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Impact of sewage sludge application on soil microbial biomass, microbial processes and plant growth - a review.

机译:污水污泥施用对土壤微生物生物量,微生物过程和植物生长的影响-综述。

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Sewage sludge is a rich source of plant nutrients (C, N, P and K). Besides, these sludge often contains heavy metals like Zn, Cu, Fe, Cd, Pd, Ni, Hg and Cr. Some of these metals at low concentration are essential micronutrients. The repeated addition of sludge contaminated with heavy metals may lead to build up of heavy metals in the soil and thereby exert adverse effects on soil health. The concentrations of heavy metal dose to or less than current permissible limits have no effect on microbial biomass carbon and other activities. Soil microbial biomass carbon and activities increased with the application of uncontaminated sewage sludge. But the application of metal contaminated sewage sludge led to the decline in microbial biomass C and N. At higher level, metal-contaminated sewage sludge resulted in the accumulation of organic matter due to less degradation or carbon dioxide evolution. The urease and dehydrogenase activities are adversely affected while other enzyme activities stimulated by metal contaminated sewage sludge. Soil microbial community structure and plant growth are also adversely affected by metal contaminated sewage sludge.
机译:污泥是植物营养素(C,N,P和K)的丰富来源。此外,这些污泥通常含有重金属,如锌,铜,铁,镉,钯,镍,汞和铬。这些金属中的一些低浓度是必需的微量营养素。重复添加被重金属污染的污泥可能导致土壤中重金属的积累,从而对土壤健康产生不利影响。重金属的浓度达到或小于当前允许的极限对微生物生物量碳和其他活性没有影响。随着未污染污水污泥的施用,土壤微生物生物量碳和活性增加。但是,金属污染的污水污泥的应用导致微生物生物量碳和氮的下降。在较高水平,金属污染的污水污泥由于降解或二氧化碳排放减少而导致有机物的积累。脲酶和脱氢酶活性受到不利影响,而其他酶活性则受到金属污染的污水污泥的刺激。土壤微生物群落结构和植物生长也受到金属污染的污水污泥的不利影响。

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