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Multi-regime transport model for leaching behavior of heterogeneous porous materials

机译:异质多孔材料浸出行为的多区域输运模型

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摘要

Utilization of secondary materials in civil engineering applications (e.g. as substitutes for natural aggregates or binder constituents) requires assessment of the physical and environment properties of the product. Environmental assessment often necessitates evaluation of the potential for constituent release through leaching. Currently most leaching models used to estimate long-term field performance assume that the species of concern is uniformly dispersed in a homogeneous porous material. However, waste materials are often comprised of distinct components such as coarse or fine aggregates in a cement concrete or waste encapsulated in a stabilized matrix. The specific objectives of the research presented here were to (1) develop a one-dimensional, multi-regime transport model (i.e. MRT model) to describe the release of species from heterogeneous porous materials and, (2) evaluate simple limit cases using the model for species when release is not dependent on pH. Two different idealized model systems were considered: (1) a porous material contaminated with the species of interest and containing inert aggregates and, (2) a porous material containing the contaminant of interest only in the aggregates. The effect of three factors on constituent release were examined: (1) volume fraction of material occupied by the aggregates compared to a homogeneous porous material, (2) aggregate size and, (3) differences in mass transfer rates between the binder and the aggregates. Simulation results confirmed that assuming homogeneous materials to evaluate the release of contaminants from porous waste materials may result in erroneous long-term field performance assessment.
机译:在土木工程应用中使用次要材料(例如,作为天然骨料或粘合剂成分的替代品)需要评估产品的物理和环境特性。环境评估通常需要评估通过浸出释放成分的可能性。当前,大多数用于估算长期田间性能的浸出模型都假定所关注的物质均匀地分散在均匀的多孔材料中。但是,废料通常由不同的成分组成,例如水泥混凝土中的粗骨料或细骨料或封装在稳定基质中的废料。此处提出的研究的具体目标是(1)建立一维,多区域运输模型(即MRT模型)来描述物种从非均质多孔材料中的释放,(2)使用释放时的物种模型不依赖于pH。考虑了两种不同的理想模型系统:(1)被目标物质污染并含有惰性聚集体的多孔材料,(2)仅在聚集体中含有目标污染物的多孔材料。检查了三个因素对成分释放的影响:(1)与均匀多孔材料相比,聚集体所占材料的体积分数;(2)聚集体尺寸;(3)粘合剂与聚集体之间的传质速率差异。仿真结果证实,假设采用均质材料来评估多孔废物中污染物的释放情况,可能会导致长期的现场性能评估错误。

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