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Palm Oil Milling Process

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

Edible Oil Processing - Production


PALM OIL MILLING PROCESS


Introduction
Palm oil is extracted from fresh fruit bunches (FFB) by mechanical process, where a mill commonly handles 60 to 100mt per hour of FFB. The modern palm oil mill of today is based predominantly on concepts developed in the early 50s (Mongana Report). An average size FFB weighs about 20-30kg and contains 1500-2000 fruits (Figure1). The FFBs are harvested according to harvesting cycles, and delivered to the mills on the same day. The quality of crude palm oil is dependent on the care taken after harvesting, particularly on the handling of the FFBs.
Figure 1
Figure 1. Fresh fruit bunches waiting for processing at palm oil mill
A palm oil mill produces crude palm oil and kernels, as primary products and biomass as secondary product. The capacity of mills varies between 60- 100 tons FFB/h. A typical mill has many operation units as shown in Figure 2. This comprises of sterilization, stripping, digestion and pressing, clarification, purification, drying and storage. For the kernel line, there are steps such as nut/fibre separation, nut conditioning and cracking, cracked mixture separation, and kernel drying, storage. The dried kernels are often sold to palm kernel crushers for extraction of crude palm kernel oil. In some integrated plants, kernel crushing facilities exist side by side at the same complex.
Figure 2
Figure 2. Flow chart for the palm oil process (from Sivasothy, 2000).

Sterilisation

This first step in the process is crucial to the final oil quality as well as the strippability of fruits. Sterilization inactivates the lipases in the fruits, and prevents build-up of free fatty acids (FFA). In addition, steam sterilization of the FFBs facilitates fruits being stripped from the bunches. It also softens the fruit mesocarp for digestion and release of oil, and conditioning of nuts to minimize kernel breakage. Air is removed from the sterilizer by sweeping in steam in single-peak, double-peak or triple-peak cycles. In general, bunches are cooked using steam at 40psig. in horizontal cylindrical autoclaves for 60-90 minutes. The length of the sterilizer is dependent on the number of cages required for operation of the mill. Each cage can hold 2.5 to 10tons of FFB. Steam consumption varies from 140 kg/ton FFB for a single-peak cycle to 224 kg/ton FFB for a triple – peak cycle (Sivasothy et al.1986). Inadequate sterilzation affects the subsequent milling processing stages adversely.
In recent years, new technology on sterilization saw the introduction of continuous sterilizers. Sivasothy’s (2006) continuous sterilizer showed improved fruit strippability, even with usage of low pressure steam or atmospheric steam. The new system consists of conveyor belt taking crushed FFBs into the continuous sterilizer, where the fruits are sterilized and subsequently discharged. This reduces much of the machinery associated with conventional sterilizers. In addition, there are cost savings in terms of manpower requirements, and maintenance.
Vertical sterilizers are also available, which are much cleaner and easier to operate than conventional sterilizers.
Another type of sterilizer technology, the Tilting sterilizer (Loh, 2010) also eliminates much of the machinery associated with conventional sterilizers. The technology is the latest design that offers improved milling efficiency, and reduced labour and maintenance cost.
Figure 3
Figure 3. A conventional sterilizer

Stripping

Stripping or threshing involves separating the sterilized fruits from the bunch stalks. Sterilized FFBs are fed into a drum stripper and the drum is rotated, causing the fruits to be detached from the bunch. The bunch stalks are removed as they do not contain any oil. It is important to ensure that oil loss in the bunch stalk is kept to a minimum. The stalks are often disposed by incineration, giving ash as potash fertilizer, and fuel for boilers. Others are transported to the plantations for use as fertilisers in mulching near the palms. The total oil loss absorbed on the stalks depends on the sterilizing conditions and partly on the way the stripper is operated. Prolonged sterilization will increase oil loss in stalks. Irregular feeding of the stripper may also result in increase of oil loss in stalks. Stalks which have fruits still attached on them are called hard bunches, and have to be recycled back to sterilizers for further cooking. Hard bunches are detected by visible inspection.

Digestion and Pressing

After stripping, the fruits are moved into a digester where, the fruits are reheated to loosen the pericarp. The steam heated vessels have rotating shafts to which are attached stirring arms. The fruits are rotated about, causing the loosening of the pericarps from the nuts. The digester is kept full and as the digested fruit is drawn out, freshly stripped fruits are brought in. The fruits are passed into a screw press, where the mixture of oil, water, press cake or fibre and nuts are discharged. Improvements in press designs have allowed fruits to undergo single or multiple pressing. Second stage pressing on the press cake fibres enables more oil to be extracted.

Clarification

A mixture of oil, water, solids from the bunch fibres is delivered from the press to a clarification tank. In the conventional process, separation of the oil from the rest of the liquor is achieved by setting tanks based on gravity. The mixture containing the crude oil is diluted with hot water to reduce its viscosity.A vibrating screen helps remove some of the solids. The oil mixture is heated to 85-90◦C and allowed to separate in the clarification tank. A settling time of 1-3 h. is acceptable. Oil from the top is skimmed off and purified in the centrifuge prior to drying in vacuum dryer. The final crude palm oil is then cooled and stored. The lower layer from the clarification tank is sent to the centrifugal separator where the remaining oil is recovered. The oil is dried in vacuum dryers, cooled and sent to storage tanks.

Decanters

Decanters are also used in some mills as an alternative to separating the suspended solids from crude palm oil in a clarification tank. Various design of decanters are available. Their usage is however, hampered by higher maintenance costs from the wear and tear. An advantage to the use is the reduction in palm oil mill effluent. Sulong and Tan (1996) had proposed a membrane filter press for oil and solids recovery. The cake is discharged as solid waste for fertilizer production or animal feed, while the oil is recovered.

Oil Losses during Processing

Oil losses in mills vary from mill to mill, and much attention is given to the control of oil loss. The main oil loss are from sterilizer condensate, empty bunches, fruit loss in unstrapped bunches, press cake fibre, nuts and sludge. Over-ripe bunches will lose more oil during sterilization. To minimize this, shorter sterilizer cycles are used, or better control of bunch ripeness and quality will help ensure less wastage. A typical oil loss in sterilizer is estimated to be 0.1% to FFB. Oils recovered from sterilizer condensate should be used as technical oils, as they often contain higher iron content and would reduce oil stability if mixed with the crude production oil.

Kernel Production

The press cake from the digester is fed to a vertical column (depericarper) where air is channeled to lift the fibre, thus separating the fibre from the nuts. The nuts are passed to a polishing drum at the bottom of the depericarper, where pieces of stalks are removed. A nutcracker cracks the nuts after the conditioning and drying process. A ripple mill is also used instead of nut cracker. The mixture of cracked nuts and shells are separated via a winnowing system, followed by a hydrocyclone or a clay bath. A hydrocyclone uses centrifugal force to separate the kernel from the shell using water. The clay bath principle works on the specific gravity of kernel of 1.07 and the shell of 1.17. The kernels will float while the shells sink in a clay bath mixture of SG 1.12. The kernels are then dried in hot air silos to moisture content of less than 7%. About 0.4mt of kernels are produced with every mt of CPO.

Biomass

The amount of solid palm oil waste available from a mill can be substantial. This consists of empty fruit bunches (EFB), palm kernel shell, mesocarp fibres, and possibly solids from decanters. In most cases, this biomass especially, the EFB, palm kernel shell and mesocarp fibres are used as fuel in the mill, generating enough electricity for running the mill. Besides usage as fuel, the biomass together with fronds and trunks can be left in the fields as fertilizers. EFBs can also be combined with polyurethane ester (PU) to prepare medium density fibreboard, giving higher impact strength and better water resistance (Khairiah, 2006).
Table 1. Dry basis calorific value of palm waste materials (Source: Yap, 2010).
Type of biomass Average calorific value(kcal/kg)Range (kcal/kg)

  Empty fruit bunches1879518000-19920
  Fibre1905518800-19580
  Palm kernel shell1888418880-18895
  Nut2448124256-24830



Treatment of Raw Palm Oil Mill Effluent (POME)

A palm oil mill produces an average of 0.65 tonne of raw palm oil mill effluent (POME) from every ton of FFB processed. POME is the main cause of environmental pollution due to its high acidity, high biological demand (BOD) and chemical oxygen demand (COD). Conventionally, anaerobic digestions in ponding systems or aerobic treatments are able to bring the BOD levels to below 100 mg L-1. Open steel tank digesters are used for tapping the biogas for power consumption. In Malaysia, certain areas have more stringent requirements (BOD of less than 20mg L-1. Tertiary systems have been developed as new systems to provide effluent treatment in a more sustainable manner, as well as achieving the standards required by regulatory bodies. These include biological sequencing batch reactors, bio-filtration systems, systems with high aeration rates, activated sludge plants with aerobic reactors, bio-flow polishing plants, as well as membrane bioreactors. More palm oil plantations are investing into these technologies to harvest the biogas for fuel, and re-use other biomass materials for fertilizers, bio-composite materials, etc.

References

  • Khairiah, B and Khairul, A.M.A. Bio composites from oil palm resources. Journal of Oil Palm Research, April, 103-113 (2006).
  • Loh, T.K. Tilting sterilizer. In: Palm Oil Engineering Bulletin, No 94, pp. 29-42 (2010). MONGANA Report, Volume 1 and 2 CoopĂ©rative des Producteurs et exportateurs de l’huile de palme du Congo Belge. (1955).
  • Sivasothy, K., Shafil, A.F. and Lim, N.B.H. Analysis of the steam consumption during sterilization., Workshop on recent developments in palm oil milling technology and pollution control, Kuala Lumpur, p. 19, Malaysian Palm Oil Board, Kuala Lumpur )(1986).
  • Sivasothy, K. Advances in Oil Palm Research, Vol 1, 747, Y. Basiron, B.S. Jalani, and K.W. Chan (eds) , Malaysian Palm Oil Board, Kuala Lumpur) (2000).
  • Sivasothy, K. Continuous sterilization: the new paradigm for modernizing palm oil milling. Journal of Oil Palm Research, April, 144-152 (2006).
  • Sulong, M. and Tan, R.C.W. Filtration system for crude palm oil clarification and purification. In: Proc. Of the 1996 PORIM International Palm Oil Congress, Kuala Lumpur, pp. 410-424. (B. Muhamd, A.N. Ma, M.S. Affandi, Y.M. Choo, A. Kuntom, C.L. Chong, A.G.M. Top, K. Yaakob, S. Ahmad, J. Thambirajah, Z.A.A. Hassan and R. Masri (eds), Malaysian Palm Oil Board, Kuala Lumpur)(1996).
  • Yap, A.K.C. Palm waste as alternative fuel for cement plant. Palm Oil Engineering Bulletin No 91, 13-21 (2010).

Indonesian Palm Oil Conference and Price

Posted by Flora Sawita Labels:

Date & Venue

Indonesian Palm Oil Conference and Price Outlook 2009 will be held on 3 – 4 December 2008 at the Bali International Convention Center Westin Resort, Nusa Dua, Bali.

The Program

There are four main activities to be held at the Indonesian Palm Oil Conference and Price Outlook 2009, which are available for corporate as well as for individual participants: the Conference, Exhibition, Golf Tournament and Sponsorship.

* Conference

Distinguished speakers from UK, Germany, India, China, Malaysia as well as Indonesia, representing world renowned palm oil and vegetable oil experts, important consumers and main producers, will present their views and prediction for the palm oil market and price development in the future.

* Exhibition

Limited numbers of exhibition booths are available for corporate, associations and institutions. With more than six hundred participants from various countries, the exhibition will undoubtedly become an excellent opportunity to create public awareness and positive image as well as meeting your stakeholders.

* Social Function

As an icebreaker and get away from a restless day after the conference, social function will be held as a medium for all conference participants to get together and develop business networks in a more relaxed environment. A selection of snacks and beverages along with light entertainment will be set up to enhance the friendly and fun atmosphere.

* GAPKI Golf Tournament

With the spirit of working hard and play hard, a golf tournament will be held the day before the Conference at the New Kuta Golf and Ocean View (Kawasan Pecatu Indah Resort). This is also an excellent opportunity to get to better acquaint yourself with other participants in a scenic course, while appealing door prizes are provided for the golf participants.

* Sponsorship

With the present of participants coming from all sectors of palm oil industry from more than 12 countries, as well as an integrated publicity and promotion designed by GAPKI, your corporate identity will be exposed and noticeable widely by participating as sponsors. Please contact the Secretariat for further details.

Come and join this prestigious conference and feel the magic of the island of gods!


See you in Bali!

http://www.gapki.org

CPO price to rise

Posted by Flora Sawita Labels:

A world leading vegetable oil manufacturer predicts the price of crude palm oil (CPO) will rise throughout the year and into 2009 on consistently growing supply and demand.

Director of India's Godrej International Limited, Dorab E. Mistry, said the price of CPO would increase from the current US$1,181 (Rp 11 million) per ton to $1,243 by the end of June and that the price would continue to rise through the end of 2008.

"At some stage between September 2008 and February 2009, bleached and deodorized Palm Oil (a product of CPO) will go to up to $1,398," Dorab said after the closing of the world palm oil summit and exhibition in Jakarta on Friday.

As of last month, the average international price of CPO was $1,158 per ton. In 2007, the price averaged $780 per ton, or nearly double 2006's $477 per ton.

Dorab said worldwide CPO production would rise by 4 million tons this year as the commodity continued to attract new investors, and that a September production peak would see prices rise further.

He said Indonesia, the world's largest CPO producer, would account for at least 85 percent of global production next year, while this year the country accounts for 45.2 percent, with Malaysia the second largest with 42 percent.

He said China and India would continue to increase demand for the product. China's CPO imports grew 26 percent in the first quarter of 2008 and India's by 17 percent in the same period.

"The demand from Europe and the U.S., meanwhile, will be driven by a growing need for biodiesel, which will grow from 1 million to 1.5 million tons this year," he said, adding that his predictions depended on increasing CPO prices, which another expert said were set to collapse.

James Fry, managing director of LMC International Ltd., said CPO prices would fall on a decline in the price of crude oil, which he also predicted.

"Much of the demand for biodiesel is tied to fuel prices via biodiesel incentives... such as the U.S.' $1 per gallon credit," James said, referring to a U.S. policy on subsidizing biodiesel producers at a rate of $1 per gallon of vegetable oil blended with fossil fuels.

James said fuel prices would then decrease due to ample oil reserves.

The United States recently boosted its reserves from 540 million barrels to 702.7 million barrels. In May, the Organization of Petroleum Exporting Countries promised to increase production by 300,000 barrels per day.

http://www.thejakartapost.com

CPO prices

Posted by Flora Sawita Labels:

The average price of Crude Palm Oil (CPO) next year is expected to stay at US$360 per ton due to higher global demand. CPO is seen to be healthier than other edible oils and is needed for biodiesel as an alternative to fossil fuel, local association said.

""Based on the 10-year cycle, CPO prices should have reached their decade-long peak last year and should fall drastically this year and next year. Apparently, this will not be the case for now,"" Indonesian Palm Oil Producers Association (Gapki) chairman Derom Bangun said on Tuesday.

CPO prices reached their decade-long peak to average $430 per ton last year, while the average price over the first six months of this year was $360 per ton, Derom told reporters on the sidelines of a workshop titled ""Preventing and tackling forest and cultivated land fires"".

Derom said increasing global demand would enable Indonesia's CPO exports to rise to 9.6 million tons this year from last year's 8.7 million tons.

He was optimistic that demand for CPO would increase as consumers would turn to palm oil-based food products as other hydrogenated edible oils, such as soybean, sunflower and canolla oils, contained Trans Fatty Acid (TFA), believed to be bad for the heart.

""Starting Jan. 1, 2006, the U.S. will require every food manufacturer to state TFA level in each of their products,"" Derom said, adding that once the U.S. applied such a policy, other countries would eventually follow suit.

Moreover, global oil prices, which are hovering near $70 per barrel, have prompted higher demand for edible oils as biofuel and biodiesel to serve as alternatives to pricey fossil fuels, he said.

""Several European countries have started to provide tax incentives for industries importing edible oil, which is cleaner and help conserves the environment,"" he said.

He added a number of firms had shown an interest in importing more palm oil.

Commenting on India's latest move to cut the benchmark import price for CPO and palmolein, Derom said he expected Indonesia's exports to increase by 10 percent from an average of 200,000 tons per month.

Indonesia last year exported 2.7 million tons of CPO and palmolein, of which 1.9 million tons was CPO.

India, Asia's second largest vegetable oil importer, cut its benchmark CPO import price by $26 a ton to $397 and crude palmolein import price by $18 a ton to $414, the Solvent Extractors' Association of India said earlier.

The cut will effectively lower import duties on the product making shipments cheaper from Indonesia and Malaysia, the world's biggest producers of the cooking oil.

Output from the two countries is expected to make up about 85 percent of this year's global palm oil production.

http://www.thejakartapost.com

Crude Palm Oil (CPO) and Palm Kernel Oil (PKO) (2)

Posted by Flora Sawita Labels:




C
rude Palm Oil (CPO) and Palm Kernel Oil (PKO). The Company’s own plantations provide approximately 20% of the fruit processed by three Univanich factories, with the balance provided by more than 1,000 small and medium sized out-grower farmers.

The Univanich production process starts with our oil palm breeding programme and seed production unit. High quality hybrid oil palm seedlings are produced for our own plantings or for sale to our farmer suppliers. After careful selection in the Company’s nurseries, seedlings are ready for planting at around the age of 10 to 12 months.




Univanich hybrid oil palm seed is produced by cross pollinating pedigree Dura and Pisifera parent palms which have been collected over 30 years from leading breeding programmes around the world. To ensure high yields in Thailand’s growing conditions the progeny of these parent palms have been extensively tested in field trials to select the best hybrid crosses.



Germinated Univanich oil palm seeds for overseas customers are carefully packaged in cartons of 4,000 seeds each and are dispatched by airfreight from Phuket international airport.






Since 1992 Univanich has been progressively replanting with a new generation of high yielding palms. Pictured here are typical 18 month old Univanich oil palms. Harvesting will commence 28 months from planting.





By age 7 years the young palms have reached full maturity. Fruit bunches like these ripen and are harvested throughout the year, to provide a continuous supply of fruit.







Mechanisation features throughout the Univanich plantation operations, from collection of the fruit bunches in the field, to their transport to the factories by crane lorries or portable transport bins.






The Company’s newest factory, with initial capacity of 45 tonnes fruit per hour, was completed in the 4th Quarter of 2004. This factory is designed for expansion to 90 tonnes of fruit per hour as more young palms come into production in the Krabi area.
In 2005, the Company also increased its Palm Kernel crushing capacity to produce approximately 1,500 tonnes of palm kernel oil each month.


Crude Palm Oil (CPO) and Palm Kernel Oil (PKO) is despatched from Univanich factories by road tankers. These tankers deliver our products to customers in Bangkok or for export from our deep-water wharf at the nearby port of Krabi on the Andaman Sea.





Univanich is proud to be a supplier of raw materials to leading international manufacturers of a wide range of palm based products, including cooking oils, margarines, snack foods, dairy substitutes, soaps and cosmetics.

Crude Palm Oil (CPO) and Palm Kernel Oil (PKO) (1)

Posted by Flora Sawita Labels:

"We turned our kitchen into a sort of illicit still and made a hell of a mess in there brewing biodiesel fuel out of about 60 litres of yukky waste cooking oil we got from behind McDonald's one night (they were happy to give it to us once we told them we didn't want to eat it). We were sure it would work, but we had to make it ourselves first -- we're not chemists, and if we can make it anyone can.

"And it works! Amazing! Last night we put the stuff in Midori's old diesel Land Rover and it ran like a dream and smelt like a bunch of roses! Well, French fried roses anyway. Now it runs clean, on waste Big Mac residues we brewed up in a bucket in the kitchen, and we're very tickled!"







Biodiesel facts

Biodiesel is much cleaner than fossil-fuel diesel ("dinodiesel"). It can be used in any diesel engine with no need for modifications -- in fact diesel engines run better and last longer with biodiesel. And it can easily be made from a common waste product -- used cooking oil.
  1. Biodiesel burns up to 75% cleaner than conventional petroleum diesel fuel.
  2. Biodiesel reduces unburned hydrocarbons (-93%), carbon monoxide (-50%) and particulate matter (-30%) in exhaust fumes, as well as cancer-causing PAH (-80%) and nitrited PAH compounds (-90%). (US Environmental Protection Agency)
  3. Sulphur dioxide emissions are eliminated (biodiesel contains no sulphur).
  4. Biodiesel is plant-based and using it adds no extra CO2 to the atmosphere.
  5. The ozone-forming (smog) potential of biodiesel emissions is nearly 50% less than petro-diesel emissions.
  6. Nitrogen oxide (NOx) emissions may increase or decrease but can be reduced to well below petro-diesel fuel levels.
  7. Biodiesel exhaust is not offensive and doesn't cause eye irritation (it smells like French fries!).
  8. Biodiesel is environmentally friendly: it is renewable, "more biodegradable than sugar and less toxic than table salt" (US National Biodiesel Board, based on US Environmental Protection Agency studies).
  9. Biodiesel is a much better lubricant than petro-diesel and extends engine life -- even a small amount of biodiesel means cleaner emissions and better engine lubrication: 1% biodiesel added to petro-diesel will increase lubricity by 65%.
  10. Biodiesel can be mixed with petro-diesel in any proportion, with no need for a mixing additive.
  11. Biodiesel has a higher cetane number than petroleum diesel because of its oxygen content. The higher the cetane number, the more efficient the fuel -- the engine starts more easily, runs better and burns cleaner.
  12. With slight variations depending on the vehicle, performance and fuel economy with biodiesel is the same as with petro-diesel.

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