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Arsenic in glacial aquifers: sources and geochemical controls   总被引:1,自引:0,他引:1  
A total of 176 wells in sand-and-gravel glacial aquifers in central Illinois were sampled for arsenic (As) and other chemical parameters. The results were combined with archived and published data from several hundred well samples to determine potential sources of As and the potential geochemical controls on its solubility and mobility. There was considerable spatial variability in the As concentrations. High concentrations were confined to areas smaller than 1 km in diameter. Arsenic and well depth were uncorrelated. Arsenic solubility appeared to be controlled by oxidation-reduction (redox) conditions, especially the presence of organic matter. Geochemical conditions in the aquifers are typically reducing, but only in the most reducing water does As accumulate in solution. In wells in which total organic carbon (TOC) was below 2 mg/L and sulfate (SO4(2-)) was present, As concentrations were low or below the detection limit (0.5 microg/L). Arsenic concentrations >10 microg/L were almost always found in wells where TOC was >2 mg/L and SO4(2-) was absent or at low concentrations, indicating post-SO4 (2-)reducing conditions. Iron (Fe) is common in the aquifer sediments, and Fe oxide reduction appears to be occurring throughout the aquifers. Arsenic is likely released from the solid phase as Fe oxide is reduced.  相似文献   
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在元古宙沉积序列中,常常含有化石。叠层石、疑源类、微体化石、后生动物的遗迹化石和实体化石等都已成功地应用于生物地层学研究。还存在着应用有机地球化学生物标志的可能性。元古宙几乎所有轻微变质的碳酸盐中都含有叠层石。对决定叠层石的形态和结构的环境因素和生物因素模式的研究较为成功。叠层石的生物地层学应用研究开始于前苏联,在  相似文献   
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