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From:Polymer Engineering and Science (Vol. 62, Issue 4) Peer-ReviewedProtein fractionation and purification remain challenging in membrane separation. Herein, a pH-responsive membrane was developed by grafting the brush-like poly(dimethylaminoethyl methacrylate) (PDMAEMA) via ATRP onto...
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From:Atmospheric Chemistry and Physics (Vol. 22, Issue 5) Peer-ReviewedWe present an updated version of the Global Fuel Exploitation Inventory (GFEI) for methane emissions and evaluate it with results from global inversions of atmospheric methane observations from satellite (GOSAT) and in...
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From:Annals of Operations Research (Vol. 309, Issue 2) Peer-ReviewedThis paper considers a remanufacturing system in which the remanufacturer uses both the fresh raw material and recycled material to produce new products. Only partial information of the demand distribution, including the...
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From:Atmospheric Chemistry and Physics (Vol. 22, Issue 1) Peer-ReviewedWe quantify methane emissions and their 2010-2017 trends by sector in the contiguous United States (CONUS), Canada, and Mexico by inverse analysis of in situ (GLOBALVIEWplus CH.sub.4 ObsPack) and satellite (GOSAT)...
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From:Atmospheric Chemistry and Physics (Vol. 21, Issue 18) Peer-ReviewedWe evaluate the global atmospheric methane column retrievals from the new TROPOMI satellite instrument and apply them to a global inversion of methane sources for 2019 at 2.sup." x 2.5.sup." horizontal resolution. We...
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From:Atmospheric Measurement Techniques (Vol. 14, Issue 8) Peer-ReviewedGlobal high-resolution observations of atmospheric composition from satellites can greatly improve our understanding of surface emissions through inverse analyses. Variational inverse methods can optimize surface...
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From:Atmospheric Chemistry and Physics (Vol. 18, Issue 21) Peer-Reviewed
Monitoring global tropospheric OH concentrations using satellite observations of atmospheric methane
The hydroxyl radical (OH) is the main tropospheric oxidant and the main sink for atmospheric methane. The global abundance of OH has been monitored for the past decades using atmospheric methyl chloroform (CH.sub.3...
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From:Atmospheric Chemistry and Physics (Vol. 19, Issue 2) Peer-Reviewed
The chemical mechanisms responsible for rapid sulfate production, an important driver of winter haze formation in northern China, remain unclear. Here, we propose a potentially important heterogeneous...
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From:Atmospheric Chemistry and Physics (Vol. 19, Issue 16) Peer-Reviewed
Fine particulate matter (PM.sub.2.5) is a severe air pollution problem in China. Observations of PM.sub.2.5 have been available since 2013 from a large network operated by the China National Environmental Monitoring...
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From:Journal of Wuhan University of Technology (Material Science Edition) (Vol. 34, Issue 1) Peer-ReviewedAbstract Only
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From:Atmospheric Chemistry and Physics (Vol. 21, Issue 5) Peer-ReviewedWe conduct a global inverse analysis of 2010-2018 GOSAT observations to better understand the factors controlling atmospheric methane and its accelerating increase over the 2010-2018 period. The inversion optimizes...
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From:PLoS ONE (Vol. 7, Issue 7) Peer-ReviewedBackground Severe fever with thrombocytopenia syndrome virus (SFTSV), which can cause hemorrhagic fever-like illness, is a newly discovered bunyavirus in China. The pathogenesis of SFTSV infection is poorly...
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From:Atmospheric Measurement Techniques (Vol. 11, Issue 12) Peer-Reviewed
We conduct Observing System Simulation Experiments (OSSEs) to compare the ability of future satellite measurements of atmospheric methane columns (TROPOMI, GeoCARB, GEO-CAPE) for constraining methane emissions down...
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From:Atmospheric Chemistry and Physics (Vol. 21, Issue 1) Peer-ReviewedHydroxymethanesulfonate (HMS) has recently been identified as an abundant organosulfur compound in aerosols during winter haze episodes in northern China. It has also been detected in other regions although the...
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From:Atmospheric Measurement Techniques (Vol. 9, Issue 10) Peer-ReviewedSatellite observations of nitrogen dioxide (NO.sub.2) have often been used to derive nitrogen oxides (NO.sub.x â=ââ¯NOâ¯+â¯NO.sub.2)...
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From:Proceedings of the National Academy of Sciences of the United States (Vol. 113, Issue 36) Peer-ReviewedAbstract Only
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From:Atmospheric Chemistry and Physics (Vol. 21, Issue 6) Peer-ReviewedWe use satellite (GOSAT) and in situ (GLOBALVIEWplus CH4 ObsPack) observations of atmospheric methane in a joint global inversion of methane sources, sinks, and trends for the 2010-2017 period. The inversion is done by...