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中国典型农村地区的人粪尿和食物垃圾:特性与共发酵。

Human Excreta and Food Waste of a Typical Rural Area in China: Characteristics and Co-Fermentation.

机构信息

State Key Laboratory of Environmental Aquatic Chemistry, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.

Water Pollution and Control Department, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Int J Environ Res Public Health. 2022 Apr 14;19(8):4731. doi: 10.3390/ijerph19084731.

Abstract

Human excreta (HE) and food waste (FW) are the primary contaminants in rural regions. Prior to treating these contaminants, mastering their properties is required. In this study, the characteristics of the HE leaving the body and FW leaving the kitchen to the subsequent respective fermentation were studied. Moreover, two kinds of co-fermentation processes for HE and FW were also investigated on the basis of mastering the properties. The results showed that, for a healthy adult, fresh feces, urine, and FW produced were about 163 g/cap/d (57.3 gCOD/cap/d), 1.6 L/cap/d (6.7 gN/cap/d), and 250 g/cap/d (35.0 gCOD/cap/d), respectively. In HE, about 75% of nitrogen and phosphorus were contained in urine. It takes at least three days for crushed FW discharged via water flushing to settle completely, and the COD removal efficiency after precipitation was around 75%. Mixing HE with FW after discharge, i.e., the initial unit of the process was 20% more efficient in fermentation than mixing after the respective pre-fermentation. This paper presents the characteristics of HE and FW and provides the optimized co-fermentation process, which provides technical support for the realization of environmental sanitation in rural areas.

摘要

人粪和食物垃圾(FW)是农村地区的主要污染物。在处理这些污染物之前,需要掌握它们的特性。本研究对人体排出的 HE 和厨房排出的 FW 随后进行发酵的特性进行了研究。此外,在掌握特性的基础上,还研究了两种 HE 和 FW 的共发酵工艺。结果表明,对于一个健康的成年人,新鲜粪便、尿液和 FW 的产生量分别约为 163 g/人/d(57.3 gCOD/人/d)、1.6 L/人/d(6.7 gN/人/d)和 250 g/人/d(35.0 gCOD/人/d)。在 HE 中,约 75%的氮和磷存在于尿液中。粉碎后的 FW 通过水冲排出后,至少需要三天才能完全沉淀,沉淀后的 COD 去除率约为 75%。FW 与 HE 混合后排出,即初始单元的工艺比各自预发酵后混合的工艺效率提高了 20%。本文介绍了 HE 和 FW 的特性,并提供了优化的共发酵工艺,为实现农村环境卫生提供了技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f155/9028711/81ca66b08c43/ijerph-19-04731-g001.jpg

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