School of Civil Engineering and Architecture, Zhejiang Sci-Tech University, Hangzhou, 310018, China.
Environ Sci Pollut Res Int. 2022 Sep;29(45):67908-67923. doi: 10.1007/s11356-022-20618-y. Epub 2022 May 7.
The reinforcement strength characteristics of mechanically biologically treated (MBT) waste were studied by conducting consolidated undrained triaxial tests with MBT waste collected from the Hangzhou Tianziling landfill pilot project. In the tests, the effects of the reinforcement material used (geomembrane, geotextile, and geogrid) and the number of reinforcement layers used (one, two, and three layers) were assessed. The results showed the following: (1) even through the axial strain increases up to 25%, the deviator stress of MBT waste could not reach a well-defined peak; (2) the reinforcement effect is related to the type of reinforcement material, with geogrid exhibiting the best reinforcement effect and geomembrane the worst; (3) the strength ratio of reinforced MBT waste is related to the confining pressure and the number of reinforcement layers, with a greater strength ratio in the MBT waste attained with a lower confining pressure in a logarithmic relationship and a greater strength ratio in the MBT waste attained with a greater number of reinforcement layers in a linear relationship; (4) the reinforced MBT waste shear strength parameter variation ranges for the cohesion (c), internal friction angle (φ), effective cohesion (c'), and effective internal friction angle (φ') are 3.92-13.69 kPa, 19°-29°, 10.10-27.94 kPa, and 24°-45°, respectively; and (5) the deviations in the test values from the apparent cohesion method and the semi-empirical formula method are less than 15%, indicating that these two theories of reinforced sand can also be applied to MBT waste. The results of this study are useful as a baseline reference for the stability assessment of MBT waste landfills.
采用杭州天子岭填埋场中采集的机械生物处理(MBT)废物进行固结不排水三轴试验,研究了MBT 废物的增强强度特性。在试验中,评估了所使用的增强材料(土工膜、土工织物和土工格栅)和使用的增强层数(一层、两层和三层)的影响。结果表明:(1)即使轴向应变增加到 25%,MBT 废物的偏应力也无法达到明确的峰值;(2)增强效果与增强材料的类型有关,其中土工格栅的增强效果最好,土工膜的增强效果最差;(3)增强 MBT 废物的强度比与围压和增强层数有关,在对数关系下,围压越低,增强 MBT 废物的强度比越大,在线性关系下,增强层数越多,增强 MBT 废物的强度比越大;(4)增强 MBT 废物的剪切强度参数变化范围为:内聚力(c)为 3.92-13.69 kPa,内摩擦角(φ)为 19°-29°,有效内聚力(c')为 10.10-27.94 kPa,有效内摩擦角(φ')为 24°-45°;(5)试验值与表观内聚力法和半经验公式法的偏差小于 15%,表明这两种加固砂理论也可应用于 MBT 废物。本研究结果可为 MBT 废物填埋场的稳定性评估提供基线参考。