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Drying methods for municipal solid waste quality improvement in the developed and developing countries: A review

机译:发达国家和发展中国家用于改善城市固体废物质量的干燥方法:回顾

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摘要

Nowadays, drying methods for municipal solid waste quality improvement have been adopted in the developed and developing countries to valorize wastes for a renewable energy source, reduce dependency on fossil fuel and keep safer disposal at landfills. Among them, biodrying, biostabilization, thermal drying and solar drying are the most common. Drying of municipal solid waste could offer several environmental and economic benefits. Therefore, this review highlighted the drying methods for municipal solid waste quality improvement around the world and compared them based on the reduction of moisture, weight and volume of municipal solid wastes against drying temperature and time by using statistical analysis. It was observed that the drying temperature of different drying methods accounted for 115 +/- 40 degrees C for thermal drying, 59 +/- 37 degrees C for solar drying, 55 +/- 15 degrees C for biodrying and 58 +/- 11 degrees C for biostabilization. Among the drying methods, thermal drying provided the shortest drying time. The moisture reduction, weight reduction, volume reduction and heating value increase of municipal solid waste could vary with drying temperature and time. Finally, the benefits and drawbacks of different drying methods were specified, and recommendations were made for the future efficient drying.
机译:如今,发达国家和发展中国家已经采用了用于改善城市固体废物质量的干燥方法,以使可再生能源的废物价值保持不变,减少对化石燃料的依赖,并在填埋场中保持更安全的处置。其中,生物干燥,生物稳定,热干燥和太阳能干燥是最常见的。干燥城市固体废物可提供多种环境和经济效益。因此,本综述着重介绍了用于改善全球城市固体废物质量的干燥方法,并通过统计分析将基于减少干燥温度和时间的城市固体废物的水分,重量和体积而得出的干燥方法进行了比较。观察到,不同干燥方法的干燥温度分别为热干燥为115 +/- 40摄氏度,日光干燥为59 +/- 37摄氏度,生物干燥为55 +/- 15摄氏度和58 +/- 11摄氏度。摄氏度进行生物稳定。在干燥方法中,热干燥提供了最短的干燥时间。城市固体废物的水分减少,重量减少,体积减少和热值增加会随干燥温度和时间而变化。最后,说明了不同干燥方法的优缺点,并提出了有关未来有效干燥的建议。

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