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Northwestern/Princeton study explores air quality impacts of aggressive conversion to EVs

Green Car Congress

Researchers from Northwestern University and Princeton University have explored the impact on US air quality from an aggressive conversion of internal combustion vehicles to battery-powered electric vehicles (EVs). coal, oil, natural gas, and biomass). Winter O 3 increases due to reduced loss via traffic NO x. Winter while PM 2.5

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Wind-to-Hydrogen Tech Goes to Sea

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Many countries have met their climate goals and are on track to be completely carbon neutral. Wind and solar parks produce a large portion of their energy. Then, as now, wind farms are operating off the world’s coasts—but not all of these offshore sites are connected to the mainland via underwater power cables.

Wind 83
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Stanford GCEP awards $6.6M to 7 projects; focus on combining energy conversion with carbon-neutral fuel production

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Stanford’s Global Climate and Energy Project (GCEP) is awarding $6.6 million to seven research teams—six from Stanford and one from Carnegie Mellon University—to advance research on technologies for renewable energy conversion to electricity or fuels and for capturing CO 2 emissions and converting CO 2 to fuels.

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ENEOS begins joint study with Origin on Japan-Australia green hydrogen supply chain; MCH as transport medium

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This will be achieved by utilizing Australia’s excellent potential for cost-competitive hydrogen production due to its favorable climate conditions, including wind and sunlight, and expansive land. Conversion of manufactured hydrogen into MCH, a form of efficient hydrogen storage and transport.

Japan 221
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Oxford Team Outlines Progress and Potential in CO2 Capture and Conversion to Synthetic Transportation Fuels

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The authors highlight three possible strategies for CO 2 conversion by physico-chemical approaches: sustainable (or renewable) synthetic methanol; syngas production derived from flue gases from coal-, gas- or oil-fired electric power stations; and photochemical production of synthetic fuels. Jiang et al. Kuznetsov and P.

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DNV GL: world energy demand will peak in 2035 prompting a reshaping of energy investment due to rapid electrification and inherent efficiency

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Conversely, fossil fuel spending will drop by around a third. C climate goal. Oil will peak in 2023 and coal has already peaked. The nature of the spending will also alter with wind and solar projects typically requiring greater upfront CAPEX and then less operating expenditure, the opposite to oil and gas.

Energy 225
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The Complex Calculus of Clean Energy and Zero Emissions

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Thousands of Washington insiders and climate activists have had a hand in these legislative breakthroughs. presidential election, it seemed that we were entering one of those rare windows where you might see substantial policy action on climate and clean energy. C in this century. clean-tech legislation.

Clean 88