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Performance Evaluation of Four Field-Scale Agricultural Drainage Denitrification Bioreactors in Iowa

机译:衣阿华州四种田间规模的农业排水反硝化生物反应器的性能评估

摘要

Recently, interest in denitrification bioreactors to reduce the amount of nitrate in agricultural drainage has led to increased installations across the U.S. Midwest. Despite this recent attention, there are few peer-reviewed, field-scale comparative performance studies investigating the effectiveness of these denitrification bioreactors. The object of this work was to analyze nitrate removal performance from four existing bioreactors in Iowa, paying particular attention to potential performance-affecting factors including retention time, influent nitrate concentration, temperature, flow rate, age, length-to-width ratio, and cross-sectional shape. Based on a minimum of two years of water quality data from each of the four bioreactors, annual removal rates ranged from 0.38 to 7.76 g N m-3 bioreactor volume d-1. Bioreactor and total (including bypass flow) nitrate-nitrogen load reductions ranged from 12% to 76% (mean 45%) and from 12% to 57% (mean 32%), respectively, removing from 0.5 to 15.5 kg N ha-1 drainage area. Multiple regression analyses showed that temperature and influent nitrate concentration were the most important factors affecting percent bioreactor nitrate load reduction and nitrate removal rate, respectively. This analysis also indicated that load reductions within the bioreactor were significantly impacted by retention time at three of the four reactors. More field-scale performance data from bioreactors of different designs and from multiple locations around the Midwest are necessary to further enhance understanding of nitrate removal in these systems and their potential to positively impact water quality.
机译:近来,对减少反硝化生物反应器以减少农业排水中硝酸盐含量的兴趣导致整个美国中西部的装置增加。尽管最近受到了关注,但很少有同行评审的实地规模比较性能研究来研究这些反硝化生物反应器的有效性。这项工作的目的是分析爱荷华州现有的四个生物反应器中的硝酸盐去除性能,尤其要注意可能影响性能的因素,包括保留时间,进水硝酸盐浓度,温度,流速,年龄,长宽比和横截面形状。根据来自四个生物反应器中每一个的至少两年的水质数据,年去除率范围为0.38至7.76 g N m-3生物反应器体积d-1。生物反应器和全部(包括旁路流量)硝酸盐氮负荷减少量分别为12%至76%(平均45%)和12%至57%(平均32%),减少了0.5至15.5 kg N ha-1流域。多元回归分析表明,温度和进水硝酸盐浓度分别是影响生物反应器硝酸盐负荷减少百分比和硝酸盐去除率的最重要因素。该分析还表明,生物反应器内负荷的减少受到四个反应器中三个反应器的保留时间的影响。需要来自不同设计的生物反应器以及中西部多个地区的更多现场规模的性能数据,以进一步增进对这些系统中硝酸盐去除及其对水质产生积极影响的潜力的了解。

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