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Subsurface Drainage Flow Fluctuations Impact Denitrifying Bioreactor Hydraulic Conductivity

机译:地下排水流动波动冲击反硝化生物反应器液压导电性

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Anecdotal evidence suggests the saturated, hydraulic conductivity (Km) of woodchip media used in denitrifying bioreactors may change over time due to growth of microbial bio films, woodchip decomposition, siltation, or other factors. The objective ofthis study was to analyze the in-situ K of two full-size bioreactors in Illinois to investigate the influence fluctuating flow regimes have on this important physical property of the bioreactor matrix. It was hypothesized that biofilms are washed out from major pore spaces during high flow events, resulting in an increase in KSai. Daily average- and higher frequency 15-min flow data and inlet and outlet water level data for two United States Department of Agriculture-Natural Resources Conservation Service-designed bioreactors were used to determine specific discharge and hydraulic gradient. Saturated hydraulic conductivity was calculated from those parameters and the bioreactor dimensions using Darcy's Law through porous media. Time series analysis ofin-situ Ksai and flow showed KSat was not constant throughout the monitoring period. Several high flow events during typically low summer flows appeared to result in a related increase in Ksa, (e.g., from 1.0 cm/s to 10 cm/s). These early data may be evidence toward confirming the hypothesis that flushing of biofilms occurs during high flow events but deeper analysis is recommended.
机译:轶事证据表明,用于反硝化生物反应器的木片介质的饱和液压导电性(KM)可能随着微生物生物薄膜,木片分解,淤积或其他因素的生长而随时间而变化。本研究的目的是分析伊利诺伊州两种全尺寸生物反应器的原位K,以研究波动流动制度对生物反应器基质的这种重要物理性质的影响。假设在高流量事件期间从主要孔隙空间中洗掉生物膜,导致ksai增加。每日平均和较高的15分钟流量数据和入口和出口水位和出口水位数据用于两个美国农业部 - 自然资源保护服务设计的生物反应器,用于确定特定的放电和液压梯度。通过多孔介质从那些参数和生物反应器尺寸计算饱和液压导电性。时间序列分析 - 在整个监测期内,ksai和流量显示ksat在ksat并不恒定。在通常低夏季流动期间的几种高流动事件似乎导致KSA的相关增加(例如,从1.0cm / s至10cm / s)。这些早期数据可能是确认在高流量事件期间发生生物膜冲洗的假设的证据,但建议进行更深的分析。

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