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密歇根州单填式垃圾填埋场城市固体废物焚烧灰的岩土特性。

Geotechnical characterization of a Municipal Solid Waste Incineration Ash from a Michigan monofill.

机构信息

Department of Civil and Environmental Engineering, University of Michigan, MI, USA.

出版信息

Waste Manag. 2013 Jun;33(6):1442-50. doi: 10.1016/j.wasman.2013.02.009. Epub 2013 Mar 22.

Abstract

A field and laboratory geotechnical characterization study of a Municipal Solid Waste Incineration Ash disposed of at the Carleton Farms monofill in Michigan was performed. Field characterization consisted of field observations, collection of four bulk samples and performance of shear wave velocity measurements at two locations. Laboratory characterization consisted of basic geotechnical characterization, i.e., grain size distribution, Atterberg limits, specific gravity tests, compaction tests as well as moisture and organic content assessment followed by direct shear and triaxial shear testing. The test results of this investigation are compared to results in the literature. The grain size distribution of the samples was found to be very similar and consistent with the grain size distribution data available in the literature, but the compaction characteristics were found to vary significantly. Specific gravities were also lower than specific gravities of silicic soils. Shear strengths were higher than typically reported for sandy soils, even for MSWI ash specimens at a loose state. Strain rate was not found to impact the shear resistance. Significant differences in triaxial shear were observed between a dry and a saturated specimen not only in terms of peak shear resistance, but also in terms of stress-strain response. In situ shear wave velocities ranged from 500 to 800 m/s at a depth of about 8m, to 1100-1200 m/s at a depth of 50 m. These high shear wave velocities are consistent with field observations indicating the formation of cemented blocks of ash with time, but this "ageing" process in MSWI ash is still not well understood and additional research is needed. An improved understanding of the long-term behavior of MSWI ash, including the effects of moisture and ash chemical composition on the ageing process, as well as the leaching characteristics of the material, may promote unbound utilization of the ash in civil infrastructure.

摘要

对密歇根州卡勒顿农场单填处置的城市固体废物焚烧灰进行了现场和实验室岩土特性研究。现场特性描述包括现场观察、四个散装样品的采集以及在两个位置进行剪切波速度测量。实验室特性描述包括基本岩土特性,即粒度分布、界限含水量、比重测试、压实测试以及水分和有机含量评估,随后进行直接剪切和三轴剪切测试。本研究的测试结果与文献中的结果进行了比较。发现样品的粒度分布非常相似,与文献中可用的粒度分布数据一致,但压实特性差异显著。比重也低于硅质土壤的比重。剪切强度高于通常报道的砂土,即使对于松散状态下的 MSWI 灰样也是如此。应变率未发现对剪切阻力有影响。在干燥和饱和试样之间观察到三轴剪切的显著差异,不仅在峰值剪切阻力方面,而且在应力-应变响应方面。在大约 8m 的深度处,原位剪切波速度范围为 500 至 800m/s,在 50m 的深度处为 1100 至 1200m/s。这些高剪切波速度与现场观察结果一致,表明随着时间的推移形成了灰渣胶结块,但 MSWI 灰渣的这种“老化”过程仍未得到很好的理解,需要进一步研究。对 MSWI 灰渣的长期行为有了更好的理解,包括水分和灰渣化学成分对老化过程的影响以及材料的浸出特性,可能会促进在土木工程基础设施中无约束地利用灰渣。

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