Showing posts with label food agriculture. Show all posts
Showing posts with label food agriculture. Show all posts

Thursday, April 21, 2011

Investment Environment of the Agro-Industry Sector in Kazakhstan

Agro-Industry in Kazakhstan
In 2003, Kazakhstan newly enacted the Act for New Foreign Investment after abolition of the Act for Foreign Investment and the Law on State Support for Direct Investment. Under the new law, there is no discrimination between domestic and foreign investors. Investment favors are provided in priority sectors, which include following sectors: industrial infrastructure, processing industry, agriculture, agro-industry, housing, the social sector and tourism infrastructure. The incentives for direct investments in the priority sectors are: property tax and income tax exemptions for up to five years respectively, and exemptions or reductions in customs duty on materials necessary for completion of the investment project.

In 2002, the new law on taxation was enacted. Taxation system of Kazakhstan generally seems to be coincident with international standards. However, there are so many taxes imposed on enterprises, which may distort profit structure of enterprises. The maximum tax rates are different across according to sources of taxes: 30 percent for corporate tax, 15 percent for value added tax, 21 percent for social security tax. It is estimated that 32-35 percent of total revenue accounts for taxes paid by enterprises, implying that the tax burden is high.

Table 1. Selected Tax Rates in Kazakhstan

Types
Tax Rate
Corporate Tax
Value Added Tax
Land Tax
Property Tax
Social Security Tax
Commodity Tax
Transportation Tax
Auction Tax
Up to 30%
Up to 15%
varies by use
1%
Up to 21%
varies by commodities
varies by transportation types
3%
Source: Korea EXIM Bank, 2005

Kazakhstan has tried to improve the investment climate to attract FDI to more sectors including oil industry since its independence from the Soviet Union in 1991. For this purpose, Kazakhstan enacted four major legislations relating to foreign investment, such as the Act for Foreign Investment in 1999, the Act for State Support for Direct Investment in 1997, the Act for Government Procurement in 1997 and the Tax Code in 2001.

As a result, Kazakhstan has been fairly successful in attracting FDI, which supported economic recovery. During the period from 1993 to 2003, gross FDI inflows to Kazakhstan totaled USD 23.4billion. As of 2003, crude oil and natural gas extraction accounted for 51.8 percent of gross FDI, while agriculture, forestry and fishery accounted for 0.04 percent. Food industry, which is based on agriculture, is predominantly domestic market oriented and not lucrative due to low market demand for the local food products, implying that it is less attractive to foreign investors.

Table 2. Foreign Direct Investment (FDI) in Kazakhstan by Sector
Unit: million USD, ( %)


1993-2000
2001
2002
Jan.–Jun.2003
Agriculture etc.
Mining
Manufacturing
Transport, etc
Finance
Real estate
Electric power
Others
7.4(0.1)
7,841.2(62.4)
1,766.4(14.1)
160.0(1.3)
206.4(1.6)
1,432.8(11.4)
433.0(3.4)
715.0(5.7)
5.0(0.1)
3078.1(67.7)
641.4(0.7)
161.1(161.1)
44.4(1.0)
456.5(10.0)
33.8(0.7)
124.3(2.7)
2.5(0.1)
2107.7(51.7)
829.5(20.4)
95.2(2.3.)
11.8(0.3)
841.4(20.7)
17.5(0.4)
167.9(4.1)
1.1(0.04)
1148.4(51.8)
433.3(19.5)
45.0(2.0)
7.8(0.4)
433.6(19.6)
58.4(2.6)
91.2(4.1)
Total
12,562.2(100.0)
4,544.6(100.0)
4073.5(100.0)
2218.8(100.0)
Source: National Bank of the Republic of Kazakhstan

Tuesday, April 19, 2011

Tajikistan’s Agriculture and Agro-industry Sector

Tajikistan Agriculture
Agriculture is Tajikistan’s major sector endowed with unique geographic and climatic environment. Due to its environment, Tajikistan can cultivate virtually almost all agricultural crops. The agricultural sector contributes nearly 30 percent to the country’s GDP and employs more than half of the total employment. In addition, it is responsible for more than 30 percent of exports. Especially, cotton alone provides 30 to 40 percent of budget revenues in taxes.

During the past years, about 400 agricultural producers have been restructured into over 14,000 farms with 3.8 million hectares of cropland. The agrarian reform significantly affected Tajikistan’s agricultural sector and related institutions. 85.3 percent of meat, 86.5 percent of milk, 81.5 percent of eggs, 56.7 percent of vegetables, and 66.3 percent of fruit and berries were produced by the private sector in 2001. However, the major part of the most valuable irrigated land is still controlled by state and collective farms.

The major food and agricultural commodities produced in Tajikistan are wheat, potatoes, cow milk, cotton seed, and cotton lint. Cotton lint is the major exporting agricultural commodity followed by onion and fruit products. Sugar, wheat, flour, and beef are major importing agricultural items of Tajikistan.

Cotton is the major crop whose production covers more than 50 percent of the country’s irrigated land. Before the independence, Tajikistan’s cotton yield per hectare was the highest in the central Asian region with an earning capacity of 60 to 70 percent of production costs. However, cotton production dramatically declined after the independence and halt of centralized supplies of material and technical resources. Furthermore, world lint cotton prices have dropped by more than 50 percent in the past years while prices of fuel, machinery, and fertilizers keep growing.

In Tajikistan, cotton marketing and production are subject to the state administrative system, there is no competition among participants. Also local government imposes extra charges on cotton sales to boost its tax collection.

Monday, April 18, 2011

Agriculture and Agro-industry Sector of Kyrgyz Republic

Kyrgyz Republic Agriculture
The Kyrgyz Republic’s economy is predominately driven by agriculture and has relatively small manufacturing industry. The agricultural sector contributes nearly 40 percent to the country’s GDP and employs about half of total registered employment. Following the break-up of state owned enterprises, the agricultural sector has increasingly moved away from large scale collective farming to smaller subsistence level of family farming. Specifically, 40 percent of agricultural output is produced by private farmers and 54 percent from family farms.

The major food and agricultural commodities, produced in Kyrgyz Republic are potatoes, wheat, cow milk, sugar beets, and maize. Cotton lint and tobacco leaf are the major exporting agricultural commodities and wheat and sugar are major importing agricultural items.

As part of its effort to stimulate the development of the cotton sector, the government has set aside about 3 percent of total arable land for cotton production. This resulted in growth of cotton production from 75,000 ton in 1995 to about 122,000 ton in 2004. Nearly 80 percent of the cotton is grown by private farmers, which generates almost 5 percent of the total value of the country’s exports. However, high production costs from lack of fertilizers, pesticides, and herbicides weaken the industry and negatively affect country’s cotton export potential. Tobacco is also an important cash crop for the Kyrgyz agricultural sector. However, most of tobacco is grown by state owned enterprises and local value-added production activities are very limited.

Tuesday, April 12, 2011

Review of Agriculture and Agro-Industry Sector in Kazakhstan

Agriculture in Kazakhstan
Although the share of agriculture (and agro-industry) out of GDP is only 8 percent, agriculture (and agro-industry) is a very important sector in Kazakhstan, since over 40 percent of population still resides in rural areas and 20 percent of labor is employed by the agricultural sector.

Kazakhstan is one of the world’s largest grain producer and exporter. The main grain crop is wheat. It is specialized in the cattle-breeding and fruit-growing. Livestock production accounts for about 40 percent of the agricultural production in value. Livestock production has been a key economic activity in Kazakhstan for centuries and will continue to be a major source of employment, food supply, and income for the rural population. The production of meat and milk satisfies domestic demand, while vegetables and fruits partially satisfy domestic demand because of the logistic difficulties associated with transportation and storage.

Agricultural input industry such as agricultural machinery, fertilizer and agro-chemicals have not been developed due to the lack of investment. Thus, the availability of agricultural input is too low, limiting yield increase across all agricultural sectors.

Food processing in Kazakhstan is one of the strategically important industry in provisioning high quality food for the population. Food processing industry consists of more than 30 specialized sectors, sub sectors and separate manufactures. It includes about 5,151 plants and manufacturers, 80 percent of which are small and medium–size enterprises. The SMEs employs 69.4 thousand people that is 10.3 percent of total employees in all industries of the country.

The major segments of food processing industry include flour-and-cereals, meat processing, dairy, fruits and vegetables processing. Flour and cereals account for 74.3 percent of the total enterprises in terms of the number of enterprises.

Table 1. Distribution of Agro-industry by Commodity Types in Kazakhstan, 2004
Sectors of Agro-Industry
Ratio (%)
Flour and cereal
Meat
processing
Dairy
Fruits
and vegetable processing
Others
74.3
14.1
8.5
2.7
0.4
Total
100
Source: Ministry of Agriculture, Kazakhstan

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Monday, April 11, 2011

Review of Agriculture and Agro-Industry Sector in the CIS

CIS Agriculture and Agro-Industry
The CIS countries began their economic transition in 1989-1990 based on the common institutional and organizational heritage in agriculture. In the past, there was no land ownership, and most land was cultivated in the form of large-scale collective farms sized at thousands of hectares. Each farm employed hundreds of workers.

Product markets and input supply channels were largely controlled by state organizations under the command economic framework with virtually no budget constraint. This was the Soviet model of socialist agriculture that dominated the region since the early 1950s. The inefficiency of socialized agriculture was a result of the command economy, which curbed the farms from the contact with market economy, set central targets with no consideration of consumer preferences, and allowed farms to function under soft budget constraints without proper profit accountability.

The missing of market signals resulted in inefficiency in the agricultural marketing and food processing industry. Agro-processing industries, or simply agro-based industries, can be described as industries that add value to agricultural raw materials, both food and non-food, through processing them into marketable, usable or edible products, while enhancing the income and profitability of the producers (UNESCAP, 2003).

During the economic transition, the lack of investments and serious budget constraints affected development of agriculture and agro-industry. While recent successful land reform processes in the countries were positive steps toward market-oriented agro-industry, suboptimal input use, such as low fertilizer, chemical supply and old machineries, is still problematic.

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Saturday, April 2, 2011

What is Agro-industry?

Agro-industry-Agroindustry-Agroindustri-Agroindustria
Agroindustry or agro-industry (agroindustrial or agro-industrial) is industry dealing with the supply, processing, and distribution of farm products. Agro-industry is related to the large-scale production, processing, and packaging of food using modern equipment and methods.

An 'agro-industry' means a unit which adds value to agricultural produce / intermediates / residues; both food and non-food; by processing them into products which are marketable or usable or edible, or by improving storability, or by providing a link from farm to the market or a part thereof. Agro-industry also includes hitech agriculture, biotechnology based agriculture and the certified/ truthful label seed producing industry.

'Agricultural products' would include produce of Agriculture - Horticulture - Sericulture - Floriculture - Medicinal plants - Fisheries - Poultry - Apiculture - Dairy products and also includes minor forest produce and live stock based products.

It would also include industries which are engaged in the utilisation of agriculture waste or its disposal.

Friday, March 25, 2011

What is Agribusiness?

agribusiness, agro-industry, agriculture
Agribusiness is the human activities that use natural resources to fullfill their needs of their life. Agribusiness is a broad concept used to describe corporate agricultural enterprises individually and collectively. Agribusinesses are companies involved in one or more stages of the production of crops and livestock. In other words agribusiness is an economic perspective for agricultural activities.

In agriculture, agribusiness is a generic term for the various businesses involved in food production, including farming and contract farming, seed supply, agrichemicals, farm machinery, wholesale and distribution, processing, marketing, and retail sales. The term has two distinctly different connotations depending on context.

Within the agriculture industry, agribusiness is widely used simply as a convenient portmanteau of agriculture and business, referring to the range of activities and disciplines encompassed by modern food production. There are academic degrees in and departments of agribusiness, agribusiness trade associations, agribusiness publications, and so forth, worldwide. Here, the term is only descriptive, and is synonymous in the broadest sense with food industry. The UN's Food and Agriculture Organization, for example, operates a section devoted to Agribusiness Development, which seeks to promote food industry growth in the Third World.

Among critics of large-scale, industrialized, vertically integrated food production, the term agribusiness is used negatively, synonymous with corporate farming. As such, it is often contrasted with smaller family-owned farms. Negative connotations are also derived from the negative associations of "business" and "corporations" by critics of capitalism or corporate excess. As concern over global warming intensifies, biofuels derived from food crops quickly emerged as a practical answer to the energy crisis. Adding corn ethanol to gasoline or using palm oil for biodiesel makes the fuel burn more cleanly, stretches oil supplies, and perhaps most attractive to some politicians, provides a nice boost to big agribusiness. In Europe and in the US, increasing biofuels was mandated by law. Rising fuel costs are increasingly adding financial burdens on the day-to-day running of agricultural companies.

Examples of agribusinesses activities include :
  • research and development of new agricultural resources and methods
  • ownership or management of agricultural production facilities such as farmlands and livestock facilities
  • manufacture or distribution of agricultural supplies and equipment such as machinery, feed, and fertilizers
  • processing or distribution of agricultural products

Providing food or fibers is the ultimate product of all agribusiness operations. As such, the economic impact of agribusiness is significant; agribusiness is almost two times as large as the sum of all manufacturing enterprises (measured in total assets); it represents 40 percent of all consumer spending; and it employs 37 percent of the labor force.

The term "agribusiness" was coined in the 1950s by John Herbert Davis and Ray A. Goldberg to reflect the two-way interdependence between businesspeople and farmers in the dual roles of suppliers and purchasers. Business firms that serve agriculture rely on farmers for their markets and for some of their supplies. By the same token, farms could not operate without businesses that manufacture farm supplies and those that store, process, and merchandise farm commodities.

References:

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Sunday, March 20, 2011

Preparation of Raw Mannan and Mannanase from Palm Oil Cake

Mannan, Mannanase
ABSTRACT: Mannan, that is many in farm waste and can be a source of biomass besides cellulose and xylan, are still not widely used. During this time utilization of Mannan biomass, mainly from palm oil cake and copra, were more intended for animal feed with a low efficiency of utilization rate. The advances of glico-science and glico-technology provide high benefits in the production of various oligosaccharides which  known can be utilized as a functional food.

The degradation of mannan by several types of mannanase enzymes can be obtained mannose and manno-oligosacharides that serves as a functional food which can be utilized as a prebiotic. Waste biomass from industrial of plantations, agriculture and forest products in Indonesia containing mannan polysaccharides, particularly waste from the production of palm oil, copra and coffee, can be used for the production mannosa of and manno-oligosaccharides. By the production of palm oil (crude palm oil, CPO) , it  is produced waste of sludge and palm oil cake. About 20 ~ 40% fiber composition of this palm oil cake is a beta-Mannan

For the fermentation process, the first step is to perform the substances analysis and preparation of Mannan from palm oil cake. The optimum condition of initial preparation by catalytic hydrolysis of palm oil cake is on the use of 150 g / L substrate in water, 2% catalyst, the temperature of 110oC conducted over 1.0 hours . The process of hydrolysis of 250 g / L for palm oil cake in water with 2% catalyst and heating to 90oC for 1.5 hours followed by the deposition process of 1:1 acetone produces samples with Mannan concentration 19.1% .

The result of substrate hydrolysis of palm oil cake using selective microbes, Streptomyces and Saccharoployspora (BTCC collection) showed that qualitatively oligosaccharide compounds was formed. Both isolates of the bacteria produced mannanase enzymes with the highest specific activity after 24 hours of fermentation.

Keywords: palm oil cake, mannan, mannosa, manno-oligosaccharides, functional food

Source >>

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Friday, March 11, 2011

About HACCP (Hazard Analysis Critical Control Point)

HACCP (Hazard Analysis Critical Control Point) is a systematic preventive approach to food safety and pharmaceutical safety that addresses physical, chemical, and biological hazards as a means of prevention rather than finished product inspection. HACCP is used in the food industry to identify potential food safety hazards, so that key actions can be taken to reduce or eliminate the risk of the hazards being realized.

The system is used at all stages of food production and preparation processes including packaging, distribution, etc. The Food and Drug Administration (FDA) and the United States Department of Agriculture (USDA) say that their mandatory HACCP programs for juice and meat are an effective approach to food safety and protecting public health. Meat HACCP systems are regulated by the USDA, while seafood and juice are regulated by the FDA. The use of HACCP is currently voluntary in other food industries.

A forerunner to HACCP was developed in the form of production process monitoring during World War II because traditional "end of the pipe" testing was not an efficient way to ferret out artillery shells that would not explode. HACCP itself was conceived in the 1960s when the US National Aeronautics and Space Administration (NASA) asked Pillsbury to design and manufacture the first foods for space flights. Since then, HACCP has been recognized internationally as a logical tool for adapting traditional inspection methods to a modern, science-based, food safety system.

Based on risk-assessment, HACCP plans allow both industry and government to allocate their resources efficiently in establishing and auditing safe food production practices. In 1994, the organization of International HACCP Alliance was established initially for the US meat and poultry industries to assist them with implementing HACCP and now its membership has been spread over other professional/industrial areas.

Hence, HACCP has been increasingly applied to industries other than food, such as cosmetics and pharmaceuticals. This method, which in effect seeks to plan out unsafe practices, differs from traditional produce and test quality control methods which are less successful and inappropriate for highly perishable foods. In the US, HACCP compliance is regulated by 21 CFR part 120 and 123. Similarly, FAO/WHO published a guideline for all governments to handle the issue in small and less developed food businesses.

Wednesday, January 19, 2011

Canning as a Method Preserving Fruits and Vegetables

Canned fruits
The canning of fruits and vegetables is a growing, competitive industry, especially the international export portion. The industry is made up of establishments primarily engaged in canning fruits, vegetables, fruit and vegetable juices; processing ketchup and other tomato sauces; and producing natural and imitation preserves, jams, and jellies.

Preservation Process

The primary objective of food processing is the preservation of perishable foods in a stable form that can be stored and shipped to distant markets during all months of the year. Processing also can change foods into new or more usable forms and make foods more convenient to prepare.

The goal of the canning process is to destroy any microorganisms in the food and prevent recontamination by microorganisms. Heat is the most common agent used to destroy microorganisms.


Canned vegetables
Removal of oxygen can be used in conjunction with other methods to prevent the growth of oxygenrequiring microorganisms.In the conventional canning of fruits and vegetables, there are basic process steps that are similar for both types of products. However, there is a great diversity among all plants and even those plants processing the same commodity. The differences include the inclusion of certain operations for some fruits or vegetables, the sequence of the process steps used in the operations, and the cooking or blanching steps. Production of fruit or vegetable juices occurs by a different sequence of operations and there is a wide diversity among these plants. Typical canned products include beans (cut and whole), beets, carrots, corn, peas, spinach, tomatoes, apples, peaches, pineapple, pears, apricots, and cranberries. Typical juices are orange, pineapple, grapefruit, tomato, and cranberry. Generic process flow diagrams for the canning of fruits, vegetables, and fruit juices are shown in Figures 1, 2, and 3.

The steps outlined in these figures are intended to the basic processes in production. A typical commercial canning operation may employ the following general processes:
  • washing, 
  • sorting/grading, 
  • preparation, 
  • container filling, 
  • exhausting, 
  • container sealing, 
  • heat sterilization, 
  • cooling, labeling/casing, and 
  • torage for shipment. 

In these diagrams, no attempt has been made to be product specific and include all process steps that would be used for all products. 

Canned juice
Figures 1, 2, and 3 show optional operations, as dotted line steps, that are often used but are not used for all products. One of the major differences in the sequence of operations between fruit and vegetable canning is the blanching operation. Most of the fruits are not blanched prior to can filling whereas many of the vegetables undergo this step. Canned vegetables generally require more severe processing than do fruits because the vegetables have much lower acidity and contain more heat-resistant soil organisms. Many vegetables also require more cooking than fruits to develop their most desirable flavor and texture. The methods used in the cooking step vary widely among facilities. With many fruits, preliminary treatment steps (e. g., peeling, coring, halving, pitting) occur prior to any heating or cooking step but with vegetables, these treatment steps often occur after the vegetable has been blanched. For both fruits and vegetables, peeling is done either by a mechanical peeler, steam peeling, or lye peeling. The choice depends upon the type of fruit or vegetable or the choice of the company.

Some citrus fruit processors produce dry citrus peel, citrus molasses and D-limonene from the peels and pulp residue collected from the canning and juice operations. Other juice processing facilities use concentrates and raw commodity processing does not occur at the facility. The peels and residue are collected and ground in a hammermill, lime is added to neutralize the acids, and the product pressed to remove excess moisture. The liquid from the press is screened to remove large particles, which are recycled back to the press, and the liquid is concentrated to molasses in an evaporator. The pressed peel is sent to a direct-fired hot-air drier. After passing through a condenser to remove the D-limonene, the exhaust gases from the drier are used as the heat source for the molasses evaporator.

Equipment for conventional canning has been converting from batch to continuous units. In continuous retorts, the cans are fed through an air lock, then rotated through the pressurized heating chamber, and subsequently cooled through a second section of the retort in a separate cold-water cooler. Commercial methods for sterilization of canned foods with a pH of 4.5 or lower include use of static retorts, which are similar to large pressure cookers. A newer unit is the agitating retort, which mechanically moves the can and the food, providing quicker heat penetration. In the aseptic packaging process, the problem with slow heat penetration in the in-container process are avoided by sterilizing and cooling the food separate from the container. Presterilized containers are then filled with the sterilized and cooled product and are sealed in a sterile atmosphere.

Figure 1. Generic process diagram for fruit canning

To provide a closer insight into the actual processes that occur during a canning operation, a description of the canning of whole tomatoes is presented in the following paragraphs. This description provides more detail for each of the operations than is presented in the generic process flow diagrams in Figures 1, 2, and 3.

Figure 2. Generic process diagram for vegetable canning

Preparation

The principal preparation steps are washing and sorting. Mechanically harvested tomatoes are usually thoroughly washed by high-pressure sprays or by strong-flowing streams of water while being passed along a moving belt or on agitating or revolving screens. The raw produce may need to be sorted for size and maturity. Sorting for size is accomplished by passing the raw tomatoes through a series of moving screens with different mesh sizes or over differently spaced rollers. Separation into groups according to degree of ripeness or perfection of shape is done by hand; trimming is also done by hand.

Figure 3. Generic process diagram for juice canning

Peeling And Coring

Formerly, tomatoes were initially scalded followed by hand peeling, but steam peeling and lye peeling have also become widely used. With steam peeling, the tomatoes are treated with steam to loosen the skin, which is then removed by mechanical means. In lye peeling, the fruit is immersed in a hot lye bath or sprayed with a boiling solution of 10 to 20 percent lye. The excess lye is then drained and any lye that adheres to the tomatoes is removed with the peel by thorough washing. Coring is done by a water-powered device with a small turbine wheel. A special blade mounted on the turbine wheel spins and removes the tomato cores.

Filling

After peeling and coring, the tomatoes are conveyed by automatic runways, through washers, to the point of filling. Before being filled, the can or glass containers are cleaned by hot water, steam, or air blast. Most filling is done by machine. The containers are filled with the solid product and then usually topped with a light puree of tomato juice. Acidification of canned whole tomatoes with 0.1 to 0.2 percent citric acid has been suggested as a means of increasing acidity to a safer and more desirable level. Because of the increased sourness of the acidified product, the addition of 2 to 3 percent sucrose is used to balance the taste. The addition of salt is important for palatability.

Exhausting

The objective of exhausting containers is to remove air so that the pressure inside the container following heat treatment and cooling will be less than atmospheric. The reduced internal pressure (vacuum) helps to keep the can ends drawn in, reduces strain on the containers during processing, and minimizes the level of oxygen remaining in the headspace. It also helps to extend the shelf life of food products and prevents bulging of the container at high altitudes.

Vacuum in the can may be obtained by the use of heat or by mechanical means. The tomatoes may be preheated before filling and sealed hot. For products that cannot be preheated before filling, it may be necessary to pass the filled containers through a steam chamber or tunnel prior to the sealing machine to expel gases from the food and raise the temperature. Vacuum also may be produced mechanically by sealing containers in a chamber under a high vacuum.

Sealing

In sealing lids on metal cans, a double seam is created by interlocking the curl of the lid and flange of the can. Many closing machines are equipped to create vacuum in the headspace either mechanically or by steam-flow before lids are sealed.

Heat Sterilization

During processing, microorganisms that can cause spoilage are destroyed by heat. The temperature and processing time vary with the nature of the product and the size of the container. Acidic products, such as tomatoes, are readily preserved at 100°C (212°F). The containers holding these products are processed in atmospheric steam or hot-water cookers. The rotary continuous cookers, which operate at 100°C (212°F), have largely replaced retorts and open-still cookers for processing canned tomatoes. Some plants use hydrostatic cookers and others use continuous-pressure cookers.

Cooling

After heat sterilization, containers are quickly cooled to prevent overcooking. Containers may be quick cooled by adding water to the cooker under air pressure or by conveying the containers from the cooker to a rotary cooler equipped with a cold-water spray.

Labeling And Casing

After the heat sterilization, cooling, and drying operations, the containers are ready for labeling. Labeling machines apply glue and labels in one high-speed operation. The labeled cans or jars are the packed into shipping cartons.

References:
  1. U. S. Department of Commerce, International Trade Administration, U. S. Industrial Outlook 1992-Food and Beverages.
  2. 1987 Census of Manufacturers, MC87-1-20-C, Industries Series, Preserved Fruits and Vegetables.
  3. B. S. Luh and J. G. Woodroof, ed., Commercial Vegetable Processing, 2nd edition, Van Nostrand Reinhold, New York, 1988.
  4. J. L. Jones, et al., Overview Of Environmental Control Measures And Problems In The Food Processing Industries. Industrial Environmental Research Laboratory, Cincinnati, OH, Kenneth Dostal, Food and Wood Products Branch. Grant No. R804642-01, January 1979.
  5. N. W. Deroiser, The Technology Of Food Preservation, 3rd edition, The Avi Publishing Company, Inc., Westport, CT, 1970. 
  6. J. G. Woodroof and B. S. Luh, ed., Commercial Fruit Processing, The Avi Publishing Company, Westport, CT, 1986.
  7. H. J. Van Langenhove, et al., Identification Of Volatiles Emitted During The Blanching Process Of Brussels Sprouts And Cauliflower, Journal of the Science of Food and Agriculture, 55:483-487, 1991.
  8. R. G. Buttery, et al., Identification Of Additional Tomato Paste Volatiles, Journal of Agricultural and Food Chemistry, 38(3):792-795, 1990.
  9. H. J. Rafson, Odor Emission Control For The Food Industry, Food Technology, June 1977.

Wednesday, December 29, 2010

JOURNAL: The Role of Pulsed-Field Gel Electrophoresis in Investigating a Salmonella Outbreak Linked to Roma Tomatoes

ABSTRACT: In July 2004 the PA Dept of Health (PA DOH) and the PA Dept of Agriculture (PDA), along with the Centers for Disease Control and Prevention (CDC) and the U.S. Food and Drug Administration (FDA), were involved in the investigation of a multi-state foodborne outbreak of Salmonella. The outbreak, centered in Pennsylvania, involved food items purchased at deli counters of a large gas station chain.  

Routine surveillance by the PA DOH’s pulsed- field gel electrophoresis (PFGE) lab showed a spike in serotype Javiana, and PFGE analysis of these isolates identified an outbreak pattern. An epidemiologic investigation implicated tomatoes as the source of infection. From tomatoes the PDA isolated Salmonella, which the PA DOH rapidly serotyped as Anatum. Subsequently, PFGE established a direct patient-tomato link for this organism. As the epi investigation and PFGE testing continued, four serotypes (Javiana, Anatum, Thompson, and Typhimurium) were eventually implicated. PFGE  results failed to support the involvement of one epi-linked serotype (Muenchen). The standardized CDC PFGE protocol (Ref. 1) using multiple enzymes was used to further characterize the isolates. Through the CDC-sponsored PulseNet communications system, PFGE results were posted to the WebBoard. Rapid responses from neighboring states revealed this to be a multi-state outbreak

Sunday, December 26, 2010

Food Irradiation: Microbiological Safety and Disinfestation

ABSTRACT: Irradiation can kill microorganisms, insects and parasites and this is a fundamental reason for applying the technology to improve the safety and quality of many foods and food products. This paper will discuss how various organisms can be affected by irradiation treatment. Factors affecting radiation sensitivity will also be discussed and how the use of irradiation in combination with other treatments can be beneficial in improving quality and safety.

Keywords: bacteria, spores, yeasts, moulds, insects, parasites
FULL TEXT>>

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Friday, December 24, 2010

JOURNAL: Can India be the Food Basket For the World?

ABSTRACT: India can become the food supplier of the world. It has the cultivable land, all the seasons for production of all varieties of fruits and vegetables, an agribusiness system that works although it needs to be vastly improved. The single most important problem facing the Indian agricultural industry is the highly inefficient supply chain. Because of lack of cold chain infrastructure and also a food processing industry about 20 per cent of all foods produced in India (Rs. 500 b) are wasted. 

By building an efficient and effective supply chain using state of the art techniques it is possible to serve the population with value added food while simultaneously ensuring remunerative prices to the farmers. The surplus of cereals, fruits, vegetables, milk, fish, meat and poultry can be processed as value added food products and marketed aggressively both locally and internationally. Investments in cold chain infrastructure, applied research in post harvest technologies, installation of food processing plants in various sectors and development of food retailing sector are mandatory for achieving gains in this sector. Strategic growth plans for achieving both national and international competitiveness of the food industry are essential.
FULL TEXT >>

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Thursday, December 23, 2010

JOURNAL: Food Chain Activities of Women in an Agrarian Community in Central Nigeria: Implications for Rural Development

ABSTRACT : This study was carried out in Otukpo Local Government Area. The purpose was to determine food chain activities of women and implications for women in agriculture. Three hundred respondents randomly selected from the six districts that make up the local government area constituted the sample for the study. Results of the survey showed that women in the area were responsible for many activities in the food chain, including planting, harvesting, weeding, marketing and transportation of farm produce. Major post-harvest processing activities of women were milling, parboiling, pounding, peeling, threshing and grinding. Others were slicing of okro, picking of palm fruits and melon, and crushing of palm kernels.

The main storage methods used by the women were smoking, salting, stacking of grains on wooden platform (oda) and storage in barns. Most of the women traveled a distance of less than one kilometer to and from their sources of drinking water. The most important sources of fuel were firewood and kerosene stoves. Field observation revealed that the women were largely responsible for the nutrition and health care of family members, particularly children. Constraints to the food chain activities were inadequate time for farming, too much involvement in domestic activities, poor financial resources and storage facilities. Implications of results of the study for rural development  were identified and articulated for policy formulation and implementation.

Sunday, December 19, 2010

JOURNAL: Assessing Lycopene Content In California Processing Tomatoes

ABSTRACT: Tomatoes constitute the main source of lycopene in the U.S. diet. Growing interest in the potential health-protective role of lycopene is bringing attention to the content of lycopene in tomatoes. A wide range of lycopene content (55–181 mg/kg) was observed in juice prepared from selected cultivars of tomatoes grown in nine California counties. A comparison of cultivars H 8892, H 9665 and Halley 3155 grown in Colusa, Fresno, San Joaquin and Yolo counties during three seasons concludes that mean lycopene concentrations were significantly greater (P < 0.01) in 2000 (106 mg/kg) than in 1999 (101 mg/kg) and 2001 (88 mg/kg). An evaluation of nine processing tomato cultivars harvested in one season on four separate dates indicated that lycopene concentration of tomatoes decreases with maturation on the plant. Lycopene concentration of tomatoes is dependent on the growing season, location, cultivar and maturity.
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JOURNAL: Adoption of Industrial Best Practices

ABSTRACT: In partnership with the California League of Food Processors, the California Energy Commission encourages the adoption of industrial Best Practices to advance energy efficiency in the food processing industry. The partnership works with investor and publicly owned utilities to hold training workshops and support the delivery of energy system assessments to their customers. These services encourage company managers to establish a corporate commitment to energy efficiency. The adoption of Best Practices can generate significant energy savings resulting in considerable cost savings to California’s $50 billion food processing industry.

Keywords: Energy efficiency, best practices, food industry, food processing, California Energy Commission, California League of Food Processors, training workshops, energy systems assessments, steam systems, compressed air system, case studies.
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