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New study finds GHG emissions from palm oil production significantly underestimated; palm oil biofuels could be more climate-damaging than oil sands fuels

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The majority (62%) of the plantations were located on the island of Sumatra, and more than two-thirds (69%) of all industrial plantations were developed for oil palm cultivation, with the remainder mostly being Acacia plantations for paper pulp production. Earlier post.).

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DOE to Award Honeywells UOP $25M for Pyrolysis Oil to Renewable Fuels Demo Unit

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Converting biomass to renewable fuels via a pyrolysis pathway. The US Department of Energy has selected UOP, a Honeywell company, for negotiation of a $25 million award to build a demonstration unit in Hawaii to convert cellulosic biomass into renewable hydrocarbon transportation fuels. In 2008, UOP received a $1.5 Source: UOP.

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Anellotech, IFPEN and Axens partner on bio-aromatics production from non-food biomass; targeting 2019 for industrial implementation

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Based on Anellotech’s innovative proprietary CFP technology, patents licensed from the University of Massachusetts-Amherst, and Axens’ proprietary post-treatment hydrotreating process, this new technology will open the way to a competitive production of bio-aromatics from renewable resources with lower energy consumption and lower CO 2 emissions.

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Coskata Unveils Semi-Commercial Feedstock-Flexible Ethanol Facility; Springboard for Full-Scale Commercial Rollout

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The process also uses less than half the water per gallon than required for the production of gasoline from conventional crude, and about one-third to one-quarter of the water per gallon required for the production of gasoline from oil sands oil, Bolson said. On average, approximately 3.0 Earlier post.).

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Peabody Energy and GreatPoint Energy To Partner on Coal-to-Gas and Coal-to-Hydrogen Facilities with Carbon Capture and Storage

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Peabody Energy and GreatPoint Energy signed an agreement to pursue development of coal-to-gas and coal-to-hydrogen projects in the United States and around the world with carbon capture and storage (CCS) that would achieve near-zero carbon emissions, while increasing the production of stranded oil via enhanced oil recovery.

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