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首页> 外文期刊>The Science of the Total Environment >Trace organic contaminants in field-scale cultivated alfalfa, soil, and pore water after 10 years of irrigation with reclaimed wastewater
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Trace organic contaminants in field-scale cultivated alfalfa, soil, and pore water after 10 years of irrigation with reclaimed wastewater

机译:在10年灌溉后,探测田间栽培苜蓿,土壤和孔隙水的痕量有机污染物与再生废水

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摘要

Several studies have assessed the presence of trace organic contaminants (TrOCs) in reclaimed wastewater and their uptake into crops but there are limited data from field-scale studies. In this research, we studied the fate of 12 TrOCs in wastewater samples. 11 in plants and in soil pore water, and 10 in soil at an agricultural research farm, which was irrigated with reclaimed wastewater for more than 10 years. First, we examined the presence of the compounds in the primary, secondary, and treated effluent of a regional water reclamation facility which provides the irrigation water. The agricultural field produced alfalfa, and we measured the contaminants in the alfalfa, soil, and pore water. Reclaimed wastewater contained 11 of 12 TrOCs, with concentrations ranging from 26 ± 9 ng/L (DEET) to 1539 ± 1899 ng/L (trimethoprim). Atrazine was not detected. Pore water collected during non-irrigating periods contained all analyzed TrOCs, from 3 ± 0.1 ng/L (diphenhydramine) to 343 ± 360 ng/L (primidone). TrOCs measured in pore water samples indicated that they may leach to shallow groundwater even when fields are not being irrigated. Soils from 0 to 60 cm contained nine TrOCs from below the reporting limit (fluoxetine) to 329 ng/g (carbamazepine). Atrazine was not detected. TrOC concentrations decreased with increasing soil depth, except carbamazepine, which was more recalcitrant Nine TrOCs were present in the shoots and leaves of alfalfa grown in the reclaimed wastewater irrigated plots, at concentrations ranging from <1 ng/g (diphenhydramine and fluoxetine) to 49 ng/g dry weight (carbamazepine). Atrazine and caffeine were not detected. We estimated that a maximum of 14% of DEET from the reclaimed wastewater was accumulated in alfalfa. Overall, despite some accumulation ofTrOCs in the soil, alfalfa uptake was limited, which results in low exposure to foraging animals.
机译:几项研究已经评估了回收废水中痕量有机污染物(TROC)的存在及其进入作物,但是来自现场规模研究的数据有限。在这项研究中,我们研究了在废水样品中的12个TROC的命运。 11在植物和土壤孔隙水中,以及农业研究场的土壤中的10个,灌溉了再生废水超过10年。首先,我们检查了提供灌溉水的区域水填充工具的初级,次级和处理过的流出物中的化合物的存在。农业领域生产苜蓿,我们测量了苜蓿,土壤和孔隙水中的污染物。回收废水含有11个12个TROC,浓度范围为26±9 ng / L(DEET)至1539±1899 ng / L(Trimethokim)。没有检测到尿道。在非灌溉期间收集的孔隙水含有所有分析的TROC,3±0.1ng / L(二合一羟基胺)至343±360ng / L(Primidone)。在孔水样中测量的TROC表明它们即使在没有灌溉田地时也可能浸出到浅地下水中。从0到60厘米的土壤含有来自报告限度下方的九个Troc(氟西汀)至329ng / g(卡巴马嗪)。没有检测到尿道。 TROC浓度随着土壤深度的增加而降低,除了克拉马西群,在再生废水灌溉图中的射击和叶片中存在更顽固的醋酸九个TROC,浓度为<1ng / g(二合羟基胺和氟西汀)至49 Ng / g干重(卡巴马嗪)。未检测到尿道和咖啡因。我们估计,从回收的废水中最多的14%的Deet累积在苜蓿中。总体而言,尽管土壤中的血液中的一些积累,但苜蓿摄取是有限的,这导致觅食动物的低暴露。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第20期|140698.1-140698.8|共8页
  • 作者单位

    Department of Civil and Environmental Engineering University of Nevada. Reno NV 89557-0258 United States of America;

    Department of Civil and Environmental Engineering University of Nevada. Reno NV 89557-0258 United States of America Stantec Consulting Services Reno NV 89511;

    Department of Natural Resources and Environmental Science. University of Nevada Reno NV 89557-0258 United States of America;

    Department of Civil and Environmental Engineering University of Nevada. Reno NV 89557-0258 United States of America;

    Department of Civil and Environmental Engineering University of Nevada. Reno NV 89557-0258 United States of America;

    Department of Civil and Environmental Engineering University of Nevada. Reno NV 89557-0258 United States of America;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reclaimed wastewater irrigation; Pharmaceutical and personal care products; Agriculture; TrOCs; Rhizosphere;

    机译:再生废水灌溉;药品和个人护理产品;农业;TROCS;根际;

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