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短期渗滤液回灌作业下城市固体废弃物的压缩性和抗剪强度

Compressibility and shear strength of municipal solid waste under short-term leachate recirculation operations.

作者信息

Reddy Krishna R, Gangathulasi Janardhanan, Parakalla Naveen S, Hettiarachchi Hiroshan, Bogner Jean E, Lagier Thomas

机构信息

Department of Civil and Materials Engineering, University of Illinois at Chicago, Chicago, IL 60607, USA.

出版信息

Waste Manag Res. 2009 Sep;27(6):578-87. doi: 10.1177/0734242X09103825. Epub 2009 May 7.

Abstract

This paper describes a comprehensive laboratory study performed to investigate the compressibility and shear strength properties of 1.5-year-old municipal solid waste (MSW) exhumed from a landfill cell where low amounts of leachate were recirculated. The study results are compared with results from a previous study on fresh MSW collected from the same landfill and data from previous studies with known MSW age to assess the variation in properties due to degradation. Laboratory testing was conducted on shredded landfilled and fresh MSW that consisted of similar particle-size distribution, with maximum particle size less than 40 mm and approximately 80% of the waste consisting of particles ranging from 10 to 20 mm. Standard Proctor, compressibility, direct shear, and triaxial consolidated undrained (CU) shear tests were conducted in general accordance with the American Society of Testing and Materials Standard Procedures. These tests were conducted with samples at an in-situ moisture content of 44% (dry weight basis) as well as elevated moisture contents of 60, 80 and 100% (dry weight basis). Standard Proctor compaction tests yielded a maximum dry density of 600 kg/m(3) at 77% optimum moisture content for landfilled MSW compared to the 420 kg/m(3) maximum dry density at 70% optimum moisture content for fresh MSW. Compression ratio values for landfilled MSW varied in a close range of 0.19-0.24 with a slight increasing trend with increase in moisture content; however, for fresh waste they were in the close range of 0.24-0.33 with no definitive correlation with moisture content. Based on direct shear tests, drained cohesion and friction angle were varied in the range of 12-64 kPa and 31-35 degrees for landfilled MSW and 31-64 kPa and 26-30 degrees for fresh MSW. Neither cohesion nor friction angle demonstrated any correlation with the moisture content. Based on triaxial CU tests, the average total strength parameters (TSP) were found to be 39 kPa and 12 degrees for landfilled MSW and 32 kPa and 12 degrees for fresh MSW, while effective strength parameters (ESP) were 34 kPa and 23 degrees for landfilled MSW and 32 kPa and 16 degrees for fresh MSW. This study was limited to small-scale laboratory testing using MSW samples with the specimen size relative to the maximum particle size in the range of 1.6 to 2.6; therefore, large-scale laboratory and field studies are recommended to systematically assess the influence of composition, particle size distribution and specimen size on the geotechnical properties of MSW.

摘要

本文描述了一项全面的实验室研究,该研究旨在调查从一个渗滤液少量循环的垃圾填埋单元中挖掘出的1.5年的城市固体废弃物(MSW)的压缩性和抗剪强度特性。将研究结果与之前对从同一垃圾填埋场收集的新鲜MSW的研究结果以及之前对已知MSW年限的研究数据进行比较,以评估由于降解导致的性质变化。对切碎的填埋MSW和新鲜MSW进行了实验室测试,它们具有相似的粒度分布,最大粒径小于40毫米,约80%的废弃物由粒径在10至20毫米之间的颗粒组成。标准普氏击实试验、压缩性试验、直剪试验和三轴固结不排水(CU)剪切试验总体上按照美国材料与试验协会标准程序进行。这些试验对原位含水量为44%(干重基准)以及含水量分别提高到60%、80%和100%(干重基准)的样品进行。标准普氏击实试验得出,填埋MSW在最佳含水量77%时的最大干密度为600千克/立方米,而新鲜MSW在最佳含水量70%时的最大干密度为420千克/立方米。填埋MSW的压缩比数值在0.19 - 0.24的相近范围内变化,且随着含水量增加有轻微上升趋势;然而,新鲜废弃物的压缩比数值在0.24 - 0.33的相近范围内,与含水量没有明确的相关性。基于直剪试验,填埋MSW的排水黏聚力和摩擦角分别在12 - 64千帕和31 - 35度范围内变化,新鲜MSW的排水黏聚力和摩擦角分别在31 - 64千帕和26 - 30度范围内变化。黏聚力和摩擦角均未显示出与含水量有任何相关性。基于三轴CU试验,发现填埋MSW的平均总强度参数(TSP)为39千帕和12度,新鲜MSW的平均总强度参数为32千帕和12度,而填埋MSW的有效强度参数(ESP)为34千帕和23度,新鲜MSW的有效强度参数为32千帕和16度。本研究仅限于使用MSW样品进行的小规模实验室测试,样品尺寸与最大粒径的比值在1.6至2.6范围内;因此,建议进行大规模实验室和现场研究,以系统评估成分、粒度分布和样品尺寸对MSW岩土工程性质的影响。

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