Matches in SemOpenAlex for { <https://semopenalex.org/work/W2076462761> ?p ?o ?g. }
- W2076462761 endingPage "27" @default.
- W2076462761 startingPage "18" @default.
- W2076462761 abstract "We present a new multimedia chemical fate model (SESAMe) which was developed to assess chemical fate and behaviour across China. We apply the model to quantify the influence of environmental parameters on chemical overall persistence (POV) and long-range transport potential (LRTP) in China, which has extreme diversity in environmental conditions. Sobol sensitivity analysis was used to identify the relative importance of input parameters. Physicochemical properties were identified as more influential than environmental parameters on model output. Interactive effects of environmental parameters on POV and LRTP occur mainly in combination with chemical properties. Hypothetical chemicals and emission data were used to model POV and LRTP for neutral and acidic chemicals with different KOW/DOW, vapour pressure and pKa under different precipitation, wind speed, temperature and soil organic carbon contents (fOC). Generally for POV, precipitation was more influential than the other environmental parameters, whilst temperature and wind speed did not contribute significantly to POV variation; for LRTP, wind speed was more influential than the other environmental parameters, whilst the effects of other environmental parameters relied on specific chemical properties. fOC had a slight effect on POV and LRTP, and higher fOC always increased POV and decreased LRTP. Example case studies were performed on real test chemicals using SESAMe to explore the spatial variability of model output and how environmental properties affect POV and LRTP. Dibenzofuran released to multiple media had higher POV in northwest of Xinjiang, part of Gansu, northeast of Inner Mongolia, Heilongjiang and Jilin. Benzo[a]pyrene released to the air had higher LRTP in south Xinjiang and west Inner Mongolia, whilst acenaphthene had higher LRTP in Tibet and west Inner Mongolia. TCS released into water had higher LRTP in Yellow River and Yangtze River catchments. The initial case studies demonstrated that SESAMe performed well on comparing POV and LRTP of chemicals in different regions across China in order to potentially identify the most sensitive regions. This model should not only be used to estimate POV and LRTP for screening and risk assessments of chemicals, but could potentially be used to help design chemical monitoring programmes across China in the future." @default.
- W2076462761 created "2016-06-24" @default.
- W2076462761 creator A5016866149 @default.
- W2076462761 creator A5025961370 @default.
- W2076462761 creator A5036542477 @default.
- W2076462761 creator A5039626779 @default.
- W2076462761 creator A5040161005 @default.
- W2076462761 date "2014-08-01" @default.
- W2076462761 modified "2023-09-26" @default.
- W2076462761 title "A new multimedia contaminant fate model for China: How important are environmental parameters in influencing chemical persistence and long-range transport potential?" @default.
- W2076462761 cites W1759831170 @default.
- W2076462761 cites W1965982130 @default.
- W2076462761 cites W1981608726 @default.
- W2076462761 cites W1981736357 @default.
- W2076462761 cites W1981978953 @default.
- W2076462761 cites W1984205790 @default.
- W2076462761 cites W1997519156 @default.
- W2076462761 cites W1999817221 @default.
- W2076462761 cites W2001488815 @default.
- W2076462761 cites W2005811561 @default.
- W2076462761 cites W2005985486 @default.
- W2076462761 cites W2008509282 @default.
- W2076462761 cites W2008586574 @default.
- W2076462761 cites W2012576236 @default.
- W2076462761 cites W2012582224 @default.
- W2076462761 cites W2023312805 @default.
- W2076462761 cites W2029767409 @default.
- W2076462761 cites W2033359124 @default.
- W2076462761 cites W2034417616 @default.
- W2076462761 cites W2039096567 @default.
- W2076462761 cites W2040745859 @default.
- W2076462761 cites W2041202986 @default.
- W2076462761 cites W2042297247 @default.
- W2076462761 cites W2042800886 @default.
- W2076462761 cites W2044746204 @default.
- W2076462761 cites W2048339801 @default.
- W2076462761 cites W2053224323 @default.
- W2076462761 cites W2065675133 @default.
- W2076462761 cites W2078782322 @default.
- W2076462761 cites W2079438733 @default.
- W2076462761 cites W2079584009 @default.
- W2076462761 cites W2083307962 @default.
- W2076462761 cites W2084915724 @default.
- W2076462761 cites W2085118867 @default.
- W2076462761 cites W2088876159 @default.
- W2076462761 cites W2090563336 @default.
- W2076462761 cites W2101589741 @default.
- W2076462761 cites W2111046434 @default.
- W2076462761 cites W2128266026 @default.
- W2076462761 cites W2128939350 @default.
- W2076462761 cites W2137300432 @default.
- W2076462761 cites W2157760198 @default.
- W2076462761 cites W2157804612 @default.
- W2076462761 cites W2165404562 @default.
- W2076462761 cites W4245006553 @default.
- W2076462761 doi "https://doi.org/10.1016/j.envint.2014.03.020" @default.
- W2076462761 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/24791706" @default.
- W2076462761 hasPublicationYear "2014" @default.
- W2076462761 type Work @default.
- W2076462761 sameAs 2076462761 @default.
- W2076462761 citedByCount "26" @default.
- W2076462761 countsByYear W20764627612015 @default.
- W2076462761 countsByYear W20764627612016 @default.
- W2076462761 countsByYear W20764627612017 @default.
- W2076462761 countsByYear W20764627612018 @default.
- W2076462761 countsByYear W20764627612019 @default.
- W2076462761 countsByYear W20764627612020 @default.
- W2076462761 countsByYear W20764627612021 @default.
- W2076462761 countsByYear W20764627612022 @default.
- W2076462761 crossrefType "journal-article" @default.
- W2076462761 hasAuthorship W2076462761A5016866149 @default.
- W2076462761 hasAuthorship W2076462761A5025961370 @default.
- W2076462761 hasAuthorship W2076462761A5036542477 @default.
- W2076462761 hasAuthorship W2076462761A5039626779 @default.
- W2076462761 hasAuthorship W2076462761A5040161005 @default.
- W2076462761 hasBestOaLocation W20764627612 @default.
- W2076462761 hasConcept C107872376 @default.
- W2076462761 hasConcept C153294291 @default.
- W2076462761 hasConcept C161067210 @default.
- W2076462761 hasConcept C185592680 @default.
- W2076462761 hasConcept C205649164 @default.
- W2076462761 hasConcept C39432304 @default.
- W2076462761 hasConceptScore W2076462761C107872376 @default.
- W2076462761 hasConceptScore W2076462761C153294291 @default.
- W2076462761 hasConceptScore W2076462761C161067210 @default.
- W2076462761 hasConceptScore W2076462761C185592680 @default.
- W2076462761 hasConceptScore W2076462761C205649164 @default.
- W2076462761 hasConceptScore W2076462761C39432304 @default.
- W2076462761 hasFunder F4320309585 @default.
- W2076462761 hasLocation W20764627611 @default.
- W2076462761 hasLocation W20764627612 @default.
- W2076462761 hasLocation W20764627613 @default.
- W2076462761 hasOpenAccess W2076462761 @default.
- W2076462761 hasPrimaryLocation W20764627611 @default.
- W2076462761 hasRelatedWork W1986585020 @default.
- W2076462761 hasRelatedWork W2044982438 @default.
- W2076462761 hasRelatedWork W2093554782 @default.
- W2076462761 hasRelatedWork W2121602785 @default.