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评估粒度分级作为一种减少城市固体废物产生的堆肥中重金属、盐分和杂质的技术。

Assessment of a particle size fractionation as a technology for reducing heavy metal, salinity and impurities from compost produced by municipal solid waste.

作者信息

Sharifi Zahed, Renella Giancarlo

机构信息

Department of Soil Science, College of Agriculture, University of Kurdistan, Sanandaj, Iran.

Department of Agrifood Production and Environmental Sciences, University of Florence, Florence, Italy.

出版信息

Waste Manag. 2015 Apr;38:95-101. doi: 10.1016/j.wasman.2015.01.018. Epub 2015 Feb 3.

Abstract

A physical fractionation of a compost obtained by municipal solid wastes (MSW) was conducted by dry-sieving process, to quantify coarse impurities and assess the distribution of nutrients, heavy metals and salinity values in particle size fractions of 2, 1.2-2, 0.8-1.2, 0.4-0.8, 0.2-0.4, 0.1-0.2 and <0.1mm diameter. The whole unfractionated compost and all physical fractions were analyzed for the same chemical parameters. The results showed that the studied compost was of a low grade due to high salinity and heavy metal concentrations, and the presence of coarse impurities, mainly glass. The physical fractionation analysis showed that heavy metal and base cations concentrations, and salinity values significantly increased with decreasing of particle size, whereas macro nutrients such as C, N and P were more evenly distributed among the different particle size fractions. Overall, our results showed that the removal of selected particle size fractions <0.8mm and coarse impurities (e.g. glass impurity >2mm) could significantly improve the compost quality without reduce its fertilization potential. We concluded that particle size fractionation is a feasible and sustainable approach to improve composted MSW materials for their safe recycle in agriculture.

摘要

通过干筛法对城市固体废物(MSW)制成的堆肥进行物理分级,以量化粗杂质,并评估直径为2、1.2 - 2、0.8 - 1.2、0.4 - 0.8、0.2 - 0.4、0.1 - 0.2和<0.1mm的粒度级分中养分、重金属和盐分的分布。对整个未分级的堆肥以及所有物理分级进行相同化学参数的分析。结果表明,由于高盐分、高重金属浓度以及粗杂质(主要是玻璃)的存在,所研究的堆肥质量较低。物理分级分析表明,重金属和碱金属阳离子浓度以及盐分随着粒径减小而显著增加,而碳、氮和磷等大量养分在不同粒径级分中分布更为均匀。总体而言,我们的结果表明,去除<0.8mm的选定粒径级分和粗杂质(例如>2mm的玻璃杂质)可显著提高堆肥质量,而不降低其施肥潜力。我们得出结论,粒度分级是一种可行且可持续的方法,可改善城市固体废物堆肥材料,以便其在农业中安全回收利用。

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