Li Jiadong, Ding Yuanhe, Qin Jinyi, Zhu Chuanyong, Gong Liang
College of New Energy, China University of Petroleum (East China), Qingdao 266580, China.
Molecules. 2024 Sep 26;29(19):4581. doi: 10.3390/molecules29194581.
Nanoporous membranes offer significant advantages in direct contact membrane distillation applications due to their high flux and strong resistance to wetting. This study employs molecular dynamics simulations to explore the performance of membrane distillation in a single nanopore, mainly focusing on wetting behavior, liquid entry pressure, and membrane flux variations across different concentrations and types of salt solutions. The findings indicate that increasing the NaCl concentration enhances the wetting of membrane pores, thereby decreasing the entry pressure of the solution. However, at the same salt concentration, the differences in wetting and liquid entry pressure among various salts, including CaCl, KCl, NaCl, and LiCl, are minimal. The presence of hydrated ions significantly reduces membrane flux. As the concentration of NaCl solutions increases, the number of hydrated ions rises, thereby lowering the membrane flux of the salt solution. Furthermore, the type of salt has a pronounced effect on the structure of hydrated ions. Solutions with Ca and Li exhibit the smallest first-layer radius of hydrated ions. Under the same salt concentration, KCl solutions demonstrate the highest membrane distillation flux, while CaCl solutions show the lowest flux.
纳米多孔膜由于其高通量和强抗润湿性,在直接接触式膜蒸馏应用中具有显著优势。本研究采用分子动力学模拟来探究单个纳米孔中膜蒸馏的性能,主要关注润湿性、液体进入压力以及不同浓度和类型盐溶液下的膜通量变化。研究结果表明,增加氯化钠浓度会增强膜孔的润湿性,从而降低溶液的进入压力。然而,在相同盐浓度下,包括氯化钙、氯化钾、氯化钠和氯化锂在内的各种盐之间的润湿性和液体进入压力差异极小。水合离子的存在会显著降低膜通量。随着氯化钠溶液浓度的增加,水合离子数量增加,从而降低盐溶液的膜通量。此外,盐的类型对水合离子的结构有显著影响。含钙和锂的溶液表现出最小的水合离子第一层半径。在相同盐浓度下,氯化钾溶液的膜蒸馏通量最高,而氯化钙溶液的通量最低。