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Fate of heavy metals and major nutrients in a sludge-soil-plant-leachate system during the sludge phyto-treatment process

机译:污泥植物处理过程中污泥-土壤-植物-渗滤液系统中重金属和主要养分的命运

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摘要

Land application of sewage sludge usually leads to increased levels of heavy metals in soil, plants and groundwater. Pre-treatment using plants has been proposed to reduce the contents of heavy metals and water in sludge prior to land application. This study quantified the transfer of Zn, Cd, Pb and major nutrients in a sludge-soil-plant-leachate system during the treatment of sewage sludge. To accomplish this, a two year pot experiment was carried out to collect leachate, mono- and co-cropping of Sedum alfredii and feed crops was conducted in sludge with an under-layer soil support. Sludge phyto-treatment increased Zn and Cd concentrations in the under-layer soil, but not Pb. Specifically, 70%, 70% and 80% of the original Zn, Cd and Pb, respectively, remained in the sludge, while about 40%, 70% and 60% of the original N, P and K remained. Only 3% to 5% of Cd and Zn and < 1% of Pb were transferred into the under-layer soils or leachates, while more than 12% of the N and P were transferred. Co-planting 5. alfredii and feed crops led to a significant reduction of heavy metals in leachates when compared with sludge without planting. Overall, sludge leachate is more appropriate than whole sludge for recycling in agriculture since it reduces the chance of heavy metal contamination in the agro-ecosystem; therefore, co-cropping phyto-treatment of sludge can be coupled with sludge leachate recycling for crop production and re-collection of the sludge residue for landfilling.
机译:在土地上使用污泥通常会导致土壤,植物和地下水中重金属的含量增加。已经提出使用植物进行预处理以减少土地施用前污泥中重金属和水的含量。这项研究量化了污泥-土壤-植物-渗滤液系统中污水处理过程中锌,镉,铅和主要养分的转移。为此,进行了一项为期两年的盆栽实验,收集渗滤液,苜蓿景天的单作和复作,并在有底层土壤支持的污泥中进行了饲料作物的种植。污泥的植物处理增加了地下土壤中锌和镉的浓度,但没有增加铅的浓度。具体而言,污泥中分别保留了原始Zn,Cd和Pb的70%,70%和80%,而原始N,P和K分别保留了约40%,70%和60%。仅有3%至5%的Cd和Zn和<1%的Pb转移到下层土壤或渗滤液中,而N和P的转移超过12%。联合种植5.与未经种植的污泥相比,苜蓿和饲料作物显着减少了渗滤液中的重金属。总体而言,污泥渗滤液比整个污泥更适合用于农业循环利用,因为它减少了农业生态系统中重金属污染的机会;因此,污泥的共作植物处理可以与污泥沥滤液的循环利用相结合,用于农作物生产和污泥残渣的回收,以进行填埋。

著录项

  • 来源
    《Environmental Technology》 |2013年第14期|2221-2229|共9页
  • 作者单位

    Key Laboratory of Soil Environment and Waste Reuse in Agriculture of Guangdong High Education Institutes, South China Agricultural University, Guangzhou, China;

    South China Institute of Environmental Science, Ministry of Environmental Protection, Guangzhou, China;

    Key Laboratory of Soil Environment and Waste Reuse in Agriculture of Guangdong High Education Institutes, South China Agricultural University, Guangzhou, China;

    Key Laboratory of Soil Environment and Waste Reuse in Agriculture of Guangdong High Education Institutes, South China Agricultural University, Guangzhou, China;

    Key Laboratory of Soil Environment and Waste Reuse in Agriculture of Guangdong High Education Institutes, South China Agricultural University, Guangzhou, China;

    Key Laboratory of Soil Environment and Waste Reuse in Agriculture of Guangdong High Education Institutes, South China Agricultural University, Guangzhou, China;

    Department of Biology, Hong Kong Baptist University, Hong Kong, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sewage sludge; heavy metals; major nutrients; sludge-soil-plant-leachate system;

    机译:污水污泥;重金属;主要营养素;污泥-土壤-植物-渗滤液系统;

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