生物炭
堆肥
废物管理
环境科学
生物量(生态学)
磷
化学
热解
农学
工程类
生物
有机化学
作者
Qing Xu,Tao Zhang,Yingqi Niu,Santanu Mukherjee,Salah Fatouh Abou‐Elwafa,Ngoc Son Hai Nguyen,Nora M. Al Aboud,Yukai Wang,Mingjun Pu,Yiran Zhang,Huu-Tuan Tran,Mansour Almazroui,Peter S. Hooda,Nanthi Bolan,Jörg Rinklebe,Sabry M. Shaheen
标识
DOI:10.1016/j.scitotenv.2024.173567
摘要
The increasing trend of using agricultural wastes follows the concept of "waste to wealth" and is closely related to the themes of sustainable development goals (SDGs). Carbon-neutral technologies for waste management have not been critically reviewed yet. This paper reviews the technological trend of agricultural waste utilization, including composting, thermal conversion, and anaerobic digestion. Specifically, the effects of exogenous additives on the contents, fractionation, and fate of phosphorus (P) and potentially toxic elements (PTEs) during the composting process have been comprehensively reviewed in this article. The composting process can transform biomass-P and additive-born P into plant available forms. PTEs can be passivated during the composting process. Biochar can accelerate the passivation of PTEs in the composting process through different physiochemical interactions such as surface adsorption, precipitation, and cation exchange reactions. The addition of exogenous calcium, magnesium and phosphate in the compost can reduce the mobility of PTEs such as copper, cadmium, and zinc. Based on critical analysis, this paper recommends an eco-innovative perspective for the improvement and practical application of composting technology for the utilization of agricultural biowastes to meet the circular economy approach and achieve the SDGs.
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