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加速含钙质砂的生物矿化作用以增强其稳定性。

Accelerated Reinforcement of Calcareous sand via Biomineralization with Aluminum Ion Flocculant.

机构信息

College of Civil and Transportation Engineering, Hohai University, Nanjing, Jiangsu, China.

出版信息

Appl Biochem Biotechnol. 2023 Dec;195(12):7197-7213. doi: 10.1007/s12010-023-04429-6. Epub 2023 Mar 29.

Abstract

Microbially induced calcium carbonate precipitation (MICP) is an immensely growing technique that utilizes the metabolic pathways of bacteria to form calcite precipitation throughout the soil matrix, leading to improve geotechnical engineering properties. However, the excessive number of treatments limited the application of MICP for strengthening calcareous sand. To reduce the number of treatments and develop efficiencies, this paper investigates the optimized treatment protocol of adding aluminum ion flocculants to the cementing solution to accelerate the curing rate of the MICP and its effect. The results show that adding a certain concentration of AlCl to the cementing solution can resulted in a rapid increase in strength of the calcareous sand column. When 0.02 M aluminum chloride was added to the cementing solution, the unconfined compressive strength of the sand column reached 827 kPa after three treatments, and it reached 2 MPa after five treatments, while the control group needed to be treated 10 and 15 times, respectively, to reach equivalent strengths. In this paper, the unconfined compressive strength of the sand column formed using the proposed method was 27-40 times that of the control group at the same calcium carbonate content. The presented experimental approach can be used as a tool to design the treatment protocol for the engineering application of MICP-reinforced calcareous sand in practice.

摘要

微生物诱导碳酸钙沉淀(MICP)是一种日益发展的技术,利用细菌的代谢途径在土壤基质中形成方解石沉淀,从而改善岩土工程特性。然而,由于处理次数过多,限制了 MICP 技术在加固钙质砂中的应用。为了减少处理次数并提高效率,本文研究了在胶结溶液中添加铝离子絮凝剂以加速 MICP 固化速率及其效果的最佳处理方案。结果表明,在胶结溶液中添加一定浓度的 AlCl 可以使钙质砂柱的强度迅速增加。当在胶结溶液中添加 0.02 M 氯化铝时,经过三次处理后砂柱的无侧限抗压强度达到 827 kPa,经过五次处理后达到 2 MPa,而对照组分别需要处理 10 次和 15 次才能达到等效强度。在本文中,采用所提出的方法形成的砂柱的无侧限抗压强度在相同碳酸钙含量下是对照组的 27-40 倍。所提出的实验方法可以用作设计 MICP 加固钙质砂工程应用的处理方案的工具。

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