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基于非饱和土理论的生物聚合物处理土壤综述

A Review on Soils Treated with Biopolymers Based on Unsaturated Soil Theory.

作者信息

Zhang Junran, Liu Jiahao

机构信息

Henan Province Key Laboratory of Geomechanics and Structural Engineering, North China University of Water Resources and Electric Power, Zhengzhou 450046, China.

出版信息

Polymers (Basel). 2023 Nov 16;15(22):4431. doi: 10.3390/polym15224431.

Abstract

Adding different materials to soil can improve its engineering properties, but traditional materials such as cement, lime, fly ash, etc., have caused pollution to the environment. Recently, biopolymers have shown many advantages, such as economy and environmental protection, which make them applicable to geotechnical engineering. This study summarizes the effects of biopolymers on soil's engineering properties and the main directions of current research. Firstly, the advantages and disadvantages of a variety of widely used biopolymer materials and their effects on the specific engineering characteristics of soil (i.e., water retention characteristics, strength characteristics, permeability characteristics, microstructure) are introduced, as well as the source, viscosity, pH, and cost of these biopolymers. Then, based on the theory of unsaturated soil, the current research progress on the water retention characteristics of improved soil is summarized. The key factors affecting the strength of biopolymer-treated soil are introduced. Due to the actual environmental conditions, such as rainfall, the permeability and durability of biopolymer-treated soil are also worthy of attention. In summary, it is necessary to study the variation laws of the engineering properties of biopolymer-treated soil in the full suction range, and to predict such laws reasonably. The relevant results are conducive to the safer and more scientific application of biopolymers in geotechnical engineering practice.

摘要

向土壤中添加不同材料可以改善其工程性质,但水泥、石灰、粉煤灰等传统材料对环境造成了污染。近年来,生物聚合物展现出诸多优势,如经济环保,这使其适用于岩土工程。本研究总结了生物聚合物对土壤工程性质的影响以及当前的主要研究方向。首先,介绍了多种广泛使用的生物聚合物材料的优缺点及其对土壤具体工程特性(即保水特性、强度特性、渗透特性、微观结构)的影响,以及这些生物聚合物的来源、粘度、pH值和成本。然后,基于非饱和土理论,总结了改良土壤保水特性的当前研究进展。介绍了影响生物聚合物处理土壤强度的关键因素。由于降雨等实际环境条件,生物聚合物处理土壤的渗透性和耐久性也值得关注。综上所述,有必要研究生物聚合物处理土壤在全吸力范围内工程性质的变化规律,并合理预测这些规律。相关结果有利于生物聚合物在岩土工程实践中更安全、更科学地应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c71f/10674859/db90245a4869/polymers-15-04431-g001.jpg

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