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ExxonMobil, Georgia Tech and Imperial College London publish joint research on potential breakthrough in membrane technology for oil refining

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Scientists from ExxonMobil, the Georgia Institute of Technology and Imperial College of London have published in the journal Science joint research on potential breakthroughs in a new membrane technology that could reduce emissions and energy intensity associated with refining crude oil. —Ryan Lively, the John H.

Georgia 337
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DOE VTO awarding $3.6M to 6 projects to commercialize lab-developed clean transportation technologies

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million, to six projects selected from the Base Annual Appropriations Technology Commercialization Fund (TCF). DOE’s OTT coordinates the TCF and plays a vital role in strengthening DOE’s commercialization partnerships. The US Department of Energy’s (DOE) Vehicle Technologies Office (VTO) is awarding $3.6

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British Airways invests in LanzaJet; SAF offtake agreement

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British Airways will invest in LanzaJet’s first commercial-scale Freedom Pines Fuels facility in Georgia and acquire cleaner burning sustainable aviation fuel from the plant. In addition, the partnership will involve LanzaJet implementing early stage planning and design for a potential commercial facility for British Airways in the UK.

Georgia 415
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ExxonMobil & Georgia Tech CMS membrane brings advantages of reverse osmosis separations to hydrocarbon mixtures; potential significant cuts in chemical manufacturing energy use & emissions

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Scientists from ExxonMobil and the Georgia Institute of Technology have developed new free-standing carbon molecular sieve (CMS) membrane technology that could significantly reduce the amount of energy and emissions associated with manufacturing plastics. Results of the research were published in Science.

Georgia 150
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Phillips 66 receives $3M grant to advance reversible solid oxide fuel cell technology

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Phillips 66 will collaborate with the Georgia Institute of Technology (Georgia Tech) to demonstrate the commercial feasibility of a low-cost and highly efficient RSOFC system for hydrogen and electricity generation. In the latter, electricity is applied to the cells to produce hydrogen, a low-emission fuel, through electrolysis.

Grant 321
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Ozinga Energy and Ingevity to field adsorbed natural gas bi-fuel pickup

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ANGP) and Ingevity, the ANG system is made possible by the performance of Ingevity’s Nuchar activated carbon that significantly lowers the natural gas storage pressure, reduces the system’s complexity and captures the environmental benefits and cost savings of natural gas when used as a transportation fuel.

Gas 415
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DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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The US Department of Energy (DOE) announced the award of approximately $72 million in federal funding to support the development and advancement of carbon capture technologies under two funding opportunity announcements (FOAs). Enabling Production of Low Carbon Emissions Steel Through CO 2 Capture from Blast Furnace Gases.

Carbon 236