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掺碳纳米管桥联二硫化钼的活性炭的增强电容去离子性能。

Enhanced capacitive deionization properties of activated carbon doped with carbon nanotube-bridged molybdenum disulfide.

机构信息

School of the Environment, Nanjing Normal University, Nanjing, 210023, PR China.

School of the Environment, Nanjing Normal University, Nanjing, 210023, PR China; State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing, 210023, PR China.

出版信息

Chemosphere. 2023 Jan;310:136740. doi: 10.1016/j.chemosphere.2022.136740. Epub 2022 Oct 6.

Abstract

The shortage of freshwater supplies has restricted societal development. Capacitive deionization (CDI) is an emerging technology for desalination of seawater or brackish water, the performance of which is highly dependent on electrode materials. In this work, a molybdenum disulfide/carbon nanotube composite (CNTs-b-MoS) with high capacitance was successfully synthesized using a hydrothermal method. The composite exhibited a specific capacitance of 112.79 F g. To reduce costs and determine the practicality of using CNTs-b-MoS for CDI, we combined activated carbon (AC) with CNTs-b-MoS as a CDI electrode. The research demonstrated that after doping with 5% (mass ratio) CNTs-b-MoS, the specific capacitance and electrosorption capacity of AC were significantly improved and the maximum desalination capacity of CNTs-b-MoS/AC reached 8.19 mg g. The low dosage of CNTs-b-MoS combined with the high specific surface area of AC avoided the shortcomings of CNTs-b-MoS, namely low specific surface area and high cost. Moreover, the outstanding conductivity of CNTs-b-MoS improved the conductivity and enhanced the adsorption capacity of AC, giving CNTs-b-MoS/AC potential as an advanced, low-cost CDI electrode material.

摘要

淡水资源短缺限制了社会发展。电容去离子(CDI)是一种新兴的海水或苦咸水淡化技术,其性能高度依赖于电极材料。在这项工作中,采用水热法成功合成了具有高电容的二硫化钼/碳纳米管复合材料(CNTs-b-MoS)。该复合材料的比电容为 112.79 F g。为了降低成本并确定 CNTs-b-MoS 在 CDI 中的实用性,我们将活性炭(AC)与 CNTs-b-MoS 结合作为 CDI 电极。研究表明,掺杂 5%(质量比)CNTs-b-MoS 后,AC 的比电容和电吸附容量显著提高,CNTs-b-MoS/AC 的最大脱盐容量达到 8.19 mg g。低剂量的 CNTs-b-MoS 结合 AC 的高比表面积避免了 CNTs-b-MoS 的缺点,即比表面积低和成本高。此外,CNTs-b-MoS 的优异导电性提高了 AC 的导电性和增强了其吸附能力,使 CNTs-b-MoS/AC 成为一种有前途的、低成本的 CDI 电极材料。

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