Capacitive deionization characteristics of nanostructured carbon aerogel electrodes synthesized via ambient drying

被引:195
|
作者
Jung, Hae-Hyun
Hwang, Sung-Woo
Hyun, Sang-Hoon [1 ]
Kang-Ho, Lee
Kim, Gye-Tai
机构
[1] Yonsei Univ, Sch Adv Mat Sci & Engn, Seoul 120749, South Korea
[2] Dandan Corp, Taejon, South Korea
[3] Nano Pore Mat Co Ltd, Seoul 153023, South Korea
关键词
resorcinol-formaldehyde organic aerogels; ambient drying; carbon aerogel electrodes; capacitive deionization (CDI) process; ion removal efficiency;
D O I
10.1016/j.desal.2006.11.023
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
RF (resorcinol formaldehyde) organic aerogels were cost-effectively prepared by solvent exchange using acetone and then ambient drying of RF wet gels obtained from the sol-gel method of the starting solution of RF. The carbon aerogel electrodes for the capacitive deionization (CDI) process with high specific surface area (similar to 610 m(2)/g), high specific capacitance (similar to 220 F/g), high porosity (similar to 80%), low bulk density (similar to 0.50 g/cm(3)), and high electrical conductivity (similar to 13.2 S/cm) have been synthesized via pyrolyzing RIF organic aerogels at 800 degrees C in nitrogen atmosphere. The CDI unit system containing a pair of carbon aerogel electrodes showed the maximum ion removal efficiency when the 50 mg/L NaCl solution was recycled at the volume flow rate of 400 mL/min under the applied voltage in the range of 1.5-1.7 V. Under the optimum operating conditions of the CDI unit system, the NaCl removal efficiency of the CDI stack system composed of 6 unit cells was about 92.8% and 97.6% at 1.5 and 1.7 V, respectively. It was evaluated that the CDI process using carbon aerogel electrodes promised to be an effective technology for desalination.
引用
收藏
页码:377 / 385
页数:9
相关论文
共 50 条
  • [41] Performance optimization of carbon electrodes for capacitive deionization by potentiostatic analysis
    Carmona-Orbezo, Aranzazu
    Le Fevre, Lewis W.
    Dryfe, Robert A. W.
    ELECTROCHIMICA ACTA, 2019, 325
  • [42] Capacitance Improvement and Electrochemical Characteristics of Silica-Coated Carbon Electrodes for Capacitive Deionization Application
    Im, Eui Soo
    Choi, Jea-Hwan
    Jung, Kyeong Youl
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2012, 159 (12) : E198 - E203
  • [43] Adsorption characteristics of vanadium on different resin-active carbon composite electrodes in capacitive deionization
    Cui, Yongyong
    Bao, Shenxu
    Zhang, Yimin
    Duan, Jihuan
    CHEMOSPHERE, 2018, 212 : 34 - 40
  • [44] Carbon flow electrodes for continuous operation of capacitive deionization and capacitive mixing energy generation
    Porada, S.
    Weingarth, D.
    Hamelers, H. V. M.
    Bryjak, M.
    Presser, V.
    Biesheuvel, P. M.
    JOURNAL OF MATERIALS CHEMISTRY A, 2014, 2 (24) : 9313 - 9321
  • [46] Optimization of activated carbon electrodes for desalination using capacitive deionization technique: strategies toward capacitive deionization cell refreshment
    Sameh Hassan
    Shinsuke Mori
    Journal of Materials Science: Materials in Electronics, 2024, 35
  • [47] Capacitive deionization characteristics of compressed granular activated carbon
    Nakayama, Yoshihiro
    Imamura, Eiji
    Noda, Seiji
    SEPARATION AND PURIFICATION TECHNOLOGY, 2021, 277
  • [48] Hydrogen storage properties of carbon aerogel synthesized by ambient pressure drying using new catalyst triethylamine
    Pandey, Anant Prakash
    Bhatnagar, Ashish
    Shukla, Vivek
    Soni, Pawan K.
    Singh, Sweta
    Verma, Satish K.
    Shaneeth, M.
    Sekkar, V
    Srivastava, O. N.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (55) : 30818 - 30827
  • [49] Carbon molecular sieve electrodes with intrinsic microporosity for efficient capacitive deionization
    Arangadi, Abdul Fahim
    AlDhawi, Zainah A.
    Alfaraj, Mashaer
    Abdulhamid, Mahmoud A.
    Alhseinat, Emad
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 353
  • [50] Numerical Analysis of Capacitive Deionization Process Using Activated Carbon Electrodes
    Wang Xiaobing
    Liu Jinqiu
    Liu Yang
    Li Sen
    Li Dong
    Ma Tingting
    Jin An
    Hu Yanshe
    Guan Fengwei
    Water, Air, & Soil Pollution, 2021, 232