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Dissolved Organic Carbon Mobilisation in a Groundwater System Stressed by Pumping

机译:抽水作用下地下水系统中的溶解有机碳动员

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摘要

The concentration and flux of organic carbon in aquifers is influenced by recharge and abstraction, and surface and subsurface processing. In this study groundwater was abstracted from a shallow fractured rock aquifer and dissolved organic carbon (DOC) was measured in observation bores at different distances from the abstraction bore. Groundwater abstraction at rates exceeding the aquifers yield resulted in increased DOC concentration up to 3,500 percent of initial concentrations. Potential sources of this increased DOC were determined using optical fluorescence and absorbance analysis. Groundwater fluorescent dissolved organic material (FDOM) were found to be a combination of terrestrial-derived humic material and microbial or protein sourced material. Relative molecular weight of FDOM within four metres of the abstraction well increased during the experiment, while the relative molecular weight of FDOM between four and ten metres from the abstraction well decreased. When the aquifer is not being pumped, DOC mobilisation in the aquifer is low. We hypothesise that the physical shear stress on aquifer materials caused by intense abstraction significantly increases the temporary release of DOC from sloughing of biofilms and release of otherwise bound colloidal and sedimentary organic carbon (SOC).
机译:含水层中有机碳的浓度和通量受补给和提取以及表面和地下处理的影响。在这项研究中,从浅层裂隙含水层提取地下水,并在距提取孔不同距离的观测孔中测量了溶解有机碳(DOC)。以超过含水层产量的速率抽取地下水导致DOC浓度增加到初始浓度的3500%。使用光学荧光和吸光度分析确定了这种增加的DOC的潜在来源。发现地下水中溶解有荧光的有机物质(FDOM)是陆生腐殖质与微生物或蛋白质来源的物质的组合。在实验过程中,距离提取井4米以内的FDOM相对分子量增加,而距离提取井4米至10米之间的FDOM相对分子量降低。当不泵送含水层时,含水层中的DOC动员率较低。我们假设强烈提取引起的含水层材料上的物理剪切应力显着增加了生物膜脱落引起的DOC临时释放以及原本结合的胶体和沉积有机碳(SOC)的释放。

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