生物高聚物
材料科学
土壤稳定
胶凝的
扫描电子显微镜
多孔性
导水率
岩土工程
复合材料
水泥
土壤水分
环境科学
地质学
土壤科学
聚合物
作者
S. Anandha Kumar,Evangelin Ramani Sujatha
出处
期刊:Geomechanics and Engineering
[Techno-Press]
日期:2020-01-01
卷期号:21 (5): 413-422
被引量:11
标识
DOI:10.12989/gae.2020.21.5.413
摘要
The choice of eco-friendly materials for ground improvement is a necessary way forward for sustainable development. Adapting naturally available biopolymers will render the process of soil stabilization carbon neutral. An attempt has been made to use β-glucan a natural biopolymer for the stabilization of lean clay as a sustainable alternative with specific emphasis on comprehending the effect of confining stresses on lean clay through triaxial compression tests. A sequence of laboratory experiments was performed to examine the various physical and mechanical characteristics of β-glucan treated soil (BGTS). Micro-analysis through micrographs were used to understand the strengthening mechanism. Results of the study show that the deviatoric stress of 2% BGTS is 12 times higher than untreated soil (UTS). The micrographs from Scanning Electron Microscopy (SEM) and the results of the Nitrogen-based Brunauer Emmett Teller (N2-BET) analysis confirm the formation of new cementitious fibres and hydrogels within the soil matrix that tends to weld soil particles and reduce the pore spaces leading to an increase in strength. Hydraulic conductivity (HC) and compressibility reduced significantly with the biopolymer content and curing period. Results emphases that β-glucan is an efficient and sustainable alternative to the traditional stabilizers like cement, lime or bitumen.
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