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Effects of Cu on metabolisms and enzyme activities of microbial communities in the process of composting

机译:铜对堆肥过程中微生物群落代谢和酶活性的影响

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With the compost matrix of pig manure, wheat straw, and spent mushroom substrate, and then inoculated with the Compound Microbe Preparation, the study investigated the effects of the heavy metal Cu on the process of composting. Biolog EcoPlate? test revealed that at a low content, Cu could improve the capacities of microbial communities to transform and exploit carbon sources in the form of polymer, thus speeding up the decomposition of agricultural wastes, and at a high content, Cu presented inhibiting effect on microbial communities to exploit complex macromolecular carbon sources, thus extending the decomposition of agricultural wastes. Enzyme activity testing showed that at a low content, Cu presented enzyme activity-activating effect at the early period of composting and inhibiting effect in the late period of composting, and at a high content, Cu presented enzyme activity-inhibiting effects through the process of composting.
机译:以猪粪,小麦秸秆和废蘑菇底料为堆肥基质,然后用​​复合微生物制剂接种,研究了重金属铜对堆肥过程的影响。 Biolog EcoPlate?试验表明,低含量的铜可以提高微生物群落以聚合物形式转化和利用碳源的能力,从而加速农业废弃物的分解,高含量的铜对微生物群落具有抑制作用开发复杂的大分子碳源,从而扩展了农业废物的分解。酶活性测试表明,低含量的铜在堆肥初期表现出酶活性的活化作用,而在堆肥后期则表现出抑制作用,而高含量的铜则在堆肥过程中表现出抑制酶活性的作用。堆肥。

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