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There are 18386 results for: content related to: Development of the all-vanadium redox flow battery for energy storage: a review of technological, financial and policy aspects

  1. Vanadium redox flow batteries: a technology review

    International Journal of Energy Research

    Volume 39, Issue 7, 10 June 2015, Pages: 889–918, Álvaro Cunha, Jorge Martins, Nuno Rodrigues and F. P. Brito

    Version of Record online : 29 OCT 2014, DOI: 10.1002/er.3260

  2. The importance of key operational variables and electrolyte monitoring to the performance of an all vanadium redox flow battery

    Journal of Chemical Technology and Biotechnology

    Volume 88, Issue 1, January 2013, Pages: 126–138, M.J. Watt-Smith, P. Ridley, R.G.A. Wills, A.A. Shah and F.C. Walsh

    Version of Record online : 28 AUG 2012, DOI: 10.1002/jctb.3870

  3. On the ocean heat budget and ocean thermal energy conversion

    International Journal of Energy Research

    Volume 35, Issue 13, 25 October 2011, Pages: 1119–1144, Mohammed Faizal and M. Rafiuddin Ahmed

    Version of Record online : 21 JUL 2011, DOI: 10.1002/er.1885

  4. Liquid Redox Rechargeable Batteries

    Electrochemical Technologies for Energy Storage and Conversion, Volume 1&2

    Ru-Shi Liu, Lei Zhang, Xueliang Sun, Hansan Liu, Jiujun Zhang, Pages: 279–316, 2012

    Published Online : 10 JAN 2012, DOI: 10.1002/9783527639496.ch7

  5. Graphite felt electrode modified by square wave potential pulse for vanadium redox flow battery

    International Journal of Energy Research

    Zhangxing He, Yingqiao Jiang, Huizhu Zhou, Gang Cheng, Wei Meng, Ling Wang and Lei Dai

    Version of Record online : 30 AUG 2016, DOI: 10.1002/er.3626

  6. A Model for All-Vanadium Redox Flow Batteries: Introducing Electrode-Compression Effects on Voltage Losses and Hydraulics

    Energy Technology

    Volume 2, Issue 1, January 2014, Pages: 64–76, Kolja Bromberger, Johannes Kaunert and Dr. Tom Smolinka

    Version of Record online : 2 JAN 2014, DOI: 10.1002/ente.201300114

  7. Effects of nitrogen doping on the electrochemical performance of graphite felts for vanadium redox flow batteries

    International Journal of Energy Research

    Volume 39, Issue 5, April 2015, Pages: 709–716, Zhangxing He, Lang Shi, Junxi Shen, Zhen He and Suqin Liu

    Version of Record online : 10 JAN 2015, DOI: 10.1002/er.3291

  8. Recent Progress in Redox Flow Battery Research and Development

    Advanced Functional Materials

    Volume 23, Issue 8, February 25, 2013, Pages: 970–986, Wei Wang, Qingtao Luo, Bin Li, Xiaoliang Wei, Liyu Li and Zhenguo Yang

    Version of Record online : 4 SEP 2012, DOI: 10.1002/adfm.201200694

  9. Simulation Analysis of Regional Temperature Effects and Battery Management Schedules for a Residential-Scale Vanadium Redox Flow Battery System

    ChemPlusChem

    Volume 80, Issue 2, February 2015, Pages: 368–375, Dr. Ao Tang and Prof. Maria Skyllas-Kazacos

    Version of Record online : 11 APR 2014, DOI: 10.1002/cplu.201400034

  10. Nanostructured Electrocatalysts for All-Vanadium Redox Flow Batteries

    Chemistry – An Asian Journal

    Volume 10, Issue 10, October 2015, Pages: 2096–2110, Minjoon Park, Jaechan Ryu and Prof. Jaephil Cho

    Version of Record online : 12 MAY 2015, DOI: 10.1002/asia.201500238

  11. A new reactor concept for combining oxidative coupling and steam re-forming of methane: modeling and analysis

    International Journal of Energy Research

    Volume 37, Issue 2, February 2013, Pages: 129–152, Ali Farsi, Vahid Shadravan, Seyed Soheil Mansouri, Gholamreza Zahedi and Zainuddin Abdul Manan

    Version of Record online : 21 JUL 2011, DOI: 10.1002/er.1881

  12. Simultaneous production of ultrapure hydrogen and gasoline in a novel thermally coupled double-membrane reactor

    International Journal of Energy Research

    Volume 37, Issue 1, January 2013, Pages: 35–48, M. Bayat and M.R. Rahimpour

    Version of Record online : 6 JUL 2011, DOI: 10.1002/er.1878

  13. A review on methanol crossover in direct methanol fuel cells: challenges and achievements

    International Journal of Energy Research

    Volume 35, Issue 14, November 2011, Pages: 1213–1228, Mahmoud Ahmed and Ibrahim Dincer

    Version of Record online : 20 JUL 2011, DOI: 10.1002/er.1889

  14. Capacity Decay Mechanism of Microporous Separator-Based All-Vanadium Redox Flow Batteries and its Recovery

    ChemSusChem

    Volume 7, Issue 2, February 2014, Pages: 577–584, Dr. Bin Li, Dr. Qingtao Luo, Dr. Xiaoliang Wei, Zimin Nie, Edwin Thomsen, Dr. Baowei Chen, Dr. Vincent Sprenkle and Dr. Wei Wang

    Version of Record online : 29 OCT 2013, DOI: 10.1002/cssc.201300706

  15. Effects of catalyst layer structure and wettability on liquid water transport in polymer electrolyte membrane fuel cell

    International Journal of Energy Research

    Volume 35, Issue 15, December 2011, Pages: 1325–1339, Prodip K. Das, Xianguo Li, Zhong Xie and Zhong-Sheng Liu

    Version of Record online : 2 JUN 2011, DOI: 10.1002/er.1873

  16. Thermodynamic optimisation of the integrated design of a small-scale solar thermal Brayton cycle

    International Journal of Energy Research

    Volume 36, Issue 11, September 2012, Pages: 1088–1104, W. G. le Roux, T. Bello-Ochende and J. P. Meyer

    Version of Record online : 25 MAY 2011, DOI: 10.1002/er.1859

  17. Vanadium Electrolyte Studies for the Vanadium Redox Battery—A Review

    ChemSusChem

    Volume 9, Issue 13, July 7, 2016, Pages: 1521–1543, Prof. Maria Skyllas-Kazacos, Liuyue Cao, Michael Kazacos, Dr. Nadeem Kausar and Dr. Asem Mousa

    Version of Record online : 13 JUN 2016, DOI: 10.1002/cssc.201600102

  18. Recent Advancements in All-Vanadium Redox Flow Batteries

    Advanced Materials Interfaces

    Volume 3, Issue 1, January 7, 2016, Mani Ulaganathan, Vanchiappan Aravindan, Qingyu Yan, Srinivasan Madhavi, Maria Skyllas-Kazacos and Tuti Mariana Lim

    Version of Record online : 6 NOV 2015, DOI: 10.1002/admi.201500309

  19. Development and validation of chemistry agnostic flow battery cost performance model and application to nonaqueous electrolyte systems

    International Journal of Energy Research

    Volume 40, Issue 12, 10 October 2016, Pages: 1611–1623, Alasdair Crawford, Edwin Thomsen, David Reed, David Stephenson, Vincent Sprenkle, Jun Liu and Vilayanur Viswanathan

    Version of Record online : 20 APR 2016, DOI: 10.1002/er.3526

  20. A methodology for territorial distribution of CO2 emission reductions in transport sector

    International Journal of Energy Research

    Volume 36, Issue 14, November 2012, Pages: 1298–1313, Alfredo Tolón-Becerra, Pedro Pérez-Martínez, Xavier Lastra-Bravo and Isabel Otero-Pastor

    Version of Record online : 26 MAY 2011, DOI: 10.1002/er.1871