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用于高效节能海水淡化的低摩擦系数和高极限电流密度阳离子交换膜

Cation-Exchange Membrane with Low Frictional Coefficient and High Limiting Current Density for Energy-Efficient Water Desalination.

作者信息

Das Arindam K, Manohar Murli, Shahi Vinod K

机构信息

Electro-Membrane Processes Division and Academy of Scientific and Innovative Research, CSIR-Central Salt and Marine Chemicals Research Institute, Council of Scientific & Industrial Research, Gijubhai Badheka Marg, Bhavnagar 364002, Gujarat, India.

出版信息

ACS Omega. 2018 Aug 31;3(8):10331-10340. doi: 10.1021/acsomega.8b01403.

Abstract

A sulfonated poly(ether ether ketone) (SPEEK) and phosphorylated graphene oxide (PGO) composite of a cation-exchange membrane with low frictional coefficient and high limiting current density has been reported for water desalination by rapid electrodialysis. The incorporation of PGO in the membrane matrix showed a significant impact on the macroscopic properties, counterion frictional coefficient, and performance of the membrane. A well-optimized SPEEK/PGO-8 (8% PGO content, w/w) membrane showed improved conductivity (4.15 × 10 S cm) and permselectivity (87%), and excellent stabilities (thermal, mechanical, and chemical) because of cherished polymer-PGO (filler) interaction via H-bonding. The efficiency of the SPEEK/PGO-8 membrane was also evaluated for the desalination of brackish water near limiting current density ( ). Ion concentration polarization (ICP) was assessed by - curves, and below , water splitting or change in product water pH was ruled out. While above (10.5 mA cm), ICP was significant and could be finally tuned with applied current density for producing desalinated water with a desired pH. Furthermore, improved , high current efficiency (82.9%), and low energy consumption (7.9 kWh kg of the salt removed) of the SPEEK/PGO-8 membrane during electrodialysis provide a broad current window for efficient and rapid water desalination/purification.

摘要

一种具有低摩擦系数和高极限电流密度的阳离子交换膜的磺化聚醚醚酮(SPEEK)与磷酸化氧化石墨烯(PGO)复合材料已被报道用于快速电渗析法海水淡化。PGO掺入膜基质对膜的宏观性能、抗衡离子摩擦系数和性能产生了显著影响。一种经过优化的SPEEK/PGO - 8(PGO含量8%,质量比)膜由于通过氢键形成了珍贵的聚合物 - PGO(填料)相互作用,显示出改善的电导率(4.15×10 S cm)和选择透过性(87%),以及优异的稳定性(热稳定性、机械稳定性和化学稳定性)。还评估了SPEEK/PGO - 8膜在接近极限电流密度( )时对微咸水淡化的效率。通过 - 曲线评估离子浓度极化(ICP),并且在 以下,排除了水分解或产水pH值变化的情况。而在 (10.5 mA cm)以上,ICP显著,并且最终可以通过施加电流密度进行调节,以生产具有所需pH值的淡化水。此外,SPEEK/PGO - 8膜在电渗析过程中改善的 、高电流效率(82.9%)和低能耗(每去除1千克盐7.9千瓦时)为高效快速的水淡化/净化提供了广阔的电流窗口。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a78a/6645096/9a87a15015d8/ao-2018-01403j_0001.jpg

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