Stainless Steel Cyclic Voltammograms in Dioscorea Opposita Flour Media
Abstract
Keywords
Full Text:
PDFReferences
Colli, A.N., Girault, H.H., and Battistel, A. (2019). Non-precious electrodes for practical alkaline water electrolysis. Materials, 12, 1336.
Demir, D.D., Salci, A., and Solmaz, R. (2018). Preparation, characterization, and hydrogen production performance of MoPd deposited carbon felt/Mo electrodes. International Journal of Hydrogen Energy, 43(23), 10530-10539.
Doenitz, W., Schmidberger, R., Steinheil, E., and Streicher, R. (1980). Hydrogen production by high temperature electrolysis of water vapour. International Journal of Hydrogen Energy, 5(1), 55-63.
Ferrero, D., Lanzini, A., Santarelli, M., and Leone, P. (2013). Acomparative assessment on hydrogen production from low- and high-temperature electrolysis. International Journal of Hydrogen Energy, 38(9), 3523-3536.
Isana, S.Y.L., Endang, W.L and Dewi, Y.L. (2019). Comparison study of stainless steel cyclic voltammograms in various natural media addition: Product and voltage efficiency. IIUM Engineering Journal, 20(2), 1-11.
Isana, S.Y.L., Suyanta, and Endang W.L. (2020). Electrochemical production of hydrogen in fermented flour by stainless steel electrode. Asian Journal of Chemistry, 32(4), 835 - 838.
Jeremiasse, A.W., Bergsma, J., Kleijn, M., Saakes, M., Buisman, C.J.N., Stuart, M, and Hamelers, H.V.M. (2011). Performance of metal alloys as hydrogen evolution reaction catalysts in a microbial electrolysis cell. International Journal of Hydrogen Energy, 36(17), 10482-10489.
Li, Q., Zheng, Y., Guan, W., Jin, L., Xu, C., and Wang, W.G. (2014). Achieving high-efficiency hydrogen production using planar solid-oxide electrolysis stacks. International Journal of Hydrogen Energy, 39(21), 10833-10842.
Mahrous, A. F. M., Sakr, I. M., Balabel, A., and Ibrahim, K. (2011). Experimental investigation of the operating parameters affecting hydrogen production process through alkaline water electrolysis. International Journal of Thermal and Environmental Engineering, 2(2), 113-116.
Munoz, L. D. S., Bergel, A., Féron, D., and Basséguy, R. (2010). Hydrogen production by electrolysis of a phosphate solution on a stainless steel cathode. International Journal of Hydrogen Energy, 35(16), 8561-8568..
Olivares-Ramírez, J. M., Campos-Cornelio, M. L., Godínez, J. U., Borja-Arco, E., and Castellanos, R. H. (2007). Studies on the hydrogen evolution reaction on different stainless steels. International Journal of Hydrogen Energy, 32(15), 3170-3173.
Petipas, F., Brisse, A., and Bouallou, C. (2013). Model-based behaviour of a high temperature electrolyser system operated at various loads. Journal of Power Sources, 239, 584-595.
Pons, L., Délia, M. L., Basséguy, R., and Bergel, A. (2011). Effect of the semi-conductive properties of the passive layer on the current provided by stainless steel microbial cathodes. Electrochimica Acta, 56(6), 2682-2688.
Sakr, M., Mahrous, A. F., Balabel, A., and Ibrahim, K. (2011). Experimental investigation into hydrogen production through alkaline water electrolysis. Engineering Research Journal, 34(1), 37-41.
Sanap, K. K., Varma, S., Dalavi, D., Patil, P. S., Waghmode, S. B., and Bharadwaj, S. R. (2011). Variation in noble metal morphology and its impact on functioning of hydrogen mitigation catalyst. International Journal of Hydrogen Energy, 36(17), 10455-10467.
Sapountzi, F. M., Gracia, J. M., Fredriksson, H. O., and Niemantsverdriet, J. H. (2017). Electrocatalysts for the generation of hydrogen, oxygen and synthesis gas. Progress in Energy and Combustion Science, 58, 1-35.
Schmidt, O., Gambhir, A., Staffell, I., Hawkes, A., Nelson, J., and Few, S. (2017). Future cost and performance of water electrolysis: An expert elicitation study. International Journal of Hydrogen Energy, 42(52), 30470-30492.
Tong, W., Forster, M., Dionigi, F., Dresp, S., Erami, R. S., Strasser, P., Cowan, A. J. and Farràs, P. (2020). Electrolysis of low-grade and saline surface water. Nature Energy, 5(5), 367-377.
DOI: https://doi.org/10.17509/ijost.v6i3.39078
Refbacks
- There are currently no refbacks.
Copyright (c) 2021 Indonesian Journal of Science and Technology
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Indonesian Journal of Science and Technology is published by UPI.
View My Stats