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Study concludes abundant shale gas is neither climate hero nor villain; need for targeted GHG reduction policy

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While natural gas can reduce greenhouse emissions when it is substituted for higher-emission energy sources, abundant shale gas is not likely to substantially alter total emissions without policies targeted at greenhouse gas reduction, according to a new study by two researchers at Duke University.

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IEA: improving efficiency of road-freight transport critical to reduce oil-demand growth; three areas of focus

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This growth is expected to lead to a significant increase in carbon dioxide emissions of nearly 900 million tonnes through 2050, or about the same level of emissions growth as from coal use in the power and the entire industry sector combined. Gt in 2050, or 75%, relative to the Reference Technology Scenario.

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MSU-led regional team awarded $6M NSF grant to research biofuel, carbon capture technologies

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A regional interdisciplinary team led by Montana State University has received $6 million from the National Science Foundation to address questions about whether biofuels and carbon capture technologies can be sustainably introduced into the Upper Missouri River Basin.

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New 3-step process for conversion of kraft lignin from black liquor into green diesel

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The process produces a toxic byproduct referred to as black liquor—a primarily liquid mixture of pulping residues (such as lignin and hemicellulose) and inorganic chemicals from the Kraft process (sodium hydroxide and sodium sulfide, for example). Their paper appears in the journal ChemSusChem. tons of black liquor dry solids.

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New inventory of black carbon emissions from China finds 2007 levels higher than previously reported

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The paper by researchers from Peking University and Environment Canada appears in the ACS journal Environmental Science & Technology. As a result, the use of coal from small local mines is included in the provincial statistics, but not in the national statistics. By comparing fuel consumption data (1980?2007) Credit: ACS, Wang et al.

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Saskatchewan and Montana Partner on Major Carbon Capture and Storage Project

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Development of a North American training facility to meet the needs of a growing CCS industry and regulators, based primarily at the University of Regina and Montana State University. The goal for the reference plant is to test a range of technologies in the capture of up to one million tonnes of CO 2 over a four-year period.

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Study projects emission impacts of inexpensive, efficient EVs: 36% further reduction in LDV GHG by 2050, or 9% economy-wide

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A new study by researchers at the University of Colorado at Boulder projects the emission impacts of the widespread introduction of inexpensive and efficient electric vehicles into the US light duty vehicle (LDV) sector. million tonnes in 2050, due to existing control requirements and the shift away from coal-fired generation.

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