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初始温度和含水量对城市固体废物降解过程中发热的影响。

Effects of initial temperature and moisture content on heat generation during degradation of municipal solid waste.

机构信息

Key laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Hohai University, Nanjing 210024, China.

Fujian Branch, Central & Southern China Municipal Engineering Design and Research Institute Co, Ltd, Fuzhou 350001, China.

出版信息

Waste Manag. 2023 Dec 1;172:80-89. doi: 10.1016/j.wasman.2023.08.043. Epub 2023 Sep 16.

Abstract

Heat generation from degradation of organic matter in municipal solid waste (MSW) often leads to increased landfill temperature. However, it is difficult to measure environmental heat loss in laboratory and field tests; therefore, little research has been conducted to evaluate heat generation during waste degradation under different initial temperatures and moisture contents. In this study, tests were conducted to investigate the effects of initial temperature and moisture content on heat generation during waste degradation. A simple formula for calculating heat generation was proposed. Within 200 h, the waste temperature decreased by about 70%, and lower initial moisture contents were associated with greater temperature decreases. The smallest temperature decrease of 47% and the greatest heat generation occurred when the initial temperature was 40 °C. The initial moisture content increased from 30% to 60% and the heat generation increased from 5% to 36%. The heat generation per unit mass of organic matter during the aerobic and anaerobic stages were 19.44-23.77 and 0.27-0.50 MJ·kg, respectively, indicating that the proposed formula for calculation of heat generated from waste degradation was reasonable. The results presented herein provide theoretical support for the prediction of heat generation and the recycling of heat resources in MSW landfill sites.

摘要

有机物质在城市固体废物(MSW)中的降解会产生热量,这通常会导致垃圾填埋场温度升高。然而,在实验室和现场测试中很难测量环境热量损失,因此,很少有研究评估在不同初始温度和含水量下废物降解过程中的热量产生。在这项研究中,进行了测试以研究初始温度和含水量对废物降解过程中热量产生的影响。提出了一个用于计算热量产生的简单公式。在 200 小时内,废物温度下降了约 70%,初始含水量越低,温度下降越大。初始温度为 40°C 时,温度下降最小,为 47%,热量产生最大。初始含水量从 30%增加到 60%,热量产生从 5%增加到 36%。好氧和厌氧阶段每单位有机物质质量产生的热量分别为 19.44-23.77 和 0.27-0.50 MJ·kg,表明提出的废物降解产生热量的计算公式是合理的。本文的结果为预测 MSW 垃圾填埋场中热量产生和回收热量资源提供了理论支持。

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