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On the effect of MSW moisture content on meeting target recycling rates

机译:关于城市固体废弃物含水量对达到目标回收率的影响

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摘要

A mathematical model to calculate the recycle rates for packaging materials from the municipal solid wastes (MSW) built from the dry mass values that are obtained from the corresponding wet masses and their respective moisture contents is presented in this work. A possible universal methodology is also described to be used with the previous model so that reliable comparisons between indicators for different regions are feasible. Furthermore, this mathematical model demonstrates the effect of the moisture content of packaging materials on their recycling rates and constitutes a fundamental tool for operators and persons responsible for MSW management to define new policies and technical measures viewing the improvement of recycling rates. A theoretical study and the application of the model to the MEMSW of the Lisbon region shows that the moisture content of the mixed wastes plays a dominant role in the recycling rates of packaging materials such as paper, plastics and glass. Moreover, accounting for all relevant masses in the dry basis yields higher recycling rate values: increases of 32.8% for paper, 50% for plastics and 44.6% glass are observed.
机译:在这项工作中,提出了一个数学模型,该数学模型用于计算由城市固体废物(MSW)的包装材料的回收率,该数据是根据从相应的湿质量及其相应的水分含量获得的干质量值得出的。还描述了可能与先前模型一起使用的通用方法,以便针对不同区域的指标之间进行可靠的比较是可行的。此外,该数学模型证明了包装材料的水分含量对其回收率的影响,并构成了操作员和负责城市固体废弃物管理的人员制定新政策和技术措施以观察回收率提高的基本工具。对里斯本地区的MEMSW进行的理论研究和应用表明,混合废物的水分含量在纸,塑料和玻璃等包装材料的回收率中起着主导作用。此外,以干基计,所有相关质量的回收率值都更高:纸张增长了32.8%,塑料增长了50%,玻璃增长了44.6%。

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