Zhao Weiyun, Ding Meng, Guo Lu, Yang Hui Ying
Pillar of Engineering Product Development, Singapore University of Technology and Design, 8 Somapah Road, 487372, Singapore, Singapore.
Small. 2019 Mar;15(9):e1805505. doi: 10.1002/smll.201805505. Epub 2019 Feb 4.
Desalination devices such as capacitive deionization (CDI) have been developed for many years as an approach to relief freshwater shortage. However, due to the limitation of physical adsorption capacity of CDI, the salt removal capacity is unable to reach high value. To enhance the desalination capacity effectively, battery materials are employed to fabricate a dual-ion electrochemical deionization (DEDI) device. Herein, a binder-free DEDI system with two free-standing aerogel electrodes is reported. A Na V (PO ) /graphene hybrid aerogel is used as sodium electrode and a AgCl/graphene hybrid aerogel is used as chloride electrode. With electric current passing through, sodium and chloride ions are released or absorbed by two aerogel electrodes. This system achieves super high desalination capacity, excellent cycling stability, and rapid desalination rate. The desalination capacity is as high as 107.5 mg g after 50 cycles with the current density of 100 mA g . The outstanding desalination performance of this system shows a synergistic effect of combining battery materials with graphene for deionization and promises a new potential alternative of future desalination design.
诸如电容去离子(CDI)之类的脱盐装置已经开发多年,作为缓解淡水短缺的一种方法。然而,由于CDI物理吸附容量的限制,其脱盐能力无法达到很高的值。为了有效提高脱盐能力,采用电池材料制造了一种双离子电化学去离子(DEDI)装置。在此,报道了一种具有两个独立气凝胶电极的无粘结剂DEDI系统。NaV(PO) /石墨烯混合气凝胶用作钠电极,AgCl/石墨烯混合气凝胶用作氯电极。当电流通过时,钠和氯离子被两个气凝胶电极释放或吸收。该系统实现了超高的脱盐能力、出色的循环稳定性和快速的脱盐速率。在电流密度为100 mA g的情况下,经过50次循环后,脱盐能力高达107.5 mg g 。该系统出色的脱盐性能显示了将电池材料与石墨烯结合用于去离子的协同效应,并有望成为未来脱盐设计的一种新的潜在替代方案。