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DOE researchers investigate economic and environmental impacts of converting wet waste to renewable diesel

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Meanwhile, wet waste feedstocks, such as animal manure and fats, oils, and greases (FOG), represent another important category of resources that could be utilized to produce MCCI bioblendstocks due to its abundant availability. gasoline liter equivalent (GLE) and $0.94/GLE Skaggs et al. demand in 2016. Skaggs et al.

Waste 434
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Researchers use distillation to improve biocrude oil properties for fuel blending

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Biocrude oil produced via hydrothermal liquefaction (HTL) of biomass could provide a low-carbon supplement for transportation fuel supply. However, physical processes—such as fractional distillation as used in oil refineries—are cheaper and more reliable. 1) values of gasoline, diesel, and Jet A fuels, respectively.

Oil 186
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Lux Research projects methanol-to-gasoline most competitive route for liquid fuels from natural gas or waste

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The price disparity between crude oil and other resources, coupled with the emergence of cheap and abundant shale gas, especially in the United States, is opening up opportunities to produce cheaper gasoline, according to a new report from Lux Research. Among their findings: Methanol-to-gasoline is the cheapest option.

Waste 236
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Neste Oil successfully using recycled oil as a transportation fuel feedstock

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Neste Oil recently produced its first batch of transportation fuel from recycled lubricants. Following treatment, spent lubricating oil can be reused as a feedstock for producing gasoline and diesel fuel. —Lars Peter Lindfors, Neste Oil’s Senior Vice President, Technology.

Oil 239
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Startup New Oil Resources commercializing hydrothermal process for conversion of biomass to gasoline-range hydrocarbons

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The basic New Oil process. Louisiana-based startup New Oil Resources (NOR) is commercializing a near-critical (i.e., 320-390 °C, 200-420 bar) aqueous phase process which converts biomass containing cellulose, hemicellulose and lignin into a high-octane gasoline fraction. Click to enlarge. Click to enlarge.

Oil 199
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KIST team develops technology for mass-production of lignin-bio-aviation fuels

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A Korean research team has developed a technology that can be used to mass-produce aviation-grade fuels from wood wastes. Large volumes of lignin are generated as waste in the pulping processes that are used to produce paper. The pyrolysis of lignin produces an oil which has little industrial utility due to its high viscosity.

Fuel 351
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UC Davis process produces gasoline-range hydrocarbons from biomass-derived levulinic acid; field-to-tank yield of >60% claimed

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Researchers at the University of California, Davis have developed a process for the production of branched C 7 –C 10 hydrocarbons in the gasoline volatility range from biomass-derived levulinic acid with good yield, operating under relatively mild conditions, with short reaction times. barrels of oil (117.6 gallons US). per gallon.

Davis 360