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Dissolved organic matter tracers reveal contrasting characteristics across high arsenic aquifers in Cambodia:A fluorescence spectroscopy study

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【作者】 Laura A.RichardsDan J.LapworthDaniel MagnoneDaren C.GooddyLee ChambersPeter J.WilliamsBart E.van DongenDavid A.Polya

【Author】 Laura A.Richards;Dan J.Lapworth;Daniel Magnone;Daren C.Gooddy;Lee Chambers;Peter J.Williams;Bart E.van Dongen;David A.Polya;School of Earth and Environmental Sciences and Williamson Research Centre for Molecular Environmental Science, The University of Manchester;British Geological Survey;School of Geography, University of Lincoln;Lancaster Environment Centre, Lancaster University;Department of Civil and Environmental Engineering, University of Strathclyde;

【通讯作者】 Laura A.Richards;

【机构】 School of Earth and Environmental Sciences and Williamson Research Centre for Molecular Environmental Science, The University of ManchesterBritish Geological SurveySchool of Geography, University of LincolnLancaster Environment Centre, Lancaster UniversityDepartment of Civil and Environmental Engineering, University of Strathclyde

【摘要】 Organic matter in the environment is involved in many biogeochemical processes,including the mobilization of geogenic trace elements,such as arsenic,into groundwater.In this paper we present the use of fluorescence spectroscopy to characterize the dissolved organic matter(DOM)pool in heavily arsenicaffected groundwaters in Kandal Province,Cambodia.The fluorescence DOM(fDOM)characteristics between contrasting field areas of differing dominant lithologies were compared and linked to other hydrogeochemical parameters,including arsenic and dissolved methane as well as selected sedimentary characteristics.Absorbance-corrected fluorescence indices were used to characterize depth profiles and compare field areas.Groundwater fDOM was generally dominated by terrestrial humic and fulvic-like components,with relatively small contributions from microbially-derived,tryptophan-like components.Groundwater fDOM from sand-dominated sequences typically contained lower tryptophan-like,lower fulvic-like and lower humic-like components,was less bioavailable,and had higher humification index than clay-dominated sequences.Methane concentrations were strongly correlated with fDOM bioavailability as well as with tryptophan-like components,suggesting that groundwater methane in these arsenic-prone aquifers is likely of biogenic origin.A comparison of fDOM tracers with sedimentary OM tracers is consistent with the hypothesis that external,surface-derived contributions to the aqueous DOM pool are an important control on groundwater hydrogeochemistry.

【Abstract】 Organic matter in the environment is involved in many biogeochemical processes,including the mobilization of geogenic trace elements,such as arsenic,into groundwater.In this paper we present the use of fluorescence spectroscopy to characterize the dissolved organic matter(DOM)pool in heavily arsenicaffected groundwaters in Kandal Province,Cambodia.The fluorescence DOM(fDOM)characteristics between contrasting field areas of differing dominant lithologies were compared and linked to other hydrogeochemical parameters,including arsenic and dissolved methane as well as selected sedimentary characteristics.Absorbance-corrected fluorescence indices were used to characterize depth profiles and compare field areas.Groundwater fDOM was generally dominated by terrestrial humic and fulvic-like components,with relatively small contributions from microbially-derived,tryptophan-like components.Groundwater fDOM from sand-dominated sequences typically contained lower tryptophan-like,lower fulvic-like and lower humic-like components,was less bioavailable,and had higher humification index than clay-dominated sequences.Methane concentrations were strongly correlated with fDOM bioavailability as well as with tryptophan-like components,suggesting that groundwater methane in these arsenic-prone aquifers is likely of biogenic origin.A comparison of fDOM tracers with sedimentary OM tracers is consistent with the hypothesis that external,surface-derived contributions to the aqueous DOM pool are an important control on groundwater hydrogeochemistry.

【基金】 funded by a NERC Standard Research Grant (NE/J023833/1)to DAP, BvD and Christopher Ballentine(now at University of Oxford);support from the Leverhulme Trust(ECF2015-657) to LAR;a NERC PhD studentship(NE/L501591/1)to DM;a NERC Collaborative Awards in Science and Engineering PhD studentship (NE/501736/1)to LC.
  • 【文献出处】 Geoscience Frontiers ,地学前缘(英文版) , 编辑部邮箱 ,2019年05期
  • 【分类号】P641.3
  • 【被引频次】2
  • 【下载频次】20
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