EICP改良膨胀土的物理力学性质试验研究
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作者:
作者单位:

1.河南大学;2.河南大学 土木建筑学院;3.中国第五冶金建设有限公司

基金项目:

河南省高等学校重点科研项目(18A580002);开封市科技发展计划项目(1801004)


Experimental study on physical and mechanical properties of expansive soil improved by EICP
Author:
Affiliation:

1.Henan University;2.School of Civil Engineering and Architecture,Henan University;3.China Wuye Group

Fund Project:

Key Scientific Research Projects of Universities in Henan Province(18A580002);Kaifeng Science and Technology Development Plan Project(1801004)

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    摘要:

    为了探究脲酶诱导碳酸钙沉淀(EICP)技术改良弱膨胀土物理力学特性,试验利用大豆脲酶,开展了EICP技术处理弱膨胀土的膨胀特性和力学特性试验。通过EICP多因素配比正交试验研究了脲酶浓度、初始Ca2+浓度、酶胶比、尿钙比、养护时间对膨胀土碳酸钙生成率、自由膨胀率的影响及其变化规律,并确定了EICP反应液最佳配比。在此基础上,采用不同掺量EICP反应液改良膨胀土,通过无荷载膨胀率试验、无侧限抗压强度试验以及三轴压缩试验测试改良效果。结果表明:EICP反应液掺量为20%时抑制膨胀土膨胀性效果最好,且此时土体力学强度和碳酸钙生成率最高。大豆脲酶诱导产生的沉淀物为方解石型碳酸钙,附着在土颗粒表面,既填充了土颗粒孔隙,也胶结了土体骨架颗粒,阻碍土体与水分接触,提高土体密实性和黏结强度,最终改善了膨胀土膨胀性和力学性能。

    Abstract:

    In order to explore the physical and mechanical properties of weak expansive soil improved by urease induced calcium carbonate precipitation (EICP) technology, the expansion characteristics and mechanical properties of weak expansive soil treated by EICP technology were tested by soybean urease. The effects of urease concentration, initial Ca2+ concentration, enzyme-binder ratio, urine-calcium ratio and curing time on the formation rate of calcium carbonate and free expansion rate of expansive soil were studied by orthogonal test of EICP multi-factor ratio, and the optimum ratio of EICP reaction solution was determined. On this basis, the expansive soil was improved by different dosages of EICP reaction liquid, and the improvement effect was tested by loadless expansion rate test, unconfined compressive strength test and triaxial compression test. The results show that when the content of EICP reaction solution is 20%, the effect of inhibiting the expansion of expansive soil is the best, and the mechanical strength and calcium carbonate formation rate of soil are the highest. The precipitate induced by soybean urease is calcite calcium carbonate, which is attached to the surface of soil particles. It not only fills the pores of soil particles, but also cements the skeleton particles of soil, hinders the contact between soil and water, improves the compactness and bonding strength of soil, and finally improves the expansibility and mechanical properties of expansive soil.

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  • 收稿日期:2023-07-03
  • 最后修改日期:2023-10-23
  • 录用日期:2023-11-20
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