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Assessment contributions of physicochemical properties and bacterial community to mitigate the bioavailability of heavy metals during composting based on structural equation models

机译:基于结构方程模型的堆肥期间,物理化学性质和细菌群体的评估贡献在堆肥过程中减轻重金属的生物利用度

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摘要

The aim of this study was to explore the pathways to mitigate the bioavailability of heavy metals (HM) during chicken and beef cattle manures composting. For raw materials, HM contents in animal manures from breeding farm were 1.5-3 times as much as that of domestic animal manures. Structural equation models (SEMs) based on denaturing gradient gel electrophoresis (DGGE) showed that mitigating bioavailability of HM was mainly attributed to physicochemical properties (organic matters content and temperature) during beef cattle manures composting. However, both physicochemical properties (organic matters content, temperature, pH and moisture) and bacterial community were critical factors during chicken manures composting. Furthermore, the statistical analysis from high-throughput sequencing verified the results of SEMs. Therefore, the bioavailability of HM will be mitigated by different deactivation pathways according to diverse raw materials composting.
机译:本研究的目的是探索减轻鸡肉和牛粪在鸡肉和牛粪中的重金属(HM)的生物利用度的途径。 对于原材料,来自繁殖农场的动物粪便中的HM内容物是国内动物灌条的1.5-3倍。 基于变性梯度凝胶电泳(DGGE)的结构方程模型(SEM)显示HM的缓解性生物利用度主要归因于牛粪堆肥期间的物理化学性质(有机物质含量和温度)。 然而,物理化学性质(有机物质含量,温度,pH和水分)和细菌群落是鸡肉粪便堆肥期间的关键因素。 此外,高通量测序的统计分析验证了SEM的结果。 因此,根据不同的原料堆肥,通过不同的失活途径缓解HM的生物利用度。

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