首页> 外文会议>GQ10: Groundwater quality management in a rapidly changing world >Laboratory simulated transport of microcystin-LR and cylindrospermopsin in groundwater under the influence of stormwater ponds: implications for harvesting of infiltrated stormwater
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Laboratory simulated transport of microcystin-LR and cylindrospermopsin in groundwater under the influence of stormwater ponds: implications for harvesting of infiltrated stormwater

机译:实验室模拟的微囊藻毒素-LR和cylindrospermopsin在雨水池塘的影响下在地下水中的运输:对渗透雨水收集的影响

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Water shortages in the southeastern United States have led to a need for more intensive management and usage of stormwater for beneficial uses such as irrigation. Harvesting of infiltrated stormwater from horizontal wells in sandy aquifer sediments beneath stormwater ponds has emerged as an alternative in need of evaluation. Cyanobacteria may proliferate in stormwater ponds; cyanotoxins produced by these organisms represent potential public health concerns. Results of two, saturated flow, sand column experiments indicate breakthrough of microcystin-LR (MCLR) and cylindrospermopsin (CYL) within 1-2 pore volumes indicating little removal attributable to sorption. Concentration-based MCLR removal efficiencies up to 90% were achieved, which we hypothesize were predominantly due to biodegradation. In contrast, CYL removal efficiencies were generally less than 15%. On the basis of these results, removal of sandy soil in the stormwater pond bottom and addition of sorption media with greater binding affinities to cyanotoxins may enhance natural attenuation processes prior to water withdrawal.
机译:美国东南部的水资源短缺导致需要对集约化管理和雨水利用进行有益的利用,例如灌溉。已经出现了从雨水塘下面的砂质含水层沉积物中的水平井中收集渗入的雨水的情况,这是需要评估的一种替代方法。蓝细菌可能在雨水池塘中扩散;这些生物体产生的氰毒素代表潜在的公共健康问题。两次饱和流动砂柱实验的结果表明,微囊藻毒素-LR(MCLR)和圆柱精子蛋白(CYL)在1-2孔体积内突破,表明几乎没有吸附引起的去除。基于浓度的MCLR去除效率可达到90%,我们假设这主要是由于生物降解所致。相反,共轭基团的去除效率通常小于15%。基于这些结果,去除雨水塘底部的沙质土壤和添加对氰毒素具有更大结合亲和力的吸附介质,可能会在取水之前增强自然衰减过程。

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