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Review of chemical stabilizing agents for improving the physical and mechanical properties of loess

机译:述评化学稳定剂,用于改善黄土的物理和力学性能

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摘要

Due to the special soil-forming environment and process, grain-size distribution, and mineral composition, loess has some poor engineering properties, such as high compressibility, strong water sensitivity, and severe collapsibility. These poor properties lead to frequent occurrence of geological disasters and engineering problems in loess area, so loess is often strengthened in engineering projects. Compared with the traditional methods, the use of stabilizing agents has the advantages of saving time, reducing cost, and increasing efficiency. Therefore, more and more attention has been paid to the research on soil stabilizing agents. In this review, the non-traditional stabilizing agents which can effectively improve the physical and mechanical properties of loess are summarized, including nanomaterials, industrial waste residues, water-hardening inorganic materials, polymer, ion stabilizing agents, and so on. The composition, mechanism, effect, and application of each stabilizing agent are introduced. The mechanisms of strengthening mainly include filling, cementation, ion exchange, and wrapping. One or several of these mechanisms work together when loess is strengthened with any stabilizing agent. Based on this review, it is recognized that it is still meaningful to find eco-friendly and cost-effective loess stabilizing agents, and the focuses are now still on interpretation of the mechanism of each stabilizing agent, as well as determination of the physical and mechanical properties of strengthened loess. Attention should be paid to the degradation in the mechanical properties of strengthened loess and the technical innovation in application, as well as to solving the problems related to practical application of these stabilizing agents.
机译:由于特殊的土壤成型环境和工艺,粒度分布和矿物成分,黄土有一些差的工程性能,如高压缩性,水敏感性强,脾气暴躁。这些差的性质导致黄土地区的地质灾害和工程问题频繁发生,因此在工程项目中经常加强黄土。与传统方法相比,稳定剂的使用具有节省时间,降低成本和提高效率的优点。因此,越来越多地关注土壤稳定剂的研究。在该评论中,总结了能够有效改善黄土的物理和力学性能的非传统稳定剂,包括纳米材料,工业废物残留物,水硬化无机材料,聚合物,离子稳定剂等。引入了各稳定剂的组成,机构,效果和应用。加强机制主要包括填充,胶结,离子交换和包装。当黄土加强任何稳定剂时,这些机制中的一个或几种机制一起工作。基于本综述,认识到寻找环保且经济高效的黄土稳定剂仍然有意义,目前侧重于每个稳定剂的机制,以及确定物理和物理和确定的焦点加强黄土的力学性能。应注意加强黄土力学性能和应用中的技术创新的劣化,以及解决这些稳定剂的实际应用相关的问题。

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