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Pilot-scale evaluation of denitrification drainage bioreactors: Reactor geometry and performance

机译:脱硝排水生物反应器的中试评估:反应器的几何形状和性能

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摘要

Denitrification drainage bioreactors are emerging as an innovative practice to address water quality concerns stemming from nitrate leaching from drained agricultural lands. Although installation of these systems has begun in farms in the midwestern United States, the understanding of their design and in-field performance remains deficient. This study utilized a set of pilot-scale drainage bioreactors to evaluate the impact of bioreactor geometry on reactor hydraulic properties and to determine nitrate removal under steady-state conditions and during a simulated storm event. Bioreactors with different cross-sectional geometries but similar depths and total volumes were evaluated. The percent reduction of the influent nitrate mass was linearly correlated to the theoretical hydraulic retention time (HRT) with 30 to 70% NO3 - N removals observed within the 4 to 8h of retention time suggested for field installations. Tracer tests revealed that in situ HRTs were at least 1.5 times larger than theoretical HRTs.
机译:反硝化排水生物反应器正在作为一种创新实践出现,以解决因排水农田中硝酸盐浸出而引起的水质问题。尽管已经在美国中西部的农场中开始安装这些系统,但对它们的设计和现场性能的了解仍然不足。这项研究利用一组中试规模的排水生物反应器来评估生物反应器几何形状对反应堆水力性能的影响,并确定稳态条件下和模拟风暴事件中硝酸盐的去除量。评估了具有不同横截面几何形状但深度和总体积相似的生物反应器。进水硝酸盐质量的减少百分比与理论水力停留时间(HRT)线性相关,在现场安装建议的保留时间内4至8小时内观察到30%至70%的NO3- N去除量。示踪剂测试表明,原位HRT至少比理论HRT大1.5倍。

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