Zeng Zhenming, Lu Yi, Wan Tong, Lin Shan, Nong Xingzhong, Sun Jiajun
School of Civil Engineering, Guangzhou University, Guangzhou 510623, China.
Guangzhou Metro Design & Research Institute Co., Ltd., Guangzhou 510010, China.
Materials (Basel). 2023 Aug 4;16(15):5468. doi: 10.3390/ma16155468.
The water retention curve (WRC) of a geosynthetic clay liner (GCL) is influenced by the presence of exchangeable cations in the leachate during changes in water content in a landfill construction. This research aims to investigate the impact of salinity on the WRC of GCL. To measure the WRC of GCL under different sodium chloride (NaCl) concentrations on the drying path, a chilled-mirror dew-point device capable of controlling the GCL's volume was employed. Additionally, the dry state microstructure of the GCL was examined using electron microscopy. The test outcomes indicate that GCL hydrated with higher salinity has greater suction at the same water content during drying. This influence can be attributed to changes in salinity and the precipitation of NaCl crystals within the bentonite when water evaporates, which in turn affects the bentonite's microstructure and leads to increased matric suction. By introducing the Fredlund and Xing model and parameter relationship, it is possible to predict the WRC of GCL under salinity effects after measuring the WRC under different salinity conditions on the drying path.
在垃圾填埋场建设中,当含水量发生变化时,土工合成粘土衬垫(GCL)的持水曲线(WRC)会受到渗滤液中可交换阳离子存在的影响。本研究旨在探究盐度对GCL的WRC的影响。为了在干燥过程中测量不同氯化钠(NaCl)浓度下GCL的WRC,采用了一种能够控制GCL体积的冷镜露点装置。此外,使用电子显微镜检查了GCL的干燥状态微观结构。测试结果表明,在干燥过程中,盐度较高时水化的GCL在相同含水量下具有更大的吸力。这种影响可归因于盐度的变化以及水分蒸发时NaCl晶体在膨润土中的沉淀,这反过来又影响了膨润土的微观结构并导致基质吸力增加。通过引入Fredlund和Xing模型及参数关系,在测量干燥过程中不同盐度条件下的WRC后,就有可能预测盐度影响下GCL的WRC。