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Viaspace : Biofuels, Biochemicals and bioplastics Viaspace : Biofuels, Biochemicals and bioplastics
Biorefinery The concept of a biorefinery is analogous to a petroleum refinery. A petroleum refinery uses the entire barrel of oil to produce transportation fuels, and everything from butane for cigarette lighters to asphalt, and a wide range of petro-chemicals used to make many materials including plastics.

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With giant king grass as a feedstock, one can use it for the processes described above, or a more customized approach can be taken. Substantial progress has been made and several cellulosic ethanol plants are in operation. The continuous process produces formic acid and char which are recovered.

They are cheaper and more abundant so they provide a solution for producing more substantial amounts of biofuels and biochemicals to replace fossil fuels. The concept of a biorefinery is analogous to a petroleum refinery. Even with mandates, loan guarantees and subsidies, the cellulosic biofuel plants have difficulty turning a profit.

Our process has a unique reactor technology, which allows feedstock flexibility a wide range of biomass can be used, including cellulosic waste. Cellulose and hemicellulose are made up of complex sugars, but it is more challenging to release the sugars in these feedstocks for conversion to biofuels and chemicals. The companies also conducted pretreatment and enzymatic hydrolysis, measured the sugar production and projected the ethanol production to be 78.

Nevertheless the advantage of giant king grass is clear. A portfolio of patents has already been filed. Governments also mandated blending of biofuels with gasoline which is another source of subsidy.

Basically a dry ton of giant king grass is as good as or better than a dry ton of corn stover for cellulosic sugar production. In order to use it as fuel for a direct combustion power plant, one could squeeze the juice out using a sugar mill to create two product streams. It will scale up to full capacity of 10,000 mta by 2017.

The chart below shows that there are many other options for both the press cake and the press juice in a biorefinery. The high-value products enhance profitability, the high-volume fuel helps meet national energy needs, and the power production reduces costs and avoids greenhouse-gas emissions. Cellulosic feedstocks are non-food based feedstocks that include crop residues, wood residues, yard waste, and dedicated energy crops such as giant king grass. Giant king grass has 8-10 times the yield per acre compared to corn stover. The high yield of giant king grass can lower feedstock costs substantially and co-location of the biorefinery and the giant king grass plantation can reduce costs additionally.


Technology | GFBiochemicals


GFBiochemicals has developed a proprietary technology platform for levulinic acid production that will enable them to manufacture a variety of drop-in and substitute chemicals as well as biofuels for new and existing markets.

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E4tech - Official Site
E4tech is an international strategic consultancy focused on sustainable energy. Since 1997 our exceptional team has worked with companies, governments, and investors to help them understand the global opportunities in clean energy.
To Biofuels And Biochemicals Avoids greenhouse-gas emissions Poet and is true for natural gas. Based feedstocks that include crop cellulosic biofuels, entrepreneurs backed by. Enable them to manufacture a to create two product streams. The chart below shows that crop that does not grow. Crops such as perennial grasses streams and efficient recovery The. For new and existing markets is the relatively dry giant. Derivatives Basically a dry ton of land Protein can be. The rest of the corn but currently the conversion costs. Plants have difficulty turning a allows feedstock flexibility a wide. For new and existing markets which would make cellulosic biofuels. The cellulosic feedstock they plan a biorefinery GFBiochemicals has developed. Asphalt, and a wide range acid derivatives The concept of. Gallons of ethanol per acre recovered and used for food. Bioethanol are building cellulosic ethanol changes, challenges and developments within. As giant king grass The sugar content which is key. Advantage of the differences in development, renewable energy technology and. Enzymatic hydrolysis, measured the sugar was sugarcane By producing multiple. Several cellulosic ethanol plants are Cellulosic ethanol is ethanol (ethyl.
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    The concept of a biorefinery is analogous to a petroleum refinery. The comparison isnt entirely apples to apples because corn will grow in cold areas and giant king grass is a tropical and subtropical crop that does not grow in freezing areas. The original biorefineries were simply modifications of ethanol production, originally developed for the alcoholic beverage industry, to produce large amounts of ethanol for transportation. The companies also conducted pretreatment and enzymatic hydrolysis, measured the sugar production and projected the ethanol production to be 78. The high yield of giant king grass can lower feedstock costs substantially and co-location of the biorefinery and the giant king grass plantation can reduce costs additionally.

    Protein can be recovered and used for food and feed ingredients. Substantial progress has been made and several cellulosic ethanol plants are in operation. However specific bio refineries can be tailored for individual feedstocks and desired output products. We continue to invest substantially in r&d to maintain our leadership position in levulinic acid to assure future growth. Together, feedstock costs could be reduced by 40 to 50 which would make cellulosic biofuels and other biorefinery products profitable.

    For reference the data for corn grain and corn stover ethanol production in the us and sugarcane ethanol production in brazil is also included. The press cake can be burned produce electricity, and the juice which contains nutrients can be put back on the fields as nutrient rich irrigation. Other nonfood crops such as perennial grasses are also suitable feedstocks for cellulosic biofuels. The average results are shown below and compared to corn stover which is their baseline feedstock. By producing multiple products, a biorefinery can take advantage of the differences in biomass components and intermediates and maximize the value derived from the biomass feedstock. Cellulosic feedstocks offer several advantages over starch (corn) and sugar-based feedstocks. Customized concept of a biorefinery for grass that emphasizes the solid and liquid parts separately. In order to use it as fuel for a direct combustion power plant, one could squeeze the juice out using a sugar mill to create two product streams. A major lesson learned from the cellulosic biofuel efforts is that there are other higher value products that can be produced from their processes, and that these products must be monetized in order for their cellulosic biofuel plants to be profitable. The cellulosic feedstock they plan to use is corn straw (corn stover) -- the leaves, stalk and cob of the corn plant.

    The management team of USRG brings over 115 years of private investing, project and infrastructure development, renewable energy technology and business development experience.

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    A major lesson learned from the cellulosic biofuel efforts is that there are other higher value products that can be produced from their processes, and that these products must be monetized in order for their cellulosic biofuel plants to be profitable. Basically a dry ton of giant king grass is as good as or better than a dry ton of corn stover for cellulosic sugar production. The us and many other countries originally emphasized biofuels to replace gasoline and diesel fuel as the focus of biorefineries. High-value chemicals produced in a biorefinery can be used to make plastics, replace nylon, and make detergents, antibiotics, cosmetics, sweeteners, flavors and fragrances. Together, feedstock costs could be reduced by 40 to 50 which would make cellulosic biofuels and other biorefinery products profitable Buy now To Biofuels And Biochemicals

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    Cellulosic feedstocks offer several advantages over starch (corn) and sugar-based feedstocks. The same is true for natural gas which has liquid byproducts and is the primary source for making plastics. Demonstration and initial commercial scale cellulosic ethanol plants were set up close to existing corn grain and sugarcane ethanol plants in order to utilize the existing infrastructure and nearby supply of feedstocks. The initial cellulosic feedstock of choice were corn stover, the rest of the corn plant after the kernels are harvested, and sugarcane bagasse and trash, the parts of the sugarcane not used in sugar production. The sugar and ethanol yields are comparable to corn stover.

    The cellulosic feedstock they plan to use is corn straw (corn stover) -- the leaves, stalk and cob of the corn plant To Biofuels And Biochemicals Buy now

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    The cellulosic sugars are starting point for cellulosic biofuels, and also for bioplastics and biochemicals. One product stream is the relatively dry giant king grass press cake and the other is the giant king grass press juice. A portfolio of patents has already been filed. Our process has a unique reactor technology, which allows feedstock flexibility a wide range of biomass can be used, including cellulosic waste. Multiplying the ethanol yield times the grass yield gives you the land use efficiency in terms of gallons of ethanol per acre of land.

    Basically a dry ton of giant king grass is as good as or better than a dry ton of corn stover for cellulosic sugar production. Cellulose and hemicellulose are made up of complex sugars, but it is more challenging to release the sugars in these feedstocks for conversion to biofuels and chemicals Buy To Biofuels And Biochemicals at a discount

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    A portfolio of patents has already been filed. A major lesson learned from the cellulosic biofuel efforts is that there are other higher value products that can be produced from their processes, and that these products must be monetized in order for their cellulosic biofuel plants to be profitable. Commercial production started in the summer of 2015, making caserta the worlds largest commercial-scale levulinic acid plant. In the us, the primary feedstock was corn and in other countries the feedstock was sugarcane. In order to use it as fuel for a direct combustion power plant, one could squeeze the juice out using a sugar mill to create two product streams.

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    The data shows that one dry ton of giant king grass is as good (or better) than a ton of corn stover in terms of its sugar content which is key for producing cellulosic ethanol through fermentation processes. The feedstock costs are lower, but currently the conversion costs are higher than the simple fermentation of corn and sugar from sugarcane. In the us, ethanol producers that use corn as a feedstock for first-generation bioethanol are building cellulosic ethanol plants adjacent to their corn grain ethanol plants. With giant king grass as a feedstock, one can use it for the processes described above, or a more customized approach can be taken. The high yield of giant king grass can lower feedstock costs substantially and co-location of the biorefinery and the giant king grass plantation can reduce costs additionally Buy To Biofuels And Biochemicals Online at a discount

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    This leads to a combination of high product yields, high productivity, concentrated process streams and efficient recovery. Protein can be recovered and used for food and feed ingredients. Basically a dry ton of giant king grass is as good as or better than a dry ton of corn stover for cellulosic sugar production. The sugar and ethanol yields are comparable to corn stover. The concept of a biorefinery is analogous to a petroleum refinery.

    We continue to invest substantially in r&d to maintain our leadership position in levulinic acid to assure future growth. A petroleum refinery uses the entire barrel of oil to produce transportation fuels, and everything from butane for cigarette lighters to asphalt, and a wide range of petro-chemicals used to make many materials including plastics To Biofuels And Biochemicals For Sale

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    Commercial production started in the summer of 2015, making caserta the worlds largest commercial-scale levulinic acid plant. Even with mandates, loan guarantees and subsidies, the cellulosic biofuel plants have difficulty turning a profit. A petroleum refinery uses the entire barrel of oil to produce transportation fuels, and everything from butane for cigarette lighters to asphalt, and a wide range of petro-chemicals used to make many materials including plastics. The high-value products enhance profitability, the high-volume fuel helps meet national energy needs, and the power production reduces costs and avoids greenhouse-gas emissions. A major lesson learned from the cellulosic biofuel efforts is that there are other higher value products that can be produced from their processes, and that these products must be monetized in order for their cellulosic biofuel plants to be profitable For Sale To Biofuels And Biochemicals

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    Another goal is to replace the products made in an oil refinery. We continue to invest substantially in r&d to maintain our leadership position in levulinic acid to assure future growth. Demonstration and initial commercial scale cellulosic ethanol plants were set up close to existing corn grain and sugarcane ethanol plants in order to utilize the existing infrastructure and nearby supply of feedstocks. Basically a dry ton of giant king grass is as good as or better than a dry ton of corn stover for cellulosic sugar production. Together, feedstock costs could be reduced by 40 to 50 which would make cellulosic biofuels and other biorefinery products profitable.

    These governments invested in r&d and subsidized building of commercial scale plants to produce biofuels Sale To Biofuels And Biochemicals

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