. Therefore, preventing degradation by minimizing disturbance is important. Biological crusts that are in areas of low rainfall, are on coarse textured soils with low stability, and are in areas with a large amount of bare ground are most susceptible to frequent disturbances and have the longest recovery times. Biological crusts of all types are least susceptible to disturbance when the soil is frozen or is covered with snow. Biological crusts on sandy soils are less susceptible to disturbance when the soils are wet or moist, and the ones on clayey soils are less susceptible when the soils are dry. Trampling or grazing when the soil surface is very wet or ponded should be avoided because it can displace and bury the biological crust.

The following management strategies apply to land used for grazing, wildlife habitat, or recreation:

• Maintain the optimum amount of live vegetation, litter, and biological crust relative to the site potential in order to maintain the content of organic matter and soil structure and control erosion.

• In humid areas improve soil structure and plant establishment by incorporating organic matter into the soil while breaking up a physical crust.

• Defer grazing and recreational use during periods when biological crusts are most susceptible to physical disturbances.

• Use prescribed burning according to the needs of each site to prevent fuel buildup that can produce hot fires followed by severe erosion.

• Control the establishment and spread of invasive annual plants that can carry fire.



Source

What Determines Crust Formation

Posted by Flora Sawita Labels: , , , , , ,


Physical crusts form when organic matter is depleted from the surface layer, soil aggregates become weak, and raindrops disperse the soil into individual particles that clog soil pores, seal the surface, and form a layer that is dense when dry. A physical crust consisting of numerous thin bands can form when sediment from erosion is carried downslope and buries the soil surface. Physical crusts are more common on silty, clayey, and loamy soils and are relatively thin or weakly expressed, if present at all, on sandy soils. Soils with a high content of sodium disperse readily in water and are more susceptible to crust formation than other soils.

To examine a crust, lift the soil surface with a knife tip and look for cohesive layers or thin bands parallel to the soil surface. These layers have no apparent binding by visible strands of organic material, such as cyanobacteria. Fragments of physical crusts disperse or “melt” when placed in water. A vesicular crust is a type of physical crust with many small, unconnected air pockets or spaces similar to those in a sponge.

A biological crust occupies a large amount of the surface of calcareous and gypsiferous soils. Soil texture, moisture, temperature, season of precipitation, and history of disturbance largely determine the dominant organisms in the crust. For example, moss tends to be dominant in the Columbia Basin, whereas cyanobacteria and lichen are dominant in the Mojave, Sonoran, and Chihuahuan Deserts.

Prevent crust formation by keeping organic matter on your garden. Adding a healthy layer of organic matter to your garden from time to time will help prevent soil erosion.



Source

Sustainability: New Market for Certified Sustainable Oils and Fats?

Posted by Flora Sawita Labels: , , , , , , , , , ,

Confusion reigns over certified and uncertified oils

In recent years, the Western Environmental NGOs (WENGOs) together with producers and buyers of palm oil have attempted to promote the development and market for certified sustainable oils and fats products in addition to existing non-certified products. This has resulted in two types of market for oils and fats: the certified sustainable oil market and the market for normal oils that are not certified. The most desirable and ideal market is of course one where the oils and fats products are proven to be sustainably produced. The proof is via a certification and auditing process where the oils or fats which are found to comply with a set of sustainability principles and criteria will be issued certificates attesting to their sustainable production and processing. These products are supposed to be marketed at a premium to meet the needs of sophisticated markets especially in the EU. In the case of palm oil, such products are referred to as Certified Sustainable Palm Oil in general or Certified RSPO palm oil (CSPO) if the RSPO system is used as the basis for auditing and certification. In contrast, the main market is still mostly for non-certified normal palm oil. Such products cannot be marketed as sustainable as the WENGOs will protest that there is no proof of sustainability. Neither can it be labeled as unsustainable palm oil as there is no proof for that either.Unfortunately, Certified RSPO palm oil has received limited acceptance thus far. The available capacity in Malaysia of about 1 million tonnes of CSPO palm oil has not been fully taken up. Only 30 % of the potentially available RSPO palm oil has been exported to the EU. The main excuse is the lack of willingness of the importers to pay a premium to offset the initial cost of certification. To make matters worse, some of the WENGOs are casting doubts on the ability of RSPO members to supply sustainable palm oil.

Biofuel requires inclusion of carbon emission saving parameters

With the world turning its focus onto biodiesel, the scope for sustainability certification is extended to include carbon emission parameters of the biofuel. RSPO was initially designed to serve the food industry, and carbon emission parameters were not included into the assessment system. Authorities for biofuel in the EU and USA want to have their own certification schemes for sustainable raw materials for renewable fuel. The RSPO scheme is deemed insufficient to meet their requirements unless carbon emissions saving figures are included. The RSPO nevertheless is attempting to overcome this deficiency.

The majority (99 %) of palm oil buyers are however, comfortable with the traditional market where palm oil has been traded without the need for a certification system just as other competing oils and fats are also marketed without any form of certification schemes. As other oils and fats are not able to offer certified sustainable products for the market and palm oil is largely also available in the non-certified form, there is some resistance and confusion to the introduction and acceptance of CSPO.

Another problem is the proliferation of potential new certification schemes to be introduced by Germany, the EU and the USA that form part of their national regulations to cater to the biofuel development. These need to be harmonized into an international standard as it is impossible for exporters of palm oil to comply with too many certification schemes. Without harmonization of certification systems, palm oil is not able to fully participate in the biofuel industry in Germany and USA and the certification schemes have essentially become effective trade barriers barring the entry of imported palm oil. In comparison, local raw materials are likely to be exempted from these certification schemes as local farmers are against such additional burden added to their production process.

WENGOs wrongly targeting palm oil

The WENGOs are exploiting the confusion by continuing to spread misinformation to tarnish the image of palm oil. Zoos in Australia have been misled by Friends of Earth (FOE) Australia into believing that orang utans are affected by deforestation due to oil palm plantations. Such allegations are unfounded. As discussed in this blog, orang utan population in Malaysia has stabilized because the country has stabilized its permanent forest area. Pseudo scientists operating some of the Australian Zoos should instead focus on campaigning for the critically low population of the Koala bears in their country. According to the Australian Koala Foundation, the population of Koalas has shrunk from 400,000 to 44,000 in the wild. Loss of habitat is the main reason, and forests are lost to agriculture. Australia has 23 times more land area than Malaysia, but its Koala bear population is only 4 times more than the number of orang utans in Malaysia (of about 11,000). The Australian Zoos are campaigning to help protect the already well protected orang utans in Malaysia while they are neglecting the fate of fast diminishing Koalas in their own country. They claim that Koalas can easily reproduce (to pacify the unaware public) but with declining habitat areas due to frequent fires and conversion to other uses, population growth of the Koalas will continue to decline as reported by the Australian Koala Foundation.

The misguided Zoo authorities in Australia have even lobbied their parliament to pass a law to label palm oil as the cause of orang utan population decline. Unfortunately they have not been fair in not asking their cattle and lamb products to be labeled as causing the decline and possible extinction of Koala bears and aborigines population in their country. It is a fact that cattle emit far more methane gas which cause global warming compared to oil palm plantations in Malaysia. The fact relating to historical land grabs that displaced and impoverished the aborigines in Australia should not be swept under the carpet but should be used to justify the labeling of Australian beef products. Current beef products from Australia are deceptively labeled without declaring the severe damage to global warming caused by methane from cattle, loss of habitat of Koala bears and historical land grabbing of aborigines’ land by beef farmers.

Similar arguments are forwarded by WENGOs in the UK who wrongly blamed oil palm cultivation in Malaysia as a cause of global warming. In truth, oil palm plantations behave like forest plantation by sequestering CO2. Inability to evaluate the scientific facts led to the WENGOs overlooking devastating emitters such as coal mines in their countries in preference for wrongly blaming oil palm plantations in developing countries for emission of CO2 as the cause of global warming. This has led to unjustified demand by many followers of the WENGOs for a stop to deforestation for agricultural development in developing countries.

Wrong assumptions and false allegations can cause devastating consequences especially when actions are taken by powerful developed countries such as the EU, USA and Australia against the interests of poor developing countries. Trade barriers are imposed without considering the big picture of costs and benefits. Malaysia was a net GHG sequestering country up to the year 2005, and deforestation for agricultural development is not an issue, because to a certain limit, deforestation is necessary as part of the sovereign right in the developing process for any newly independent developing country. Yet, a lot of negative campaigning is directed at palm oil on the false allegation that it contributes to global warming when the true fact is otherwise. Oil palm helps mitigate global warming together with the large permanent forest reserves which also provide for habitat need for wildlife such as the orang utans.

WENGOs like Greenpeace should start changing its focus and campaign to shut all the coal mines in its mother country, the UK, where CO2 emission from coal burning is several times more devastating in causing global warming compared to cultivation of oil palm in developing countries. Coal should be replaced with other fuels of lower carbon footprint. The 18 million tonnes of coal mined in the UK annually emits CO2 equivalent to the deforestation of 380,000 hectares of tropical rainforest. In addition, 40 million tonnes of imported coal will further emit CO2 equivalent to another 800,000 hectares equivalent of rain forest deforestation. The total 1,180,000 hectares per annum rainforest deforestation equivalent is about 10 times the annual area of past expansion of oil palm cultivation in Malaysia. While coal mines have a one directional release of CO2 to the atmosphere, oil palm planting sequesters CO2 to compensate for the CO2 released by initial deforestation. Blaming oil palm plantations (a source of livelihood in developing countries) as a cause of CO2 emission while ignoring more devastating sources of CO2 emission is essentially condoning gross wrongdoing in their own countries while unfairly opposing the development of needed legitimate agricultural sectors of developing countries. If global warming is the main concern of the WENGOs, they do not need to look far to find the solution. Campaigning to shut their coal mines, and boycotting the use of coal in their countries will yield far more CO2 reduction and will have least damage to the livelihood of people in developing countries as compared to attacking the oil palm industry.

What Affects Aggregate Stability and How it is Managed

Posted by Flora Sawita Labels: , , , , , ,

The stability of aggregates is affected by soil properties that change relatively little and by properties that change in response to changes in vegetation and management. As a result, measurements of the aggregate stability of a given soil should be compared only with measurements for the same or similar soils with similar textures.

Soil properties.—Soil properties that change relatively little include texture and type of clay. Expansion and contraction of clay particles as they become moist and then dry can shift and crack the soil mass and create or break apart aggregates. Calcium in the soil generally promotes aggregation, whereas sodium promotes dispersion. The quantity of calcium and sodium is specific to each type of soil.

Vegetation.—Management affects the plant community. Changes in the composition, distribution, and productivity of plant species affect aggregation-related soil properties, including aggregate stability, the amount and type of organic matter in the soil, and the composition and size of the soil biotic community. The amount of plant cover and the size of bare patches also are important. The centers of large bare spaces receive few inputs of organic matter and are susceptible to degradation.

Grazing.—Disturbance of the soil surface by grazing animals has both beneficial and detrimental effects on aggregate stability. It breaks the soil apart, exposing the organic matter “glues” to degradation and loss by erosion; however, it also can incorporate litter and standing dead vegetation into the soil, increasing the content of organic matter in the soil. Heavy grazing that significantly reduces plant production disrupts the formation of aggregates by reducing the inputs of organic matter. Grazing is more likely to increase aggregate stability in areas where an unusually large amount of standing dead material is on the soil surface and the risk of erosion is not increased by removal of plant material and disturbance of the soil surface.

You can improve the productivity of rangeland through good range management which normally increases aggregate stability. A few practices that you could use include:

• Maintain the optimum amount of live vegetation and litter
in order to maintain the content of organic matter and soil
structure and control erosion.
• Decrease the number and size of bare areas.
• Minimize soil surface disturbances, especially in arid
areas.

Try putting these practices into action on land that you have access too.

Source

What Soil Aggregates Are and How its Stability Affects Soil Erosion

Posted by Flora Sawita Labels: , , , , , ,



Soil aggregates are groups of soil particles that are bound to each other more strongly than to adjacent particles. Organic matter “glues” produced when soil biota break down dead roots and litter hold the particles together. Threadlike strands of fungi also bind particles into aggregates. Microscopic aggregates are the building blocks of larger aggregates. The larger aggregates and the arrangement of them, along with chemical attraction between particles, determine soil structure. The structure of the surface layer commonly is granular or blocky, but a degraded surface layer can be crusted, platy, or structureless. Pores important for the movement of air, water, and plant nutrients occur within and between aggregates. Pores also provide thoroughfares for soil organisms.

Aggregate stability refers to the ability of aggregates to resist degradation. Additions of organic matter to the soil enhance the stability of aggregates. Raindrops, flowing water, and windblown sand grains can break apart soil aggregates, exposing organic matter to decomposition and loss. Physical disturbances, such as vehicle traffic and trampling, can break down soil structure. Soils can resist degradation differently when wet or dry. For example, dense, cloddy soils can be very stable when dry but unstable when wet.

Listen to this short video that explains soil aggregates.


Soil & Compost:
What are soil 'aggregates'?

Source

What Affects Soil Organic Matter and Soil Management Strategies

Posted by Flora Sawita Labels: , , , , , ,


The amount of organic matter in the soil is a balance between additions of plant and animal materials and losses through decomposition and erosion.

Environmental factors interacting over time affect the amount of organic matter in soil. Rainfall and temperature affect plant productivity and the rate of organic matter decomposition. Increasing levels of organic matter promote a higher waterholding capacity, which results in increased plant growth and thus an increased amount of organic matter and plant nutrients.

Roots are the primary source of organic matter. Dead roots and gelatinous materials exuded by plant roots as they grow through the soil are decomposed by soil organisms and converted into organic matter. Since much of what is produced above ground is lost through photo-oxidation, the amount of root production is very important. Every year, about 25 percent of the total root biomass in areas of tall prairie grasses dies and becomes available for incorporation into the soil as organic matter. In the drier areas, such as areas of short prairie grasses, about 50 percent of the root biomass becomes available, but the total amount is less than that in the areas of tall grasses.

Plant composition and distribution control the distribution of organic matter. The horizontal and depth distribution of roots, the distribution of plants across the landscape, and the susceptibility of roots to decay vary among species. The roots of forbs and shrubs generally contribute less organic matter to the surface layer of the soil than the roots of grasses. Changes in the composition of plant species, especially from grasses to shrubs, affect the contribution of roots to soil organic matter. The organic matter is enhanced by litter beneath shrubs in areas of arid and semiarid rangeland. Fire initially reduces the amount of plant residue added to the soil. If the fire results in a shift from shrubs to grasses, however, the long-term effect can be an increase in soil stability and organic matter.

Soil organisms break down litter, dead roots, and organic matter into smaller fragments and compounds. As they decompose organic matter, they convert nutrients into plant-available forms and release carbon dioxide into the atmosphere. Warm, moist soil supports higher decomposition rates than waterlogged, dry, or cool soil.

Wind erosion and water erosion increase losses of organic matter. Erosion breaks down soil aggregates, exposing physically protected organic matter to decomposition and loss. Organic-rich soil from the surface layer is carried away by runoff or wind. Litter redistribution by wind or water from or to surrounding rangeland also affects the content of organic matter.

Grazing can change plant composition and distribution and increase or decrease the amount of organic matter in the soil. Grazing can increase the rate of root turnover, but overgrazing reduces the amount of plant energy available for the growth of new roots. Trampling by livestock can help to incorporate the plant material above the ground into the soil. In arid ecosystems, however, little plant material is available for incorporation. Trampling also breaks up soil aggregates, exposing organic matter to decomposition and loss through erosion.

Try some of the following management strategies in your garden this Summer. Your garden will thank you by providing you with a larger harvest. If the following information helps you please post a comment about it.

Management strategies

The following strategies can help to maintain the optimum content of organic matter in rangeland soils:

• Increase or maintain plant production.
• Promote the growth of species with high root production and promote a mix of species with different rooting depths and patterns.
• Promote the incorporation of above-ground plant material in moist plant communities with large amounts of standing plant material (e.g., areas of tall prairie grasses).
• Protect the soil from erosion by maintaining or increasing the plant cover and reducing the amount of bare soil.
• Properly manage grazing, fire, and vehicle use and thus promote the desired plant community and protect the soil
from erosion.


Source

What is Organic Matter and Why it is Important

Posted by Flora Sawita Labels: , , , , , ,


What is soil organic matter?


Soil organic matter is carbon-rich material that includes plant, animal, and microbial residue in various stages of decomposition. Live soil organisms and plant roots are part of the carbon pool in soil but are not considered soil organic matter until they die and begin to decay. The quantity and composition of soil organic matter vary significantly among major ecosystems. Soil in arid, semiarid, and hot, humid regions commonly has less organic matter than soil in other environments. The total content of organic matter ranges from less than 0.5 to more than 8 percent in the surface layer of rangeland soils.

Soil organic matter includes three main components; light fraction, physically protected, and chemically stable. Light fraction is more biologically active than the other two and includes relatively fresh plant fragments. Physically protected organic matter is locked within aggregates of mineral particles, where it is protected from microbial decomposition. Chemically stable organic matter gives soil its dark color and is generally the largest pool of organic matter in soil. Physically protected organic matter may also be chemically stable.
Why is organic matter important?

Soil organic matter enhances soil functions and environmental quality because it:

• binds soil particles together into stable aggregates, thus improving porosity, infiltration, and root penetration and reducing runoff and erosion;
• enhances soil fertility and plant productivity by improving the ability of the soil to store and supply nutrients, water, and air;
• provides habitat and food for soil organisms;
• sequesters carbon from the atmosphere;
• reduces mineral crust formation and runoff; and
• reduces the negative water quality and environmental effects of pesticides, heavy metals, and other pollutants by actively trapping or transforming them.


Attempt to use organic matter in your soil. Try it out. It will help the garden produce a better plant. If you have ever used organic matter feel free to post a comment about your experiencing.



Source

How Soil Compaction can be Identified and Managed

Posted by Flora Sawita Labels: , , , , ,

The following features may indicate a compacted soil
layer:

• platy, blocky, dense, or massive appearance;
• significant resistance to penetration with a metal rod;
• high bulk density; and
• restricted, flattened, turned, horizontal, or stubby plant
roots.

Because some soils that are not compacted exhibit these features, refer to a soil survey report for information about the inherent characteristics of the soil. Each soil texture has a minimum bulk density (weight of soil divided by its volume) at which root-restricting conditions may occur, although the restriction also depends on the plant species.

Management strategies that minimize
compaction:

• Minimize grazing, recreational use, and vehicular traffic
when the soils are wet.
• Use only designated trails or roads; reduce the number of
trips.
• Do not harvest hay when the soils are wet.
• Maintain or increase the content of organic matter in the
soil by improving the plant cover and plant production.


Please put these tactics into action. Include the minimization of soil erosion in your daily lives.

Source

Infiltration Management Strategies

Posted by Flora Sawita Labels: , , , ,

The soil and vegetation properties that currently limit infiltration and the potential for increasing the infiltration rate must be considered in any management plan. Where waterflow patterns have been altered by a shift in vegetation, such as a shift from grassland to open-canopy shrub land, restoration of higher infiltration rates may be difficult or take a long period, especially if depletion of organic matter and/or soil loss have occurred. Excessive grazing of forage can impair infiltration.

Management strategies include:
• Increase the amount of plant cover, especially of plants that have positive effects on infiltration.
• Decrease the extent of compaction by avoiding intensive grazing and the use of machinery when the soils are wet.
• Decrease the formation of physical crusts by maintaining or improving the cover of plants or litter and thus reducing the impact of raindrops.
• Increase aggregate stability by increasing the amount of organic matter added to the soil through residue decomposition and vigorous root growth.

Infiltration rate
The infiltration rate is generally highest when the soil is dry. As the soil becomes wet, the infiltration rate slows to the rate at which water moves through the most restrictive layer, such as a compacted layer or a layer of dense clay. Infiltration rates decline as water temperature approaches freezing. Little or no water penetrates the surface of frozen or saturated soils.

Vegetation
A high percentage of plant cover and large amounts of root biomass generally increase the infiltration rate. Different plant species have different effects on infiltration. The species that form a dense root mat can reduce the infiltration rate. In areas of arid and semiarid rangeland, the infiltration-limiting layer commonly is confined to the top few millimeters of the soil, particularly in the open spaces between plant canopies. These areas receive few inputs of organic matter, which build soil structure. Also, the impact of raindrops in these areas can degrade soil structure and form physical crusts.


Don't be afraid to practice these techniques. They will serve your soil right and you will reep all the benefits. Please tell your friends and family how infiltration affects them directly.

Source

Bamboo Packing

Posted by Flora Sawita Labels: , , , , , , , , ,


The Dell computer company has started packing their notebook computers with bamboo. Sounds a bit strange at first, I must admit. Are they shipping these computers to panda bears who will then have internet and a snack? The answer is obviously no. Have you seen a bears paw? I doubt it could fit on the keyboard...


The bamboo packaging has been introduced in order for customers who want to be more environmentally friendly to dispose of the packaging for their computer in an eco-friendly way.

Dell chose the bamboo packaging for a few reasons:
  • Bamboo grows fast
  • It's strong
  • It's easy on the environment and promotes healthy soil
Dell has received D-6400 certification for their bamboo packaging. This means that it will compost and biodegrade a a high rate and that the compost will be able to sustain plant growth for the future. This is one of the many "green" offerings the Dell corporation has given their customers over the years.

In a continuing effort to reduce waste and increase recycled materials used, by 2012 Dell plans on using their three C's strategy:

  1. Cube: How big is the box? Could it be smaller?
  2. Content: What is the Packaging made of? Could it be made of something better?
  3. Curb: Is it easily recycled?
It's nice to see corporations who actually care about the environment and are striving to make a difference.

With Dell's "green" efforts, does it make you more willing to purchase products from them?

What are some ways companies are making a difference that inspire you to purchase their products?

Link to the story:
http://www.marketwatch.com/story/dells-bamboo-packaging-certified-compostable-2010-05-11?reflink=MW_news_stmp

The Causes and Indicators of Wind Erosion

Posted by Flora Sawita Labels: , , , , ,

What causes wind erosion?
Wind erosion can occur only when windspeed at the soil surface is sufficient to lift and transport soil particles. Moist soils and soils with stable aggregates or rock fragments are less likely to be eroded than other soils. Thick lichen crusts provide greater resistance to erosion than thin crusts. Sand moving across the soil surface wears away soil aggregates and thin crusts, causing more soil particles to become detached and to be blown away. A cover of plants disrupts the force of the wind.

Soils are more susceptible to wind erosion where disturbance exposes individual particles and soil aggregates to the wind. When physical or biological crusts are crushed or broken apart by such disturbances as heavy grazing, vehicle or foot traffic, and water erosion, particle movement begins at the lower windspeeds. The following conditions increase the susceptibility of the soil to wind erosion:

• crushed or broken soil surface crusts during windy periods;
• a reduction in the plant cover, biological crusts, and litter, resulting in bare soil;
• a decrease in the amount of organic matter in the soil, causing decreased aggregate stability; and
• long, unsheltered, smooth soil surfaces.


What are some indicators of wind erosion?

Erosion and the risk of erosion are difficult to measure directly. Other soil properties that affect erosion and can change with management, including soil surface stability, aggregate stability, and content of organic matter, can be measured. Measuring these properties can shed light on the susceptibility of a site to erosion. Comparing visual observations along with quantitative measurements to the conditions in the ecological site description or a reference area helps to provide information about soil surface stability and wind erosion.

The visual indicators used to identify past erosion include:

• bare soil,
• wind-scoured areas between plants,
• a drifted or rippled soil surface,
• loose sand on physical crusts,
• biological crusts buried by soil,
• pedestaled plants or rocks,
• exposed roots,
• soil deposition on the leeward side of plants and obstacles,
• litter movement to the leeward side of plants and obstacles,
• exposure of subsoil at the surface,
• reduced plant growth, and
• dust clouds.

When measured over time, the following indicators can be used to predict where accelerated erosion is likely to occur in the future:

• an increase in the amount of bare ground or in the size of bare patches,
• reduced soil surface stability, and
• a reduction in the amount of organic matter.


Please spend a moment taking a look at this webpage that shows hi def picture examples of recent dust storms in the US. It shows the mayhem that dust storms cause. Please be aware of wind erosion and how it affects the earths soil. Try and learn from our past so we don't have to repeat it. Thank You.

Source

Land of the Lost

Posted by Flora Sawita Labels: , , ,


Due to rapid erosion, land area is decreasing at an alarming rate. Between the years of 1982 and 2007 the nation has lost over 41 million acres of rural land. To put it in perspective, it's "an area about the size of Illinois and New Jersey."

This erosion is significant because over 90 percent of this erosion has occured on prime farmland soil which is used to produce food and crops. The states with the biggest losses include Texas, Ohio, North Carolina, California, and Georgia. This is very significant because we need to do what we can to ensure that no more land will be lost due to erosion. Does this mean sustainable farming practices? Or maybe new fertilizers used for genetically modified foods? At this time, we're not really sure what to do.

While soil erosion has been reduced by 43 percent in the past 25 years, we however do need to look for ways to increase sustainability in order to continue to keep our farmlands producing food for our nation.

What ways do you think farmlands can best be preserved? Do you think the topic is receiving enough attention so that a difference can be made?

To read more check out this link:

http://mobile.wallacesfarmer.com/main.aspx?ascxid=cmsNewsStory&rmid=0&rascxid=&args=&rargs=9&dt=634085908123207722&lid=a8yebu2d9qxnz7lo&adms=634085908121957778X34feafc77b&cmsSid=37843&cmsScid=9

What is Water Erosion?

Posted by Flora Sawita Labels: , , , ,


Water erosion is the detachment and removal of soil material by water. The process may be natural or accelerated by human activity. The rate of erosion may be very slow to very rapid, depending on the soil, the local landscape, and weather conditions.

Water erosion wears away the earth’s surface. Sheet erosion is the more-or-less uniform removal of soil from the surface. Rill and gully erosion occurs when concentrated runoff cuts conspicuous channels into the soil. Deposition of the sediment removed by erosion is likely in any area where the velocity of running water is reduced—behind plants, litter, and rocks; in places where slope is reduced; or in streams, lakes, and reservoirs.



Source

Organic Gardening Soil

Posted by Flora Sawita Labels: , , , , , , , ,

Blog Guest Piece


Organic Gardening Soil

All gardeners want to have the most perfect, most beautiful flowers and vegetables. If your aim is to win the best flower or the best tasting veggies at the show or just to savor a garden loaded with beautiful flowers, using organic gardening soil is the initial step you can take to be sure your garden soil is the best it can be.

Organic gardening is the activity of growing vegetables, plants, trees, flowers, vines, fruits, bushes, shrubs and everything else you are able to consider in an entirely natural way. Put differently that would mean no toxic substances, pesticides or chemicals are used in the whole gardening operation. Organic gardening is mostly practiced for fruit, vegetable and herb gardening. Folks do not wish to have chemicals and pesticides on the foods they consume. This gardening method begins with the preparing of your soil. Because you will not be applying chemical fertilizers in an organic garden, you will want to be sure your soil is as good as possible, so that it can supply all the nutrition your plants will need as they mature. Getting an organic garden soil requires a little time and exertion, but it is truly worth it after it is accomplished.

You can make organic soil by blending in healthy fertile compost material. Many organic gardeners like to make their own compost using specialized bins or vessels. In many regions though, you will be able to purchase compost matter from recycling centers or garden centers. It's reasonably easy to get a jump on making compost though, even in absence of a composting bin. What you want to do is add a few items to your garden soil, and allow those additives to sit for some weeks prior to planting. Anything you put into the garden soil had better be natural though, since the nutrients are made as the organic items break down.

Number one, you want to loosen the soil in your garden bed. Second add some organic matter to the bed like used coffee or tea grounds, sawdust, ripped up newspaper, ashes from the fireplace or fruit and vegetable things from your kitchen. Try adding one or more of these items at once, however you do not have to add all at once or if you don't have them available. If you make the material smaller prior to adding it to the garden bed the quicker it will become compost for you. Therefore if you are using kitchen scraps for example, try cutting or grating them into tinier bits before pitching them into the garden bed. After supplying the organic material to your garden bed, work the soil some more so those additional items are integrated in the soil and covered properly. Next, about two to three times each week, water the bed, then move it about a little again. In approximately three to four weeks, your soil should be ready to begin placing plants and/or seeds in. If you ready your organic garden area in the Fall, ahead of the first hard frost or freeze hits, the soil will be much more fertile and more prepared for planting when Spring arrives.

The organic gardening method is rather easy to understand, every ingredient of nature like plants, animals, insects and soil have to work together to produce a natural sequence in the garden and function together. Jim's articles are from extensive research on each of his topics and life-long experience. You can learn more of compost, soil and organic fertilizers by visiting: compost.

Jim Ellison

No Studies Needed to Make a Difference

Posted by Flora Sawita Labels: , , , , , , , , ,


New studies are being produced all of the time and some of them are just ridiculous; "British scientists have found that 40% of the 60% of people who eat Cheetohs will also eat Fritos."

While studies like these actually exist somewhere, they don't really tell people anything! They also make it easy for people to just gloss over studies in general because we are inundated by them on a regular basis.

It's because of this over-exposure that, instead of giving you statistics or telling you about a "new study", we will just let you know some of the causes that are impacting food production, clean water sources, and soil erosion.

  • Population growth
  • Urbanization
  • Increasing pollution
  • Climate Variations

These are the areas where we can make a difference by reducing our footprint on the earth and by creating more sustainable practices. While you can't just come out and tell people "Don't have kids!" We can inform people on the effects of overpopulation on the environment. We can also make small changes in our daily routine in order to lessen the impact of pollution on the Earth. Maybe it's carpool to work, or ride your bike instead of driving.

While new studies will come out all of the time, we don't need them to tell us that change is needed. It's the little changes in your daily routine that, while it may seem small, will have a major impact if everyone adopts the same attitude.

Who knows, we may even see a study about how changes in your daily life are helping to reduce soil erosion and promote sustainability! Either that or we'll find out that you do in fact "eat Cheetos and Fritos."


Source:

http://www.dnaindia.com/scitech/report_water-related-conflicts-set-to-escalate-research_1377699

Soil Erosion Decline

Posted by Flora Sawita Labels: , , , , ,



Agriculture Deputy Secretary Kathleen Merrigan has announced that soil erosion on cropland declined by more than 40 percent during the past 25 years, while more than one-third of all development of U.S. land occurred during the same period.


The information was contained in the latest National Resource Inventory (NRI) for Non-Federal Lands, which was released at an event marking the 75th Anniversary of USDA's Natural Resources Conservation Service (NRCS), the agency charged with ensuring private lands are conserved, restored, and more resilient to environmental challenges. To see key findings please visit this website.


Source.

Label

2011 News AGRIBISNIS APINDO Africa Agriculture Business Agriculture Land Argentina Australia Bangladesh Berita Berita Detikcom Berita Info Jambi Berita Kompas Berita Padang Ekspres Berita Riau Pos Berita Riau Today Berita Tempo Berita riau terkini Biodiesel Bursa Malaysia CPO Tender Summary Cattle and Livestock China Cocoa Company Profile Corn Cotton Crude Palm Oil (CPO) and Palm Kernel Oil (PKO) Dairy Dairy Products Edible Oil Euorope European Union (EU) FDA and USDA Fertilizer Flood Food Inflation Food Security Fruit Futures Futures Cocoa and Coffee Futures Edible Oil Futures Soybeans Futures Wheat Grain HUKUM India Indonesia Info Sawit Investasi Invitation Jarak pagar Kakao Kapas Karet Kebun Sawit BUMN Kebun Sawit Swasta Kelapa sawit Kopi Law Lowongan Kerja MPOB Malaysia Meat News Nilam Oil Palm Oil Palm - Elaeis guineensis PENGUPAHAN PERDA Pakistan Palm Oil News Panduan Pabrik Kelapa Sawit Penawaran menarik Pesticide and Herbicide Poultry REGULASI RSPO Rice SAWIT Serba-serbi South America Tebu Technical Comment (CBOT Soyoil) Technical Comment (DJI) Technical Comment (FCPO) Technical Comment (FKLI) Technical Comment (KLSE) Technical Comment (NYMEX Crude) Technical Comment (SSE) Technical Comment (USD/MYR) Teknik Kimia Thailand Trader's Event Trader's highlight USA Ukraine Usaha benih Vietnam Wheat benih bermutu benih kakao benih kelapa benih palsu benih sawit benih sawit unggul bibit sawit unggul biofuel biogas budidaya sawit corporation palm oil pembelian benih sawit perburuhan pertanian soybean umum varietas unggul