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A compost-derived thermophilic microbial consortium enhances the humification process and alters the microbial diversity during composting

机译:堆肥嗜热微生物联盟增强了腐殖过程,并在堆肥期间改变了微生物多样性

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摘要

This work was conducted to assess the influence of a compost-born multifunctional thermophilic microbial consortium (CTMC) on the physico-chemical parameters, organic matter (OM) transformation and dynamic succession of microbial communities in dairy manure-sugarcane leaves co-composting. The results revealed that CTMC inoculation not only improved the bio-degradation of OM and lignocellulose but also distinctly enhanced the aromaticity and stability degrees of dissolved organic matter and humic substance (HS). Additionally, the complexity and diversity of bacterial and fungal community increased after inoculation. Redundancy analysis indicated that the microbial communities compositions and the physico-chemical parameters interacted with each other in humification process. The dominated bacterial and fungal species related to lignocellulose degradation and humification process were also detected. Accordingly, this research could put forward a possible optimized inoculation strategy to enhance the mineralization of organic carbon, accelerate the lignocellulose degradation and promote the humification process in solid organic waste composting.
机译:进行了这项工作以评估堆肥多官能嗜热微生物联盟(CTMC)对乳制品甘蔗叶共堆肥的微生物群体的有机物(OM)转化和动态连续的影响。结果表明,CTMC接种不仅改善了OM和木质纤维素的生物降解,而且还明显增强了溶解的有机物质和腐殖质(HS)的芳香性和稳定性。另外,接种后细菌和真菌群落的复杂性和多样性增加。冗余分析表明微生物群落组合物和物理化学参数在湿化过程中彼此相互作用。还发现了与木质纤维素降解和腐殖过程相关的主导的细菌和真菌物种。因此,该研究可以提出可能的优化接种策略以增强有机碳的矿化,加速木质纤维素降解并促进固体有机废物堆肥中的湿法过程。

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