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首页> 外文期刊>Advanced Sustainable Systems >Fabrication and Characterization of Composite Membranes for the Concentration of Lithium Containing Solutions Using Forward Osmosis
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Fabrication and Characterization of Composite Membranes for the Concentration of Lithium Containing Solutions Using Forward Osmosis

机译:复合材料的制备和表征膜对锂的浓度包含解决方案使用渗透

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摘要

In this study, an energy and highly time efficient, cost effective, and scalable forward osmosis (FO) composite polyvinylidene fluoride (PVDF) membrane is developed to concentrate lithium chloride recovered from naturally occurring geothermal brine resources. Dense thin robust defect-free Kynar-PVDF membranes are fabricated on porous PVDF hollow fiber supports. Various membrane fabrication parameters such as membrane thickness, coating solution concentration, cross-linker concentration, and curing temperature are studied to develop a defect-free dense membrane. Advanced characterization tools such as FIB-SEM, Raman, FTIR spectroscopy, and XRD are used to study the surface and cross-sectional morphology, chemistry of crosslinking, crystallinity and chemical structure of the dense PVDF membrane. FO is utilized to concentrate LiCl in the solution from 36 to 175 g L-1 with an average water transfer rate of 0.450 L m(-2) h(-1)(LMH) at 85 degrees C. Furthermore, the membrane showed stable performance for more than 550 h while maintaining the purity of the concentrated lithium chloride solution of >99.99 wt%. The results suggest that the FO-based technology is an innovative, time and energy efficient approach compared to the conventional technologies for concentration of battery grade LiCl for application in lithium ion batteries and other clean energy technologies.
机译:在这项研究中,一个能量和高度效率、成本效益和可伸缩的渗透复合聚偏二氟乙烯(FO)(PVDF)膜是集中发展氯化锂从自然中恢复过来发生地热卤水资源。健壮的没有缺陷Kynar-PVDF膜制造多孔PVDF中空纤维支持。各种膜制造等参数膜厚度、涂层解决方案浓度、交联剂浓度和固化温度进行了研究开发没有缺陷致密膜。拉曼表征工具,如FIB-SEM,红外光谱和x射线衍射研究使用表面和横截面形态、化学交联,结晶度和化学密集的PVDF膜的结构。利用集中氯化锂溶液中36 - 175 g l - 1平均水转移率的0.450 L m h (2) (1) (LMH)在85摄氏度。此外,膜显示稳定超过550 h,同时保持性能的纯洁性集中氯化锂解决> 99.99 wt %。FO-based技术是一个创新的、时间和节能方法相比传统技术的浓度在锂离子电池级氯化锂的应用电池和其他清洁能源技术。

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