...
首页> 外文期刊>RSC Advances >ZrO2 nanofibers/activated carbon composite as a novel and effective electrode material for the enhancement of capacitive deionization performance
【24h】

ZrO2 nanofibers/activated carbon composite as a novel and effective electrode material for the enhancement of capacitive deionization performance

机译:ZrO 2 纳米纤维/活性炭复合材料作为新型有效的电极材料,可增强电容去离子性能

获取原文
           

摘要

Among the various forms of carbon materials, activated carbon still possesses the maximum attention as an optimum commercially available, cheap, and effective electrode material for the capacitive deionization desalination process. However, the well-known hydrophobicity and low specific capacitance limit its wide application. In this study, incorporation of zirconia nanofibers with activated carbon is reported as an effective and simple strategy to overcome the abovementioned problems. Typically, zirconia nanofibers, which were synthesized by the calcination of electrospun nanofiber mats, were added to the activated carbon to fabricate novel electrodes for the capacitive deionization units. In a single-mode cell, it was observed that the addition of the proposed metal oxide nanofibers distinctly enhanced the desalination process as the electrosorption capacity and the salt removal efficiency improved from 5.42 to 16.35 mg g?1 and from 16.37% to 53.26% for the pristine and composite electrodes, respectively. However, the inorganic nanofiber content should be optimized; a composite having 10 wt% zirconia nanofibers with respect to the activated carbon showed the best performance. This distinct enhancement in the performance is attributed to the improvement in the wettability and specific capacitance of the electrode. Numerically, the water contact angle and the specific capacitance of the pristine and composite electrodes were found to be 145° and 26.5°, and 875 and 225 F g?1, respectively. Overall, the present study strongly draws attention towards zirconia nanostructures as effective, cheap, environmentally friendly, and biologically safe candidates to enhance the performance of capacitive deionization electrodes.
机译:在各种形式的碳材料中,活性炭作为电容性去离子脱盐工艺的最佳市售,廉价且有效的电极材料,仍然引起了最大的关注。然而,众所周知的疏水性和低的比电容限制了其广泛的应用。在这项研究中,氧化锆纳米纤维与活性炭的结合被报告为克服上述问题的一种有效而简单的策略。通常,将通过电纺纳米纤维毡的煅烧合成的氧化锆纳米纤维添加到活性炭中,以制造用于电容性去离子单元的新型电极。在单模电池中,观察到所建议的金属氧化物纳米纤维的添加显着增强了脱盐过程,因为其电吸附能力和除盐效率从5.42 mg g ?1 提高到16.35 mg g。 sup> ,原始电极和复合电极分别为16.37%至53.26%。但是,无机纳米纤维的含量应该优化。相对于活性炭,具有10wt%的氧化锆纳米纤维的复合材料表现出最好的性能。性能上的这种明显提高归因于电极的可湿性和比电容的提高。在数值上,原始电极和复合电极的水接触角和比电容分别为145°和26.5°,以及875和225 F g ?1 。总体而言,本研究强烈吸引人们关注氧化锆纳米结构,以作为有效,廉价,环保和生物安全的候选物,以增强电容性去离子电极的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号