注浆流量对微生物矿化封堵裂隙降渗及沉淀分布特征的影响
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作者:
作者单位:

1.甘肃省科学院 地质自然灾害防治研究所,兰州 730000;2.中国地质大学(北京) 工程技术学院,北京 100083;3.河南大学 建筑工程学院,河南 开封 475004;4.兰州大学 资源环境学院,兰州 730000

作者简介:

刘乾灵(1996- ),男,博士,主要从事微生物岩土工程研究,E-mail:1522246297@qq.com。
LIU Qianling (1996- ), PhD, main research interest: biogeotechnical engineering, E-mail: 1522246297@qq.com.

通讯作者:

张彬(通信作者),男,教授,博士生导师,E-mail:sc_zhb@cugb.edu.cn。

中图分类号:

TU472.9

基金项目:

甘肃省科技重大专项(22ZD6FA042);甘肃省科学院引进人才科研启动经费(2025QD-25);国有资本经营预算支持省属企业科研项目(2024GZ033)


Effects of grouting flow rate on seepage reduction and precipitation distribution characteristics in microbially mediated fracture mineralization sealing
Author:
Affiliation:

1.Institute of Geological Natural Disaster Prevention and Control, Gansu Academy of Sciences, Lanzhou 730000, P. R. China;2.School of Engineering & Technology, China University of Geosciences (Beijing), Beijing 100083, P. R. China;3.School of Civil Engineering and Architecture, Henan University, Kaifeng 475004, Henan, P. R. China;4.College of Earth and Environmental Sciences, Lanzhou University, Lanzhou 730000, P. R. China

Fund Project:

Gansu Province Science and Technology Major Project (No. 22ZD6FA042); Talent Introduction and Cultivation Program of Gansu Academy of Sciences (No. 2025QD-25); State Capital Operating Budget Supports Scientific Research Projects of Provincial-Level State-Owned Enterprises (No. 2024GZ033)

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    摘要:

    微生物诱导碳酸钙沉淀(MICP)技术在岩体微裂隙注浆封堵中展现出良好的应用潜力。然而,目前该技术仍面临沉淀分布不均的问题,局部沉淀堵塞不仅影响注浆过程的连续性,还会降低封堵效果的可靠性,甚至引发工程安全事故。基于自主设计的裂隙模型试验装置,研究注浆流量对微生物矿化封堵裂隙降渗及沉淀分布特征的影响。首先分析注浆流量对裂隙中菌液附着率的影响,然后对其进行注浆矿化封堵,测试其对裂隙封堵降渗效率的影响,最后通过三维扫描获取裂隙中的沉淀分布特征。结果表明:随着注浆流量增加,菌液滞留效率明显下降;注浆流量的变化会显著影响沉淀在裂隙中的分布特征,而沉淀空间分布差异会进一步导致裂隙渗透性下降过程呈现不同规律;当裂隙内浆液流速为4.708 mm/s时,可实现较高的浆液利用率和理想的封堵效果。

    Abstract:

    Microbially induced calcium carbonate precipitation (MICP) technique shows significant potential for grouting and sealing micro-fractures in rock. However, its application is currently challenged by uneven precipitate distribution, where localized clogging can disrupt grouting continuity, compromise sealing reliability, and even introduce engineering safety risks. This study investigated the effects of grouting flow rate on permeability reduction and precipitate distribution characteristics during MICP-based fracture sealing using a self-designed fracture model apparatus. The experimental sequence followed analyzing the influence of flow rate on bacterial attachment efficiency, implementing mineralization grouting for fracture sealing, monitoring the permeability reduction process, and characterizing precipitate distribution through 3D scanning. The results indicate that an increase in grouting flow rate leads to a significant reduction in bacterial retention efficiency. Variations in grouting flow rate markedly affect the distribution patterns of precipitates in the fractures, and differences in the spatial distribution of precipitates further cause variations in the permeability reduction process. A flow velocity of 4.708 mm/s was identified as optimal, achieving both high grout utilization efficiency and effective sealing performance.

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刘乾灵,张彬,周自强,陈豫津,石磊,汪霞.注浆流量对微生物矿化封堵裂隙降渗及沉淀分布特征的影响[J].土木与环境工程学报(中英文),2026,48(3):89-98. LIU Qianling, ZHANG Bin, ZHOU Ziqiang, CHEN Yujin, SHI Lei, WANG Xia. Effects of grouting flow rate on seepage reduction and precipitation distribution characteristics in microbially mediated fracture mineralization sealing[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(3):89-98.10.11835/j. issn.2096-6717.2025.127

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  • 收稿日期:2025-09-15
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  • 在线发布日期: 2026-06-10
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