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Iowa State University will bring its expertise in biorenewable technologies and pilot plant operations to the country’s 10th Manufacturing USA Institute. In addition, she said the Iowa State team has already pulled in multiple partners willing to help commercialize distributed biorefineries. of Adel; and the Iowa Energy Center.
Engineers at Iowa State University have developed a hybrid process that combines bio- and electrocatalysis to convert glucose into bio-based unsaturated nylon-6,6—which has the advantage of an extra double bond in its backbone that can be used to tailor the polymer’s properties. Hybrid conversion of glucose into UPA-6,6.
Researchers at Iowa State University are developing a new thermochemical system for the coproduction of ethanol and thermal energy, based on a new low-emissions burner and a new catalyst for ethanol production. million grant from the Iowa Power Fund , a state program to advance energy innovation and independence. —Robert C.
Thomas Bobik, professor of biochemistry, biophysics and molecular biology at Iowa State University is heading an effort to redesign an enzyme for the bio-based production of isobutene, a gas that is currently used in the production of a variety of chemicals and in the manufacture of other fuel additives, adhesive, plastics and synthetic rubber.
The US Department of Energy (DOE) will award nearly $18 million to four innovative pilot-scale biorefineries in California, Iowa and Washington that will produce and test drop-in renewable biofuels that meet military specifications for jet fuel and shipboard diesel. The projects selected for negotiation are: Frontline Bioenergy LLC (up to $4.2
Catilin and its partner, Iowa State University - Center for Catalysis (ISU-CCAT), will provide key extraction, sequestration and conversion technologies. The balance of the algal oil, which contains free fatty acids (FFA) and triglycerides, will be converted to biodiesel using Catilin’s commercially available T300 catalyst.
Iowa State University (ISU) researchers and their colleagues at the Iowa Energy Center have developed a novel process for converting cellulose and related materials to high-value chemicals with low molecular weights. The biomass conversion process is based on the chemistry of supercritical fluids.
The plant will be constructed by Fiberight, LLC, based in Blairstown, Iowa. Fiberight’s Targeted Fuel Extraction (TFE) process recognizes that sold waste is neither homogeneous nor fully convertible to energy. Fiberight’s system bifurcates organic and inorganic wastes and converts them according to type.
University partners from the states of Washington, Louisiana, Tennessee, and Iowa will lead the projects, which focus in part on developing aviation biofuels from tall grasses, crop residues and forest resources. million to enable the regular production of biomass for economically viable conversion using existing refinery infrastructure.
Once operating at full, commercial-scale, the biorefinery in Emmetsburg, Iowa will produce 25 million gallons of cellulosic ethanol per year. Project LIBERTY will serve as a test bed for producing cellulosic ethanol with biochemical conversion technologies, helping to inform the design and construction of other advanced biofuels projects.
Additionally, CleanTech will have access to biomass produced at the Lawrenceville plant for delivery to companies interested in testing it as feedstock in their conversion technologies. Fiberight’s TFE process recognizes that sold waste is neither homogeneous nor fully convertible to energy.
The University of Wisconsin-Madison and ExxonMobil announced a two-year agreement to research the fundamental chemistry of converting biomass into transportation fuels. The science of biomass conversion is very complicated. Researchers have used expensive precious metal catalysts such as platinum for biomass conversion.
The group investigating the production of bio-hydrocarbons will produce hydrocarbons by pioneering processes for chemically converting plant material and by natural microbial and fungal processes that are even less-explored. Quick conversion of biomass. Carpita, Maureen C. McCann, and Fabio H. Ribeiro, all from Purdue University.
The enzyme enables more cost-efficient conversion of biomass to ethanol and performs 1.5 Fiberight will open a small-scale plant in Lawrenceville, Virginia, this year, and a plant producing 6 million gallons per year in Blairstown, Iowa, in 2013. Both plants will convert municipal solid waste into biofuel. Earlier post.).
About 900 million gallons of ethanol produced at ADM’s dry mills in Columbus, Nebraska, and Cedar Rapids, Iowa, as well as its Decatur, Illinois, complex, is expected to be processed utilizing this technology, resulting in approximately 500 million gallons of SAF and other renewable hydrocarbons.
LS9’s proprietary technologies harness the efficiency of the fatty acid metabolic pathway of microorganisms to convert fatty acid intermediates into petroleum replacement products via fermentation of renewable sugars. —Daniel J. Oh, Renewable Energy Group President and CEO.
Many OEMs are expanding aluminum use from heat exchangers, wheels, drive shafts, engine blocks, hoods and deck lids to developing aluminum intensive vehicles (AIVs) by converting the body in white, or body structure, to aluminum. As OEMs use aluminum body structures to improve fuel efficiency, new joining and assembly methods are required.
This, they assert, erroneously treats all uses of bioenergy as carbon-neutral, renewable energy regardless of the source of the biomass, and could create strong economic incentives for large-scale land conversion as countries around the world tighten carbon caps. Earlier post.). In this way, RFA said, biofuels “recycle” organic carbon.
a leading cellulosic and biorefining technology company, and Archer Daniels Midland Company (ADM) announced that the US Environmental Protection Agency has approved Little Sioux Corn Processors’ registration of its 150 million gallon per year Marcus, Iowa, ethanol plant for cellulosic ethanol production. Edeniq, Inc., per gallon in 2017.
The extracted rubber will be used in tire formulations, and the remaining plant residue will be evaluated for use in biopower and for conversion to jet fuel precursors. Fiber will be converted to ethanol, manure used for fertilizer, and oil from the crops will be converted to biodiesel used in farm equipment.
RTI International will work with ADM, Albemarle and ConocoPhillips to develop a novel single-step catalytic biomass pyrolysis process with high carbon conversion efficiency to produce stable bio-crude oil with low oxygen content. Towards Scale Solar Conversion of CO 2 and Water Vapor to Hydrocarbon Fuels. CARBON CAPTURE.
The team will apply atomic layer deposition technology to fabricate and modify the catalyst at the atomic level, with the goal of more than doubling catalyst lifetime, improving selectivity and conversion efficiency at reduced costs. Iowa State University. Bio2Electric, LLC d.b.a. EcoCatalytic Technologies. Zyvex Labs, LLC.
Ames Transit Agency, Iowa: $1,600,000. Energy Reduction Consolidated Projects: A variety of building energy-efficiency upgrades, hybrid vehicle upgrades, wind generator power systems, and the equipment needed to convert cooking oil to a blend with vehicle fuel to operate some of their buses.
Georg also enlisted the help of University of Iowa computer programmer/engineer Karen Pease. This converted Toyota Prius is another type of Plug-in --a PHEV (Plug-in Hybrid Electric Vehicle). This effort was led by Georg Kuhnke, who lives near Sacramento, California.
Chevrolet S-10 :Brian has a new and very nice conversion. Chevrolet S-10 :Jim Coates very clean conversion Chevrolet S-10 :Mark Brueggemanns neat project, and more. Comutacar : Scott HullsC-cars and upgrades DaihatsuFellow Van : Interesting Japanese conversion. FordExpress : Svein Medhus has the first EV conversion in Norway.
Drawing on the deep expertise and experience of POET and DSM in different areas of converting cellulosic biomass into bio-ethanol, POET-DSM Advanced Biofuels built its first commercial-scale plant co-located with POET Biorefining – Emmetsburg in Emmetsburg, Iowa.
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