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ENE-105

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

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ENE-101

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group.

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ENE-108

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

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ENE-109

Ene reductase enzymes for the reduction of C=C double bonds in the presence of an electron withdrawing group

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Honeywell UOP and Johnson Matthey join forces to cut costs and boost deployment of sustainable fuels

Johnson Matthey (JM) and Honeywell UOP, two global leaders in sustainable technologies, have signed a Memorandum of Understanding (MoU) to offer an end-to-end solution for businesses developing alternative fuels from a wide range of feedstocks including municipal solid waste, residual biomass, biogas, and CO₂ (captured and renewable).

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Special feature - The PGM opportunity.pdf

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The PGM opportunity.pdf

PDF PDF, 2.5 MB
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Johnson Matthey chosen for H2H Saltend low-carbon hydrogen project

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Johnson Matthey and bp to support planned production of carbon negative renewable diesel fuel plant at Strategic Biofuels project in Louisiana

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