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Alternative cost-effective electrodes for hydrogen production in saline water condition

机译:在盐水条件下用于制氢的替代低成本电极

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For the sustainable clean and green energy, hydrogen is considered as one of the prominent renewable energy source which attracted increasing interests in recent years. To produce this, one of the cheapest method is water electrolysis. But several challenges in water electrolysis are, to reduce the maintenance cost, energy consumption and high cost of platinum electrode material. So, in search of an alternative low cost and efficient electrode material, researchers are modifying various metals electrodes to replace the noble metal electrodes. Stainless steel (SS 304) is one of the types of carbon steel material commonly used for various applications. The aim of the work is to explore the stainless steel (SS 304), annealed at high temperature, with and without "hydrogen and argon" environment and tested the samples for hydrogen production in sea water condition (3.5% NaCl). Cr2O3 and MnCr2O4 spinel oxide formation was observed over the surface of the electrodes after annealing process. From Raman, X-ray Photoelectron Spectroscopy (XPS) and electrochemical measurements it was observed that, the sample prepared under hydrogen and argon environment is stable when compared with the rest of the samples. Decrease in relative amount of chromium oxide was observed for the sample annealed in air environment. The rate of production of hydrogen prepared under "hydrogen and argon" environment is higher and the results are discussed. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:对于可持续的清洁和绿色能源,氢被认为是近年来引起越来越多兴趣的重要可再生能源之一。为此,最便宜的方法之一是水电解。但是水电解中的几个挑战是降低铂电极材料的维护成本,能耗和高成本。因此,在寻找替代的低成本和高效的电极材料时,研究人员正在修改各种金属电极以代替贵金属电极。不锈钢(SS 304)是通常用于各种应用的碳钢材料类型之一。这项工作的目的是研究在有和没有“氢气和氩气”环境下在高温下退火的不锈钢(SS 304),并在海水条件下(3.5%NaCl)测试样品的制氢能力。退火过程后,在电极表面观察到了Cr2O3和MnCr2O4尖晶石氧化物的形成。从拉曼光谱,X射线光电子能谱(XPS)和电化学测量结果可以看出,在氢气和氩气环境下制备的样品与其余样品相比是稳定的。在空气环境中退火的样品中,观察到氧化铬相对量的减少。在“氢气和氩气”环境下制备的氢气的生产率更高,并讨论了结果。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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