锰基添加剂优化堆肥过程及堆肥品质研究进展

Advances in manganese-based additives for optimizing composting processes and enhancing compost quality

  • 摘要: 外源添加剂的应用已成为促进堆肥腐熟、提升堆肥产品品质的重要手段。锰基添加剂因其独特的多价态氧化还原特性、催化功能及对微生物代谢网络的调控效应, 通过多维度作用机制强化堆肥过程, 已成为堆肥领域的研究热点。本文综述了锰基添加剂在堆肥体系中的应用研究进展, 重点剖析其对有机组分转化、气体减排、腐殖化过程及堆肥产物安全性和品质的影响, 通过对比不同锰基添加剂的作用效果, 系统解析 “种类-功能-效果” 的内在关联与作用机制。锰基添加剂的合理应用可有效改善有机组分转化、温室和恶臭气体减排, 增强非生物及生物腐殖化作用途径, 提升堆肥产品品质和安全性; 锰基添加剂类型、用量及堆肥原料等因素显著影响堆肥腐殖化前体物质转化、功能微生物群落结构及关键酶活性, 进而调控堆肥腐殖化过程、有害物质消减及堆肥产品质量。然而, 当前研究对锰基添加剂强化堆肥过程中新污染物的迁移转化规律与相关机制认知不足, 堆肥产物农田施用的环境效应评估尚待完善, 不同锰基添加剂的增效作用差异及剂量效应关系仍需深入解析。本文旨在为锰基添加剂在堆肥领域的深入研究、技术优化及推广应用提供系统梳理, 推动有机固体废弃物资源化向高效、低碳方向转型。

     

    Abstract: The application of exogenous additives has become a crucial means to promote compost maturation and improve the quality of compost products. Manganese-based additives, due to their unique multivalent redox properties, catalytic functions, and regulatory effects on microbial metabolic networks, have emerged as a research hotspot in the composting field by enhancing the composting process through multidimensional mechanisms. This review summarizes the research progress on the application of manganese-based additives in composting systems, with a comprehensive analysis of their effects on the transformation of organic components, greenhouse gas mitigation, humification processes, and the safety and quality of compost products. Through comparative analysis of the efficacy of various manganese-based additives, the study systematically elucidates the intrinsic relationships between types, functions, and outcomes, as well as the underlying mechanisms. The rational application of manganese-based additives can effectively enhance organic component transformation, mitigate emissions of greenhouse gases and malodorous compounds, strengthen abiotic and biotic humification pathways, and improve the quality and safety of compost products. The types or dosage of manganese-based additives and composting feedstocks significantly influence the transformation of humification precursors, functional microbial community structure, and key enzyme activities, thereby regulating humification processes, mitigation of harmful substances, and quality of compost products. However, current research exhibits limited understanding of the migration and transformation patterns of emerging contaminants during manganese-based additive-enhanced composting processes, along with associated mechanisms. The environmental impact assessment of compost products application in farmland requires further refinement. Furthermore, the differences in the enchancing effects among various manganese-based additives and their dose-effect relationships necessitate in-depth investigation. This paper aims to provide a comprehensive review for in-depth research, technical optimization, and widespread application of manganese-based additives in composting, thereby facilitating the transition of organic solid waste resource utilization towards highly efficient and low-carbon directions.

     

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