酶促碳酸盐沉淀-蛋壳粉提高膨胀土的保水性

Yunlong Liu , Yanyan Xia , Mudassir Mehmood , Lei Wang , Wen Nie , Yingao Zhao , Zhencai Luo
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引用次数: 0

摘要

酶诱导碳酸盐沉淀(EICP)作为改善土壤工程性质的一种有前景的方法得到了广泛的研究,而蛋壳粉(ESP)是一种有效填充土壤孔隙的农业废弃物。ESP为EICP过程提供了丰富的成核,进一步促进了碳酸钙的有效沉淀。本文研究了EICP和EICP+ESP改造前后膨胀土的土壤水分特征曲线(SWCC)、渗透系数和微观结构。进行了一系列室内试验,包括土壤水分特性试验、渗透性试验和扫描电镜(SEM)。结果表明,在天然膨胀土中添加EICP和EICP+ESP,使膨胀土的进气量、残余含水量和渗透系数逐渐下降,表明膨胀土的保水性增加,渗透性降低。此外,随着EICP和EICP+ESP的侵入,颗粒之间的接触变得更加平滑,土壤孔隙分布更加均匀。最终,天然膨胀土的保水能力得到增强。本研究强调了EICP和EICP+ESP作为稳定添加剂对膨胀土保水性的协同增效作用。此外,ESP的再利用为农业废弃物资源化利用和生物改良膨胀土提供了可持续的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil-water retention capacity of expansive soil improved through enzyme induced carbonate precipitation-eggshell powder
Enzyme Induced Carbonate Precipitation (EICP) has been extensively investigated as a promising approach to improve engineering properties of soil, while Eggshell Powder (ESP) is an agricultural waste that effectively fills soil pores. The ESP provides abundant nucleation at sites for the EICP process, further promoting the effective precipitation of calcium carbonate. The research presented in this paper investigated the Soil Water Characteristic Curves (SWCC), permeability coefficient, and microstructure of expansive soil before and after EICP and EICP+ESP modification. A series of laboratory experiments were conducted, including soil water characteristic tests, permeability tests and Scanning Electron Microscopy (SEM). The results proved that the addition of EICP and EICP+ESP into natural expansive soil resulted in a gradual decline in air entry value, residual water content, and permeability coefficient, indicating an increase in water retention capacity and a decrease in permeability. Furthermore, with the intrusion of EICP and EICP+ESP, the contact between particles becomes smoother, and the soil pores become more equally distributed. Ultimately, there was an enhancement in water retention capacity of the natural expansive soil. This study emphasizes the synergistic potential of combining EICP and EICP+ESP as stabilizing additives to enhance the water retention capacity of expansive soil. Moreover, the reuse of ESP provides a sustainable solution for the resource utilization of agricultural waste and the improvement of expansive soil using bio-inspired methods.
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