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优化猪粪在重金属污染土壤中应用以监测硝化过程。

Optimization of pig slurry application to heavy metal polluted soils monitoring nitrification processes.

机构信息

Department of Soil and Water Conservation and Organic Waste Management, Centro de Edafología y Biología Aplicada del Segura, CSIC. P.O. Box 164, 30100 Murcia, Spain.

出版信息

Chemosphere. 2010 Oct;81(5):603-10. doi: 10.1016/j.chemosphere.2010.08.026. Epub 2010 Sep 9.

DOI:10.1016/j.chemosphere.2010.08.026
PMID:20825965
Abstract

Nitrification is often negatively affected by heavy metal pollution in soils, this limiting land revegetation. Thus, the potential use of pig slurry as a nitrogen-rich organic amendment in different heavy metal contaminated soils has been evaluated; this also being a way of recycling this waste. In order to identify the factors affecting nitrification processes in heavy metal polluted soils (soil pH, heavy metal solubility and the N source), incubation experiments were run using two polluted soils with different pH values (5.0 and 7.1) and a non-contaminated soil (pH 8.2). Ammonium was added as pig slurry or as ammonium sulphate for comparison (both added at 150 mg NH(4)(+)-N kg(-1) of soil). Pig slurry provoked higher nitrification rates and N-immobilisation than ammonium sulphate, especially in the neutral-polluted soil, reflecting an improvement of the microbial activity in the soil. The microbial immobilisation of N led to an inverse relationship between the amount of N added and nitrate conversion in the neutral-polluted soil and in the non-contaminated soil amended with different pig slurry dosages (75, 150 and 225mg NH(4)(+)-N kg(-1) of soil). Low rates of nitrification and N-immobilisation were found in the acidic soil. Pig slurry addition to metal polluted soils enhanced soil nitrification, especially when metals were in low-solubility forms.

摘要

硝化作用通常会受到土壤重金属污染的负面影响,从而限制了土地的植被恢复。因此,人们评估了猪粪作为富含氮的有机改良剂在不同重金属污染土壤中的潜在用途;这也是回收这种废物的一种方式。为了确定影响重金属污染土壤硝化过程的因素(土壤 pH 值、重金属溶解度和氮源),使用两种 pH 值不同的污染土壤(5.0 和 7.1)和一种无污染土壤(pH 值 8.2)进行了培养实验。添加铵作为猪粪或作为硫酸铵进行比较(均以 150mgNH4(+)-Nkg(-1)土壤的量添加)。猪粪比硫酸铵引发更高的硝化速率和氮固定,特别是在中性污染土壤中,反映了土壤中微生物活性的提高。微生物对氮的固定导致在中性污染土壤和用不同猪粪剂量(75、150 和 225mgNH4(+)-Nkg(-1)土壤)改良的无污染土壤中添加的氮量与硝酸盐转化之间呈反比关系。在酸性土壤中发现硝化作用和氮固定的速率较低。向金属污染土壤中添加猪粪可增强土壤硝化作用,特别是当金属处于低溶解度形式时。

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