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ETH Zurich catalyst can convert polypropylene directly into motor oil with high selectivity

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This suggests that the design of catalysts that can control the selectivity of this process is challenging. The nanoparticles were supported on a carbon material synthesized via the carbonization of an aniline/phytic-acid-based polymer. The work provides some guidelines for catalyst design in the field of plastic hydrocracking.

Oil 389
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NSF awards $2M to Rice U collaboration to explore direct conversion of CO2 into fuels

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We include experts in catalysts and electrolyzer design, polymer engineering, density functional theory simulations and carbon dioxide capture. We intend to build an electrochemical modular system as a platform for a continuous conversion process of simulated flue gas to pure liquid fuels. —Haotian Wang.

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Motherson Group collaborating with UBQ to bring carbon-negative thermoplastics into auto parts

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UBQ is a patented material converted from 100% unsorted household waste, containing food leftovers, mixed plastics, paper, cardboard, packaging materials and diapers. Targeting the plastic industry first, and leveraging the material’s thermoplastic affinity to polymers, they company developed several commercial grades of UBQ material.

Parts 362
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Researchers develop dual cellular-heterogeneous catalyst technology to produce olefins from plant sugar

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A team of researchers from the US NSF Center for Sustainable Polymers based at the University of Minnesota Twin Cities has demonstrated the use of a dual cellular–heterogeneous catalytic strategy to produce olefins from glucose. Wang et al. Koleski, E.J.

Minnesota 221
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Northwestern team develops new approach to catalyst design using SPBCL and DFT; new HER catalyst 7x more active than Pt

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Researchers at Northwestern University have developed a new approach for creating new catalysts to aid in clean energy conversion and storage. It is a major challenge in catalysis to uncover structure–performance relationships that drive the design and optimization of high-performance/low-cost catalysts. —Huang et al.

Design 191
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UC Davis team engineers cyanobacterium for enhanced direct production of 2,3-butanediol; design methods for exogenous chemical production

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The work demonstrates that developing strong design methods can continue to increase chemical production in cyanobacteria, they suggested. The work demonstrates that developing strong design methods can continue to increase chemical production in cyanobacteria, they suggested. Earlier post.). Earlier post.). Oliver, Iara M.P.

Davis 252
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Prometheus Fuels licenses ORNL ethanol-to-jet-fuel process

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Prometheus Fuels has licensed an ethanol-to-jet-fuel conversion process developed by researchers at the Department of Energy’s Oak Ridge National Laboratory. The ORNL technology will enable cost-competitive production of jet fuel and co-production of butadiene for use in renewable polymer synthesis.

Fuel 210