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Blue Biofuels achieves full conversion (99%+) of cellulosic material to sugars on repeatable basis

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reports that it has achieved full conversion ( 99% + ) of king grass cellulosic material to water soluble sugars on a repeatable basis. This conversion occurs with a reaction time of less than one minute. Full conversion is the most efficient use of the feedstock possible and exceeds earlier projections. Blue Biofuels, Inc.

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DOE to award $35M for bioenergy feedstock and algae R&D

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DE-FOA-0002423 ) Topic Areas ins the FOA support DOE’s Bioenergy Technologies Office’s (BETO’s) objectives to reduce the minimum selling price of drop-in biofuels, lower the cost of biopower, and enable high-value products from biomass or waste resources. Development of novel methods for rapid/real-time measurements.

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USDA and Blue Biofuels collaborate to optimize yields of king grass for cellulosic ethanol production

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The USDA ARS and BIOF are cooperating to develop production methods which can be used to increase the productivity of land in Florida formerly used for orange production prior to the devastation of the industry by citrus greening. Citrus greening is one of the world’s most serious citrus plant diseases.

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Blue Marble Biomaterials launches first zero-waste chemical biorefinery

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A photobioreactor and algae perform the “water recycling”; the pelletized solid waste material will be used in the gasifier. has launched the first zero-waste chemical biorefinery in the US in Missoula, Montana. If we have fixed feedstock [such as the waste spent grain], we have price stability. Earlier post.)

Waste 352
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Aemetis acquires license from LanzaTech with California exclusive rights for advanced ethanol from biomass including forest and ag wastes

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has acquired exclusive rights to LanzaTech’s patented technology for the conversion of agricultural waste, forest waste, dairy waste and construction and demolition waste (CDW) to ethanol in California. LanzaTech’s process involves biological conversion of carbon to products through gas fermentation.

Waste 150
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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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Financing for novel biorefinery process systems can be a barrier to commercializing advanced biofuels, and this funding will reduce technological uncertainties and enable industry deployment. This project will demonstrate the conversion of gaseous carbon wood wastes (terpenes) to renewable Terpenes SAF blending components.

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UC Riverside researchers receive two grants to advance steam hydrogasification reaction for waste-to-fuels

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Researchers at the University of California, Riverside’s Center for Environmental Research and Technology (CERT) at the Bourns College of Engineering have received two grants to further explore a steam hydrogasification process they developed to convert waste into fuels. process, making a slow carbon conversion reaction ten times faster.

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