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Impact of sewage sludge conditioning and dewatering on the fate of nonylphenol in sludge-amended soils

机译:污泥预处理和脱水对污泥改良土壤中壬基酚去向的影响

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The fate of ~(14)C-labelled p353-nonylphenol (NP) in soils amended with differently treated sludges originating from the same precursor sludge was assessed. The effects of commonly applied conditioning and dewatering techniques were investigated. Nonylphenol was degraded considerably faster in soils amended with liquid sludge, while a significant portion of it remained intact and extractable by organic solvents when sludge had been centrifuged before soil amendment. Mineralization was reduced or even inhibited when freeze-thaw or lime conditioning was applied, respectively. Flocculation by an acryl-amide-based cationic polymer led to the formation of a nitro-addition product of nonylphenol in soil, as well to decreased mineralization rates after prolonged incubation times. Possible mechanisms underlying the observations are suggested and discussed.
机译:评估了土壤中〜(14)C标记的p353-壬基苯酚(NP)的命运,土壤中掺入了来自相同前体污泥的不同处理污泥。研究了常用的调节和脱水技术的效果。壬基酚在用液态污泥改良的土壤中降解得更快,而污泥在土壤改良前进行了离心处理后,壬基酚的大部分仍保持完好无损,可被有机溶剂萃取。分别采用冻融或石灰调理时,矿化作用降低或什至被抑制。丙烯酰胺基阳离子聚合物的絮凝导致土壤中壬基酚的硝基加成产物的形成,以及延长孵育时间后矿化速率降低。建议并讨论了观察结果的潜在机制。

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