MICP与优选植物协同加固热带土坡的力学及抗渗性能试验研究
CSTR:
作者:
作者单位:

1.海南大学 土木建筑工程学院,海口 570228;2.海南省水利电力集团有限公司,海口 570100

作者简介:

苏永辉(1999- ),男,主要从事微生物岩土研究,E-mail:s741840372@163.com。
SU Yonghui (1999- ), main research interest: microbial geotechnical engineering, E-mail: s741840372@163.com.

通讯作者:

张友良(通信作者),男,教授,博士生导师,E-mail:zhangyouliang@hainanu.edu.cn。

中图分类号:

TU472.9

基金项目:

海南省重点研发计划(ZDYF2025SHFZ032)


Mechanical and anti-seepage properties of tropical soil slopes reinforced synergistically by MICP and selected plants
Author:
Affiliation:

1.School of Civil Engineering and Architecture, Hainan University, Haikou 570228, P. R. China;2.Hainan Provincial Water Conservancy and Hydropower Group Co., Ltd., Haikou 570100, P. R. China

Fund Project:

Hainan Provincial Key Research and Development Program (No. ZDYF2025SHFZ032)

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    摘要:

    为提升热带土坡稳定性、解决单一加固技术缺陷并发展绿色低碳加固技术,探究微生物诱导碳酸钙沉淀(MICP)与优选植物协同加固低液限黏土的可行性,选取3种典型热带植物,通过模拟热带地区光照、温度环境及MICP加固后的土壤工况,筛选出适应性最优的地毯草,确定其适宜生长的胶结液浓度范围为0.2~0.6 mol/L;开展直剪、无侧限抗压、渗透试验,结合SEM、EDS、XRD微观分析,系统评估协同加固的宏观性能与作用机理。结果表明:经MICP-植物协同处理后,土体黏聚力、内摩擦角和无侧限抗压强度分别较未加固组提高了145.9%、100.4%和161.8%,渗透系数降至6.81×10-8 m/s,抗渗性能提升约两个数量级;微观分析表明,MICP生成的碳酸钙与植物根系形成“胶结-加筋”复合结构,既填充了土体孔隙,又强化了根-土界面锚固效应;MICP与植物的协同作用不仅显著提升了热带低液限黏土的力学性能,又大幅度增强了其抗渗性能,有效缓解了热带暴雨条件下因降雨入渗与冲刷引发的边坡失稳问题。

    Abstract:

    To enhance the stability of tropical soil slopes, avoid the limitations of single reinforcement techniques, and develop green, low-carbon reinforcement techniques, this study investigates the feasibility of synergistically reinforcing low-liquid-limit clay using microbial induced calcium carbonate precipitation (MICP) and selected plants. Three typical tropical plants were selected, and carpet grass was identified as the most adaptable through simulations of tropical light, temperature, and post-MICP soil conditions, with its suitable cementation solution concentration range determined to be 0.2-0.6 mol/L. Direct shear, unconfined compression strength (UCS), and permeability tests were subsequently conducted, combined with SEM, EDS, and XRD microanalyses, to systematically evaluate the macroscopic properties and underlying mechanisms of the synergistic reinforcement. The results indicate that after the MICP-plant synergistic treatment, the soil’s cohesion, internal friction angle, and UCS increased by 145.9%, 100.4%, and 161.8%, respectively, compared to the untreated group, while the permeability coefficient decreased to 6.81×10-? m/s, representing an improvement in anti-seepage performance by approximately two orders of magnitude. Microscopic analysis reveals that the calcium carbonate precipitated by MICP and the plant roots formed a “cementation-reinforcement” composite structure, which not only filled soil pores but also enhanced the anchorage effect at the root-soil interface. The synergistic effect of MICP and plants not only significantly enhanced the mechanical properties of tropical low-liquid-limit clay but also substantially improved its anti-seepage performance, effectively mitigating slope instability caused by rainfall infiltration and erosion under tropical storm conditions.

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苏永辉,崔洁,王浪,徐子堃,张友良.MICP与优选植物协同加固热带土坡的力学及抗渗性能试验研究[J].土木与环境工程学报(中英文),2026,48(3):79-88. SU Yonghui, CUI Jie, WANG Lang, XU Zikun, ZHANG Youliang. Mechanical and anti-seepage properties of tropical soil slopes reinforced synergistically by MICP and selected plants[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(3):79-88.10.11835/j. issn.2096-6717.2026.003

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  • 收稿日期:2025-10-23
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  • 在线发布日期: 2026-06-10
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