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Abundance,size distribution and dissolved organic matter binding of arsenic in reducing aquifer

机译:减少含水层砷的丰度,尺寸分布和溶解有机物结合

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The interactions between As and dissolved organic matter (DOM) have significant impacts on the environmental behavior of As.Among various interactions,the binary complexes of As bound to DOM and ternary complexes of As bound to DOM with iron (Fe) bridging,are critical to mobility,speciation,toxicity and bioavailability of As.Flow field flow fractionation (F1FFF) offline with high-resolution inductively coupled plasma mass spectroscopy (HR-ICPMS) were utilized to elucidate the As,Fe and DOM complexation in high arsenic,reducing groundwater from Yinchuan plain.The majority (>70%) of As was truly dissolved with molecular size <0.5nm;while 13% of As and 37% of Fe were bound to colloidal DOM with molecular size between 16-64 nm.The results imply that As-Fe-DOM complex is distributed as moderately large colloids with molecular size between 16-64nm.However,artefacts due to changes occurring during sample storage and transportation cannot be ruled out.Thus,field ultrafiltration under N2 atmosphere will be employed in the future to validate FIFFF results.
机译:As和溶解的有机物(DOM)之间的相互作用对AS.Among各种相互作用的环境行为产生重大影响,与用铁(FE)桥接的DOM与DOM的DOM和三元复合物相结合的二元络合物是至关重要的用于迁移,物种,毒性和生物利用度,as.flow场流量分级(f1fff)与高分辨率感应耦合等离子体质谱(HR-ICPMS)的离线线用于阐明高砷的Fe和Dom络合,减少地下水来自银川平原。大多数(> 70%)真正溶解于分子大小<0.5nm;而13%的AS和37%的Fe均与胶体DOM结合,分子大小在16-64nm之间。结果意味着暗示当AS-Fe-Dom复合物分布为中等大的胶体,分子大小在16-64nm之间。然而,由于样品储存和运输过程中发生的变化引起的人工制品不能释放出。在N2 ATMOSP下,现场超滤这里将在未来使用以验证FIFFF结果。

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