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Assessment of diesel-contaminated domestic wastewater treated by constructed wetlands for irrigation of chillies grown in a greenhouse

机译:通过人工湿地处理的温室污染的辣椒灌溉对柴油污染的生活污水的评估

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摘要

In order to avoid environmental pollution and eliminate the need for using fertiliser, this study assessed for the first time the optimum performance of mature (in operation since 2011) vertical flow constructed wetlands in treating domestic wastewater (with and without hydrocarbon) and the subsequent recycling of the outflow to irrigate chillies (De Cayenne; Capsicum annuum (Linnaeus) Longum Group ‘De Cayenne’) grown in a greenhouse. Various variables were investigated to assess the treatment performance. Concerning chilli fruit numbers, findings showed that the highest fruit yields for all wetland filters were associated with those that received inflow wastewater with a high loading rate, reflecting the high nutrient availability in treated wastewater, which is of obvious importance for yield production. Findings also indicated that wetlands without hydrocarbon, small aggregate size, low contact time and low inflow loading rate provided high marketable yields (expressed in economic return). In comparison, chillies irrigated by filters with hydrocarbon contamination, small aggregate size, high contact time and high loading rate also resulted in high marketable yields of chillies, which pointed out the role of high contact time and high inflow load for better diesel degradation rates.Electronic supplementary materialThe online version of this article (doi:10.1007/s11356-016-7706-x) contains supplementary material, which is available to authorized users.
机译:为了避免环境污染并消除使用肥料的需要,本研究首次评估了成熟的(自2011年投入运营)垂直流人工湿地在处理生活污水(含碳氢化合物和不含碳氢化合物)以及随后的循环利用方面的最佳性能。灌溉温室中生长的辣椒(De Cayenne;辣椒(Linnaeus)Longum Group'De Cayenne')的流出量。研究了各种变量以评估治疗效果。关于辣椒果实的数量,研究结果表明,所有湿地过滤器的最高水果产量与接收高负荷率的流入废水的水果产量相关,这反映了处理后废水中养分的利用率高,这对于产量的生产具有重要意义。研究结果还表明,没有碳氢化合物的湿地,较小的集料尺寸,较短的接触时间和较低的流入负荷率可提供较高的可销售产量(以经济回报表示)。相比之下,用碳氢化合物污染,小集料尺寸,高接触时间和高负载率的过滤器灌溉的辣椒也导致了辣椒的高销售量,这指出了高接触时间和高流入负载对提高柴油降解率的作用。电子补充材料本文的在线版本(doi:10.1007 / s11356-016-7706-x)包含补充材料,授权用户可以使用。

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