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Study of the growth mechanism of some oxide scales on alloy 230 in High Temperature Vapor Electrolysis (HTVE) conditions

机译:高温蒸汽电解(HTVE)条件下对合金230氧化物鳞片鳞片的生长机理研究

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Alloy 230 (also named Haynes~? 230) was tested as interconnect for production of hydrogen via High Temperature Vapor Electrolysis (HTVE). Samples were oxidized at 800°C in the both atmospheres representative of the HTVE operating conditions: Ar-1%H_2-9%H_2O (for cathode side) and air (for anode side). The high temperature oxidation behaviour was studied in both atmospheres together with the electrical conductivity of the thermally grown oxide scales. Oxidation kinetics indicated lower oxidation rate in H_2/H_2O compared to air (k_p = 3.8 .10~(15) g~2.cm ~4.S~(-1) in H_2/H_2O and k_p = 1.6 .10~(-14) g~2.cm~(-4).S~(-1) in air). The corrosion products were characterized by scanning electron microscopy associated with X-ray diffraction analyses and energy dispersive X-ray analyses. The sample electrical behaviour was evaluated by determining the Area Specific Resistance (ASR). The ASR was higher in H_2/H_2O (ASR = 1 ohm.cm~2) than in air (ASR = 0.04 ohm.cm~2). The diffusion of proton or hydrogen containing species through the oxide scale is proposed to be responsible for the increase of the electrical conductivity in cathode side.
机译:合金230(也称为海恩斯〜?230)通过高温蒸汽电解(HTVE)作为互连测试用于生产氢气。将样品在800氧化℃的气氛都代表的HTVE操作条件:氩1%H_2-9%H_2O(阴极侧)和空气(阳极侧)。高温氧化行为在两个大气压与热生长氧化物鳞片的电导率研究在一起。氧化动力学比空气(在H_2 / H_2O指示较低氧化速率k_p = 3.8 0.10〜(15)克〜2.cm〜4.S〜(-1)在H_2 / H_2O和k_p = 1.6 0.10〜( - 14)克〜2.cm〜(-4).S〜(-1)在空气中)。通过用X射线衍射分析和能量分散型X射线分析相关联的扫描电子显微镜的腐蚀产物进行表征。该样品的电特性通过测定面积比电阻(ASR)来评价。的ASR在H_2 / H_2O(ASR = 1 ohm.cm〜2)比在空气中(ASR = 0.04 ohm.cm〜2)更高。质子或通过氧化皮含有物种氢的扩散,提出了负责导电性的在阴极侧的增加。

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