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Soil fertilization with wastewater biosolids - monitoring changes in the 'soil-fertilizer-plant' system and phosphorus recovery options

机译:利用废水生物固体进行土壤肥料-监测“土壤肥料工厂”系统的变化和磷的回收方案

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The aim of this study is to establish changes that may occur after a prolonged application of wastewater sludge treated to biosolids, in the 'soil-fertilizer-plant' system. Thirteen experimental plots with different soil types planted with experimental crops were investigated in order to evaluate the suitability of these biosolids as soil conditioners and fertilizers. The biosolids were incorporated in soil starting in 2006 in different quantities (from 6 tons per ha) for various arrays. The rate of application was calculated on the basis of imported nitrogen and was consistent with the characteristics of the sludge, soil diversity, growing crop requirements, and other factors. In 2013 (after 7 years of land use) average soil samples from the same arrays were taken and analyzed. No chemical fertilizer was applied during the experimental period. The results show that the use of sewage biosolids as a soil improver in accordance with local legislation does not pose any serious environmental risks but can maintain and improve soil fertility and crop yield. A slight increase in Cu and Zn in plants was detected, however the content of heavy metals in all soil samples was below maximum allowable limits and no signs of phytotoxicity were observed.
机译:这项研究的目的是确定在“土壤肥料工厂”系统中,长时间使用处理过的污泥处理生物固体后可能发生的变化。为了评估这些生物固体作为土壤改良剂和肥料的适用性,研究了13种不同土壤类型的试验田,其中种植了试验作物。从2006年开始,将各种形式的生物固体以不同数量(每公顷6吨)掺入土壤中。施用量是根据进口氮计算得出的,与污泥,土壤多样性,作物生长需求和其他因素的特征相符。 2013年(土地使用7年后)对相同阵列的平均土壤样品进行了采集和分析。在实验期间未施用化肥。结果表明,根据当地法规使用污水生物固体作为土壤改良剂不会造成任何严重的环境风险,但可以维持和改善土壤肥力和作物产量。检测到植物中的铜和锌略有增加,但是所有土壤样品中的重金属含量均低于最大允许限值,并且未观察到任何植物毒性迹象。

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