Preparation of hollow fiber nanofiltration membranes with intensified charge density for Li+/Mg2+ separation from brines with high Mg2+/Li+ ratios

纳滤 固定费用 材料科学 纤维 化学 分析化学(期刊) 色谱法 化学工程 复合材料 化学物理 生物化学 工程类
作者
Le Shi,Li Ding,Sihua Liu,Haifu Gao,Jingguo She,Jianhua Zhang,Xiaolong Lu,Chunrui Wu
出处
期刊:Journal of Membrane Science [Elsevier BV]
卷期号:727: 124091-124091 被引量:7
标识
DOI:10.1016/j.memsci.2025.124091
摘要

To achieve efficient separation of Li + /Mg 2+ , nanofiltration membranes (NFMs) with intensified positive charge density were fabricated by surface grafting of guanazole (GAZ) on the surface of piperazine (PIP)/trimesoyl chloride (TMC) NFMs. GAZ is rich in amino groups with smaller molecular size, could contact and react more sufficiently with reaction sites on membrane surface, and give less potential blockage of surface pores, compared to traditional surface grafting molecules. The influence of the chargeability and pore size of pristine PIP/TMC NFMs and surface grafting reaction on the structure and performance of GAZ grafted NFMs was investigated. Simulated brine with Mg 2+ /Li + ratio of 150 was utilized to evaluate the feasibility of GAZ grafted NFMs in treating salt-lake brine with high Mg 2+ /Li + ratios. The results showed that the positive charge density on the NFMs surface was improved and the percentage of larger pores was reduced with the successful grafting of GAZ. The optimal GAZ grafted NFMs exhibited higher MgCl 2 rejection (94.2 %) than that of PIP/TMC NFMs (64.2 %) and maintained a stable pure water permeance. It was worth noting that the Li + /Mg 2+ separation factor for simulated brine of 2000 mg L −1 (Mg 2+ /Li + ratio of 150) reached 25.7, which was potentially applicable for treating salt-lake brine with high Mg 2+ /Li + ratios. • Nanofiltration membranes for Li + /Mg 2+ separation were fabricated by grafting guanazole on the surface. • The positive charge density was intensified, and the percentage of large pores was reduced. • Li + /Mg 2+ separation factor was improved to 25.7 with Mg 2+ /Li + mass ratio of 150.
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