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Assessment and mechanism analysis of municipal solid waste incineration bottom ash as aggregate in cement stabilized macadam

机译:水泥稳定碎石中城市固体垃圾焚烧底灰骨料的评估及机理分析

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The objective of the paper is to assess the feasibility of using solid waste incineration (MSWI) bottom ash (BA) as cement-stabilized macadam (CSM) aggregate. CSM was prepared by replacing natural limestone aggregate with MSWI BA in different proportions (0%, 5%, 10%, 20%, and 30%). The physical properties, chemical properties, and micro-morphology of MSWI BA were studied to explore the mechanism of MSWI BA aggregate in CSM. The mechanical properties (unconfined compressive strength, cleavage strength, compressive resilience modulus), drying shrinkage, freezing resistance, and leaching behavior of CSM were tested. The results showed that MSWI BA had low density, low strength, high water absorption, high porosity, hydraulicity, and cementitious activity. Substitution of MSWI BA for natural limestone reduced the unconfined compressive strength, the cleavage strength, and the compression modulus of resilience of CSM, but these parameters still met the requirements of the specification. The CSM containing MSWI BA had higher cumulative water loss rate and smaller average dry shrinkage coefficient than traditional CSM. Adding 0-20% MSWI BA reduced the cumulative dry shrinkage strain of CSM. The residual strength ratio of CSM increased slightly at first and then decreased rapidly, and the CSM containing 0-30% MSWI BA met the freezing resistance requirements of semi-rigid base materials. The leaching concentration of heavy metals of CSM curing 7 days with 30% MSWI BA was still far below the limit of Chinese standard GB 5085.3. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文的目的是评估使用固体废物焚烧(MSWI)底灰(BA)作为水泥稳定碎石(CSM)骨料的可行性。通过用不同比例(0%,5%,10%,20%和30%)的MSWI BA代替天然石灰石骨料来制备CSM。研究了MSWI BA的物理性质,化学性质和微观形貌,以探索MSWI BA在CSM中的聚集机理。测试了CSM的机械性能(无侧限抗压强度,抗拉强度,抗压弹性模量),干燥收缩率,抗冻性和浸出行为。结果表明,MSWI BA具有低密度,低强度,高吸水率,高孔隙率,水硬性和胶凝活性。用MSWI BA代替天然石灰石可降低CSM的无侧限抗压强度,劈裂强度和压缩弹性模量,但这些参数仍满足规范要求。含有MSWI BA的CSM比传统的CSM具有更高的累积失水率和更小的平均干缩系数。添加0-20%的MSWI BA降低了CSM的累积干收缩应变。 CSM的残余强度比起初略有上升,然后迅速下降,并且含有0-30%MSWI BA的CSM满足了半刚性基材的耐冻性要求。用30%MSWI BA固化7天的CSM中重金属的浸出浓度仍远低于中国标准GB 5085.3的限值。 (C)2019 Elsevier Ltd.保留所有权利。

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