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The feasibility of applying immature yard-waste compost to remove nitrate from agricultural drainage effluents: A preliminary assessment

机译:应用未成熟的堆肥堆肥去除农业排水废水中硝酸盐的可行性:初步评估

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Nitrate is a major agricultural pollutant found in drainage waters. Immature yard-waste compost was selected as a filter media to study its feasibility for removing nitrate from drainage water. Different operation parameters were tested to examine the denitrification efficiency, including the amounts of compost packed in columns, the flow rate, and the compost storage periods. The experimental results suggested that hydraulic retention time was the major factor to determine the extent of nitrate removal, although the amount of compost packed could also contribute to the nitrate removal efficiency. The effluent nitrate concentration increased as the flow rate decreased, and the compost column reduced nitrate concentrations from 20 mg/L to less than 5 mg/L within 1.5 h. The solution pH increased at the onset of experiment because of denitrification, but stabilized at a pH of about 7.8, suggesting that the compost had a buffering capacity to maintain a suitable pH for denitrification. Storing compost under air-dried conditions may diminish the extent nitrate removed initially, but the effects were not apparent after longer applications. It appeared that immature yard-waste compost may be a suitable material to remove nitrate from tile drainage water because of its relatively large organic carbon content, high microbial activity, and buffering capacity.
机译:硝酸盐是排水中发现的主要农业污染物。选择未成熟的庭院垃圾堆肥作为过滤介质,以研究其从排水中去除硝酸盐的可行性。测试了不同的操作参数以检查反硝化效率,包括装在柱子中的堆肥量,流速和堆肥存储期。实验结果表明,水力停留时间是决定硝酸盐去除程度的主要因素,尽管堆肥的堆积量也可以影响硝酸盐去除效率。随着流速的降低,出水硝酸盐浓度增加,堆肥柱在1.5小时内将硝酸盐浓度从20 mg / L降低到小于5 mg / L。由于反硝化作用,溶液的pH在实验开始时就增加了,但在约7.8的pH值下却稳定了,这表明堆肥具有缓冲能力,可以保持适合反硝化作用的pH值。在风干条件下储存堆肥可能会减少硝酸盐最初去除的程度,但长期使用后效果不明显。看来,未成熟的庭院垃圾堆肥由于其相对较高的有机碳含量,较高的微生物活性和缓冲能力,可能是从瓷砖排水中去除硝酸盐的合适材料。

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