Response to comments on “comparison of energy consumption in desalination by capacitive deionization and reverse osmosis”

作者: Mohan Qin , Akshay Deshmukh , Razi Epsztein , Sohum K. Patel , Oluwaseye M. Owoseni

DOI: 10.1016/J.DESAL.2019.04.004

关键词: DesalinationCapacitive deionizationReverse osmosisEnvironmental engineeringEnergy consumptionMaterials science

摘要:

参考文章(60)
Baojin Wang, Shengbo Eben Li, Huei Peng, Zhiyuan Liu, Fractional-order modeling and parameter identification for lithium-ion batteries Journal of Power Sources. ,vol. 293, pp. 151- 161 ,(2015) , 10.1016/J.JPOWSOUR.2015.05.059
Jiujun Zhang, Xiao-Zi Yuan, Haijiang Wang, Chaojie Song, Electrochemical Impedance Spectroscopy in PEM Fuel Cells: Fundamentals and Applications ,(2009)
M. E. Suss, S. Porada, X. Sun, P. M. Biesheuvel, J. Yoon, V. Presser, Water desalination via capacitive deionization : What is it and what can we expect from it? Energy and Environmental Science. ,vol. 8, pp. 2296- 2319 ,(2015) , 10.1039/C5EE00519A
Joseph C. Farmer, David V. Fix, Gregory V. Mack, Richard W. Pekala, John F. Poco, Capacitive Deionization of NaCl and NaNO3 Solutions with Carbon Aerogel Electrodes Journal of The Electrochemical Society. ,vol. 143, pp. 159- 169 ,(1996) , 10.1149/1.1836402
S.R.S. Prabaharan, R. Vimala, Zulkarnian Zainal, Nanostructured mesoporous carbon as electrodes for supercapacitors Journal of Power Sources. ,vol. 161, pp. 730- 736 ,(2006) , 10.1016/J.JPOWSOUR.2006.03.074
Y.A.C. Jande, W.S. Kim, Desalination using capacitive deionization at constant current Desalination. ,vol. 329, pp. 29- 34 ,(2013) , 10.1016/J.DESAL.2013.08.023
Naresh Chandra Murmu, Tapas Kuila, Milan Jana, Sanjit Saha, Partha Khanra, Pranab Samanta, Hyeyoung Koo, Non-covalent functionalization of reduced graphene oxide using sulfanilic acid azocromotrop and its application as a supercapacitor electrode material Journal of Materials Chemistry. ,vol. 3, pp. 7323- 7331 ,(2015) , 10.1039/C4TA07009G