Transformation characteristics of organic matter and phosphorus in composting processes of agricultural organic waste: Research trends

Q1 Materials Science
Shiyu Xie , Huu-Tuan Tran , Mingjun Pu , Tao Zhang
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引用次数: 7

Abstract

Agricultural waste is rich in organic matter and an important secondary source of phosphorus, which can be converted into valuable products through various technologies. Composting is an effective way to treat agricultural waste and further produce organic fertilizer, achieving waste minimization and stabilization. This paper reviews the current situation of agricultural waste pollution and composting technology, introduces the parameters that influence of the composting process and the optimal conditions, and presents the indicators for evaluating the decay of compost products and the evaluation criteria as well. In the composting process, small-molecule organic acids produced by the degradation of easily degradable organic matter such as sugars and lipids and various enzymes produced by microorganisms (phytase, phosphatase, etc.) can mineralize organic phosphorus such as phytate and phospholipids, promote phosphorus activation and provide phosphorus sources for microorganisms, so the conversion of organic matter and phosphorus is related to the fertilizer effect of composted products. Therefore, the clarification of the characteristics of organic matter and phosphorus transformation in the composting process is an important prerequisite for the resource utilization of agricultural organic waste. This paper provides theoretical support for the sustainable utilization of agricultural organic waste resources.

Abstract Image

农业有机废弃物堆肥过程中有机质和磷的转化特征:研究动向
农业废弃物富含有机物,是磷的重要二次来源,可以通过各种技术转化为有价值的产品。堆肥是处理农业废弃物并进一步产生有机肥的有效途径,实现废弃物减量化和稳定化。本文综述了农业废弃物污染和堆肥技术的现状,介绍了影响堆肥过程的参数和最佳条件,提出了评价堆肥产品腐烂的指标和评价标准。在堆肥过程中,易降解的糖类、脂类等有机物和微生物产生的各种酶(植酸酶、磷酸酶等)降解产生的小分子有机酸能矿化植酸、磷脂等有机磷,促进磷的活化,为微生物提供磷源,因此有机质、磷的转化关系到堆肥产物的肥效。因此,弄清堆肥过程中有机质和磷的转化特征是农业有机废弃物资源化利用的重要前提。本文为农业有机废弃物资源的可持续利用提供了理论支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials Science for Energy Technologies
Materials Science for Energy Technologies Materials Science-Materials Science (miscellaneous)
CiteScore
16.50
自引率
0.00%
发文量
41
审稿时长
39 days
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