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NREL LCA Harmonization Project delivers meta-analyses of lifecycle GHG emissions for energy technologies

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Analysts at the US Department of Energy’s (DOE) National Renewable Energy Laboratory (NREL) have developed harmonized meta-analyses of lifecycle greenhouse-gas emissions from coal, wind, solar and other energy technologies. Each article describes the details of the calculations for each step of harmonization. —Heath and Mann.

Emissions 236
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The $32-Trillion Push To Disrupt The Entire Oil Industry

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The first signs of a green revolution in the shareholder-investors universe are there, as investors have forced Dutch oil and gas major Shell to officially change its strategy, investing in more renewable energy and energy storage. Link to article: [link]. This development will impact the market within the next 24 months.

Oil 231
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Researchers Propose Solar-Driven Biomass Gasification Pathway for Synthetic Fuel Production

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Researchers at the Norwegian University of Science and Technology (NTNU) are proposing a new process for producing synfuel from biomass using concentrating solar energy as its main energy source. For comparison, they also modeled the production of methanol using only biomass as a fuel and also using coal as source of both carbon and energy.

Solar 186
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Why EVs Aren't a Climate Change Panacea

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For instance, Alexandre Milovanoff at the University of Toronto and his colleagues’ research (which is described in depth in a recent Spectrum article ) demonstrates the U.S. This is due to the 30 to 40 percent increase in emissions EVs create in comparison to manufacturing an ICE vehicle, mainly from its battery production.

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GWU team demonstrates one-pot process for optimized synthesis of controlled CNTs from CO2; coupling cement and C2CNT

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Researchers at George Washington University led by Dr. Stuart Licht ( earlier post ) have developed a new process that transforms CO 2 into a controlled selection of nanotubes (CNTs) via molten electrolysis; they call the process C2CNT (CO2 into carbon nanotubes).

CO2 150
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Kyoto team develops two-stage process for direct liquefaction of low-rank coal and biomass under mild conditions

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Researchers at Kyoto University in Japan have proposed a novel two-stage process to convert low-rank coals or biomass wastes under mild conditions to high-quality liquid fuel. Also, liquefying high-oxygen content low-ranking coal and biomass also consumes more hydrogen and produces more CO 2 , significantly reducing process efficiency.

Coal 150
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Electric Vehicle Project Ideas | Ph.D., MTech, MSc | Electrical, Management, Mechanical & More…

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Solar charging stations and Conventional charging stations (electricity from coal) comparison. Comparison of P1, P2, P3, P4 configuration of HEV using simulation studies 3. When I went through some research articles, it showed that we could do finite analysis methods for the design improvements for Electric Vehicle chassis.

IDEA 98