Anti-seepage performance and underlying mechanism of carboxymethyl cellulose sodium-modified bentonite in hydraulic engineering applications

Author:

Zhu Mingshuan1,Li Shien2,Zhang Yixiong3

Affiliation:

1. Fujian Chuanzheng Communications College, Fuzhou, 350007, Fujian, China

2. Institute of Water Resources and Hydropower Engineering Technology, Fujian Institute of Water Resources and Hydropower Science, Fuzhou, 350001, Fujian, China

3. Sichuan Gaoyuan Zhihe Technology Co., Ltd., Chengdu, 610000, Sichuan, China

Abstract

Bentonite is widely utilized in hydraulic engineering projects. However, its performance may deteriorate under extreme environmental conditions. Hence, we aim to develop a sodium carboxymethyl cellulose (CMC)-modified bentonite and investigate its anti-seepage performance. The results showed that the 10% CMC-modified bentonite exhibited the best performance. Compared with unmodified bentonite, the expansion index of 10% CMC-modified bentonite significantly increased to 40 mL/2 g, indicating a high water absorption capacity and expansion property. Moreover, it showed a significant decrease in permeability coefficient (3.72×10−11 m/s) and an increase in porosity (1.90), indicating its excellent anti-seepage effect. Furthermore, under unconventional environmental conditions and long-term performance tests, the 10% CMC-modified bentonite shows improved stability compared to the unmodified bentonite. Therefore, it can be concluded that this study provides support for the utilization of CMC-modified bentonite in anti-seepage engineering and hydraulic engineering applications.

Publisher

American Scientific Publishers

Reference15 articles.

1. Study on the ecological restoration effect of bioengineering technology after water conservancy project construction;Ji;Basic and Clinical Pharmacology and Toxicology,2021

2. Deformation behaviour and failure criteria of plastic concretes under compression stresses;Wang;Magazine of Concrete Research,2021

3. SEM-EDX study of bentonite alteration under the influence of cement alkaline solutions;Gonzalez-Santamaria;Applied Clay Science,2021

4. Modification in the microstructure of sodium carboxymethylcellulose/polyvinyl alcohol polyblend films through the incorporation of nano3 for energy storage applications;Cyriac;International Journal of Energy Research,2022

5. Research on the comprehensive evaluation of the value of water conservancy heritage based on expert knowledge and public cognition: A case study of red flag canal;Wang;Water Policy,2022

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