城市生活垃圾气化制合成气

Q2 Engineering
Anotai Srimalanon, Pongsakorn Kachapongkun
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引用次数: 1

摘要

本研究旨在开发、测试气化技术对垃圾燃料环境污染的影响。研究了城市固体废物气化过程中燃烧产生的热传导,以处理固体废物并为社区生产能源。共有四种类型的固体废物,总量为5公斤(包括0.5公斤木炭和木柴、1.5公斤纸张、2.0公斤落叶、0.5公斤塑料和0.5公斤其他),平均湿度有两个测试范围:10-20%和50-55%。研究发现,所有废物都可以用不同的气体量转化为天然气生产。根据实验,水分含量为10-15%的干燥MSW产生的合成气成分(摩尔百分比)分别为1.9–2.4、1.8–3.2、56.5–60.2、3.4–4.6和1.2–1.6的H2、CO2、N2、O2和CH4。当从平均湿度为10-15%的MSW燃烧试验中获得当量比在0.2-0.34之间的燃料气成分时,不同当量比的MSW焚烧会产生不同量的合成气。此外,CH4的最佳用量和天然气的热值为0.28,合成气的最高生产效率(ηg)为33.46%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis Gas Production with Gasification Technology from Municipal Solid Waste
This study aims to develop, test performance, and evaluate the environmental pollution of garbage fuel with gasification technology. Heat conduction from municipal solid waste (MSW) burning from the gasification process was studied to dispose of solid waste and produce energy for communities. There were four types of solid waste in the total amount of 5 kg (including 0.5 kg of charcoal and firewood, 1.5 kg of paper, 2.0 kg of leaf litter, 0.5 kg of plastic, and 0.5 kg of others) with 2 tested ranges of average humidity: 10–20% and 50–55%. It was found that all waste could be converted for gas production with different gas amounts. From the experiment, dried MSW with 10–15% moisture content produced synthesis gas compositions (mole percent) that were H2, CO2, N2, O2, and CH4 at 1.9–2.4, 1.8–3.2, 56.5–60.2, 3.4–4.6, and 1.2–1.6, respectively. When fuel gas composition at the equivalent ratio between 0.2–0.34 was obtained from the MSW burning test with 10–15% average humidity, MSW burning in various equivalent ratios resulted in different amounts of synthesis gas. In addition, the optimal amounts of CH4 and the heating value of the gas were in the equivalent ratio of 0.28, and the highest production efficiency of synthetic gas (ηg) was 33.46%.
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来源期刊
Applied Science and Engineering Progress
Applied Science and Engineering Progress Engineering-Engineering (all)
CiteScore
4.70
自引率
0.00%
发文量
56
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