Li Hongming, Lu Youqian, Zhang Hongri
Guangxi Transportation Science and Technology Group Co., Ltd, Nanning, China.
School of Civil Engineering, Chongqing University, Chongqing, China.
PLoS One. 2025 May 8;20(5):e0323021. doi: 10.1371/journal.pone.0323021. eCollection 2025.
The swelling characteristics and mechanisms of bentonite are significantly influenced by the chemical environment of the pore solution, making it essential to study its behavior under different pore solutions in various engineering applications. Taking magnesium-calcium-based bentonite (Mg/Ca-bentonite) as the research object, swelling tests with different concentrations of NaCl solution were carried out to study the effect of salt solution on the deformation characteristics of bentonite. The test results show that the soil expansion rate decreases from 43.7% to 37.1% with the increase of salt solution concentration. The swelling mechanism of bentonite under the influence of NaCl solution was explained from the aspects of lattice expansion theory, diffuse double layer (DDL) theory and comprehensive factors, scanning electron microscopy (SEM) and mercury intrusion porosimetry (MIP) test were introduced to further explain it from the microscopic aspect. With the increase in salt solution concentration, SEM results reveal that the soil pores become more compact and uniform. Correspondingly, the dual-peak structure observed in the MIP results transitions as the large-pore peak disappears, gradually forming a single peak within the small-pore range. Besides, the function of the swelling and time relationship curve of bentonite was fitted; the relationship model between swelling and solution concentration was established based on this, and the swelling of NaCl solution of different concentrations was simulated and verified, which provides a theoretical model basis for the practical application and numerical simulation of bentonite engineering.
膨润土的膨胀特性和机制受孔隙溶液化学环境的显著影响,因此在各种工程应用中研究其在不同孔隙溶液中的行为至关重要。以镁钙基膨润土(Mg/Ca-膨润土)为研究对象,进行了不同浓度NaCl溶液的膨胀试验,以研究盐溶液对膨润土变形特性的影响。试验结果表明,随着盐溶液浓度的增加,土的膨胀率从43.7%降至37.1%。从晶格膨胀理论、扩散双电层(DDL)理论和综合因素等方面解释了NaCl溶液作用下膨润土的膨胀机制,并引入扫描电子显微镜(SEM)和压汞法(MIP)试验从微观层面进一步解释。随着盐溶液浓度的增加,SEM结果显示土孔隙变得更加致密和均匀。相应地,MIP结果中观察到的双峰结构随着大孔隙峰的消失而转变,逐渐在小孔隙范围内形成单峰。此外,拟合了膨润土膨胀与时间关系曲线的函数;基于此建立了膨胀与溶液浓度的关系模型,并对不同浓度NaCl溶液的膨胀进行了模拟和验证,为膨润土工程的实际应用和数值模拟提供了理论模型依据。