Polyelectrolyte-coated zeolite-templated carbon electrodes for capacitive deionization and energy generation by salinity exchange

被引:0
|
作者
Orozco-Barrera, Sergio [1 ]
Wakabayashi, Keigo [2 ]
Yoshii, Takeharu [2 ]
Nishihara, Hirotomo [2 ,3 ]
Iglesias, Guillermo R. [1 ,4 ]
Delgado, Angel, V [1 ,4 ]
Ahualli, Silvia [1 ,5 ]
机构
[1] Univ Granada, Dept Appl Phys, Granada, Spain
[2] Tohoku Univ, Inst Multidisciplinary Res Adv Mater IMRAM, Sendai, Japan
[3] Tohoku Univ, Adv Inst Mat Res WPI AIMR, Sendai, Japan
[4] Inst Invest Biosanitaria ibs GRANADA, NanoMag Lab, Granada, Spain
[5] Univ Granada, Fac Ciencias, Dept Fis Aplicada, 18071 Granada, Spain
关键词
Zeolite-templated carbon; Capacitive deionization; Capacitive mixing; Polyelectrolytes; Ion-exchange membranes; Electrokinetics; DESALINATION; PERFORMANCE; EFFICIENCY;
D O I
10.1016/j.seppur.2024.129314
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
As global demands for freshwater and renewable energy intensify, capacitive deionization (CDI) emerges as a promising technique for water purification, desalination, and ionic separation. Reciprocally, energy harvesting has been made possible from exchanging solutions with different salinity, using the so-called capacitive mixing (CapMix) methods, now taking their first steps towards a wider range of application. In all the techniques mentioned, porous electrodes are used in order to maximize the stored charge, making it essential to properly select the material of which the electrode is composed. This work focuses on exploring the performance of zeolite-templated carbon (ZTC) as a highly promising electrode material. ZTC offers ordered pore distribution and high electrical conductivity, making it in principle ideal for energy harvesting and water purification applications. In order to optimize its performance, the surface of the ZTC is for the first time modified by application of polyelectrolyte coatings, resulting in so-called soft electrodes or SEs. This combination of electrode material and functionalization gives rise to a highly efficient and low energy-consuming strategy to fully realize the potential of this carbon material in CDI and CapMix techniques for tackling global freshwater and energy challenges. Energy and power generation values up to 25 mJ and 7.5 mW m(-2) have been obtained (with measured potential rises of 131 mV by only exchanging salinities of the bathing solution), which overcome values such as 4.3 mW m(-2) previously found in our laboratory under similar conditions.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Enhanced removal of phosphate using an activated carbon electrode coated with an ion exchange layer in membrane capacitive deionization
    Hou, Chia-Hung
    Hsu, Chung-Chun
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 256
  • [42] Enhanced desalination efficiency in modified membrane capacitive deionization by introducing ion-exchange polymers in carbon nanotubes electrodes
    Liu, Yong
    Pan, Likun
    Xu, Xingtao
    Lu, Ting
    Sun, Zhuo
    Chua, Daniel H. C.
    ELECTROCHIMICA ACTA, 2014, 130 : 619 - 624
  • [43] Electrochemical Removal of Cesium Ions via Capacitive Deionization Using an Ion-Exchange Layer Coated on a Carbon Electrode
    Lee, Sang-Hun
    Choi, Mansoo
    Moon, Jei-Kwon
    Lee, Songbok
    Choi, Jihoon
    Kim, Seonbyeong
    APPLIED SCIENCES-BASEL, 2021, 11 (21):
  • [44] Modification of the surface of activated carbon electrodes for capacitive mixing energy extraction from salinity differences
    Marino, M.
    Misuri, L.
    Jimenez, M. L.
    Ahualli, S.
    Kozynchenko, O.
    Tennison, S.
    Bryjak, M.
    Brogioli, D.
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2014, 436 : 146 - 153
  • [45] Reducing impedance to ionic flux in capacitive deionization with Bi-tortuous activated carbon electrodes coated with asymmetrically charged polyelectrolytes
    Bhat, Akash P.
    Reale, Erik R.
    del Cerro, Martina
    Smith, Kyle C.
    Cusick, Roland D.
    WATER RESEARCH X, 2019, 3
  • [46] Electrosorption of different cations and anions with membrane capacitive deionization based on carbon nanotube/nanofiber electrodes and ion-exchange membranes
    Nie, Chunyang
    Zhan, Yankun
    Pan, Likun
    Li, Haibo
    Sun, Zhuo
    DESALINATION AND WATER TREATMENT, 2011, 30 (1-3) : 266 - 271
  • [47] Effect of ion exchange resin membranes and activated carbon electrodes in water desalination using capacitive deionization technique with saline streams
    Ganeshkumar, Selvaraj
    Sharma, Shubham
    Dwivedi, Shashi Prakash
    Kumar, Rajeev
    Pattanaik, Ashutosh
    Kalyani, Teku
    Sharma, Manish
    Kulshreshta, Ankur
    Kumar, Abhinav
    Mohammed, Kahtan A.
    Mubarakali, Azath
    INTERNATIONAL JOURNAL OF CHEMICAL REACTOR ENGINEERING, 2024, 22 (10) : 1237 - 1247
  • [48] Suppression of electrode reactions and enhancement of the desalination performance of capacitive deionization using a composite carbon electrode coated with an ion-exchange polymer
    Son, Ji-Won
    Choi, Jae-Hwan
    SEPARATION AND PURIFICATION TECHNOLOGY, 2022, 278
  • [49] High performance asymmetric capacitive mixing with oppositely charged carbon electrodes for energy production from salinity differences
    Zhan, Fei
    Wang, Gang
    Wu, Tingting
    Dong, Qiang
    Meng, Yulan
    Wang, Jianren
    Yang, Juan
    Li, Shaofeng
    Qiu, Jieshan
    JOURNAL OF MATERIALS CHEMISTRY A, 2017, 5 (38) : 20374 - 20380
  • [50] Reuse of municipal wastewater via membrane capacitive deionization using ion-selective polymer-coated carbon electrodes in pilot-scale
    Kim, David Inhyuk
    Dorji, Pema
    Gwak, Gimun
    Phuntsho, Sherub
    Hong, Seungkwan
    Shon, Hokyong
    CHEMICAL ENGINEERING JOURNAL, 2019, 372 : 241 - 250