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Researchers use efficient microbial electrosynthesis cells to convert CO2 to butyric acid; upgrade to butanol

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Researchers from University of Girona (Spain) successfully used electrically efficient microbial electrosynthesis cells (MES) to convert CO 2 to butyric acid. Chain elongation resulted in the selective (78% on a carbon basis) production of butyric acid, a valuable chemical used in pharmaceuticals, farming, perfumes, and the chemical industry.

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EU project HyFlexFuel converted sewage sludge and other biomasses into kerosene by hydrothermal liquefaction (HTL); SAF

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Thanks to the expertise of several project partners, HyFlexFuel proved that HTL biocrudes can be successfully upgraded to drop-in fuels in an industrially-relevant environment, achieving hundreds of hours of continuous operations. —Daniele Castello of Aalborg University.

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China team develops efficient multifunctional catalyst for conversion of CO2 to gasoline-range hydrocarbons

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Qingjie Ge at the Dalian Institute of Chemical Physics in China has developed an efficient, stable, and multifunctional Na-Fe 3 O 4 /HZSM-5 catalyst for the direct production of gasoline-range hydrocarbons from CO 2 hydrogenation. The gasoline fractions are mainly isoparaffins and aromatics, thus favoring the octane number.

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Eni and BASF launch R&D initiative to convert bio-diesel byproduct to bio-propanol; drop-in component for gasoline

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The cooperation aims to develop a new technology to produce advanced bio-propanol from glycerin, a side stream of the production of industrial biodiesel (FAME, fatty acid methyl ester), that Eni will purchase from European producers. Propanol obtained via this innovative method can be easily added as a drop-in bio-fuel component to gasoline.

Gasoline 170
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Dutch/Russian effort to commercialize new process to convert flared gas to gasoline via a DME pathway

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Topchiev Institute for Petrochemical Synthesis ( TIPS ) on marketing a new technology developed by TIPS to convert flared gases into hydrocarbon fuels such as gasoline. The TIPS catalytic converter delivers considerably better properties than those currently being used in the industry, TNO said. —Kolesnikova et al.

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Siluria and Wood launch Modus: process technology to convert low-value offgas into high-octane, low-sulfur gasoline blendstock

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Jointly developed by Siluria and Wood, Modus provides a proven and cost-efficient, one-step process to upgrade low-value refinery off gases, otherwise burned for heat, into high-value fungible refinery products such as high-octane, low-sulfur gasoline blendstock. Modus is now available to customers worldwide under standard industry licenses.

Convert 150
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Topsoe enters agreement with Steeper Energy to introduce complete waste-to-biofuel solution

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Topsoe and Steeper Energy , a developer of biomass conversion technologies, signed a global licensing agreement for a complete waste-to-fuel solution. Alternatively it can be further upgraded and fractionated into more stringent fuel types (finished fuels) such as diesel, jet fuel, and gasoline.

Waste 293