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New polymer membrane efficiently removes carbon dioxide from mixed gases; high permeability and selectivity

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A team of researchers from North Carolina State University, SINTEF in Norway and the Norwegian University of Science and Technology, has developed a polymer membrane technology that removes carbon dioxide from mixed gases with both high permeability and high selectivity. the ability to separate one gas from another. Resources.

Polymer 186
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Researchers find that abiotic methane can charge deepsea Arctic gas hydrates

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Researchers from the Centre for Arctic Gas Hydrate, Environment and Climate (CAGE) at the Arctic University of Norway have discovered a growing Arctic abiotic methane- and methane hydrate–charged sediment drift on oceanic crust in the deep Fram Strait of the Arctic Ocean. —Joel Johnson.

Gas 150
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US and Japan successfully complete Arctic field trial of gas hydrate production technology using CO2-methane exchange within structure

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Conceptual rendering of CO 2 – CH 4 exchange methodology for the production of natural gas from hydrates. US Energy Secretary Steven Chu announced the completion of a successful test of technology in the North Slope of Alaska that was able to safely extract a steady flow of natural gas from methane hydrates. Source: NETL.

Japan 225
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US DOE awards ~$5M to expand research on methane hydrates

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Methane hydrates are ice-like structures with natural gas locked inside, which can be found both onshore and offshore—including under the Arctic permafrost and in ocean sediments along nearly every continental shelf in the world. Earlier post.). Selected projects are: Georgia Tech Research Corporation. The University of Texas at Austin.

Oregon 230
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This Startup Is Building the Internet of Underwater Things

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Water covers 72 percent of the Earth’s surface, its volumes host 80 percent of biodiversity and play a pivotal role in global phenomena, such as climate change. and Norway. It makes it possible to closely observe the life and health of animals, while monitoring water quality. This blind spot is rather striking.

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CICERO-led study finds global warming effect of leaked hydrogen almost 12x stronger than CO2

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A study led by Norwegian climate center CICERO has found that the global warming effect of leaked hydrogen is almost 12 times stronger than that of CO 2. Unlike exhaust from burning coal and gas that contains CO 2 , burning hydrogen emits only water vapor and oxygen. Sand et al. —Dr Sand The GWP100 of hydrogen. Sand et al.

Hydrogen 435
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IEA WEO-2012 finds major shift in global energy balance but not onto a more sustainable path; identifies potential for transformative shift in global energy efficiency

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The WEO finds that the extraordinary growth in oil and natural gas output in the United States will mean a sea-change in global energy flows. In the New Policies Scenario, the WEO ’s central scenario, the United States becomes a net exporter of natural gas by 2020 and is almost self-sufficient in energy, in net terms, by 2035.

Global 225