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Thermodynamic Study on Redox Reactions of Boiling Nitric Acid Solutions

机译:沸腾硝酸溶液氧化还原反应的热力学研究

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In order to understand corrosion of metals in nitric acid solutions, it is necessary to know the generation mechanism of high equilibrium potential in the solutions, especially under boiling conditions. Existing nitrogen oxides in nitric acid solutions were first analyzed by Raman spectroscopy and then existing amount of nitrogen oxides were examined by thermodynamic calculation using the SOLGASMIX software. The Raman spectroscopic analysis showed that the existing amount of un-dissociated HNO_3 increased with increasing nitric acid concentration and solution temperature. The existing amount of NO_2 also increased by thermal decomposition. The thermodynamic calculation showed that the important nitrogen oxides in nitric acid solutions are HNO_3, NO_3~-, HNO_2, NO_2, and NO. The equilibrium potential of nitric acid solutions is, however, mainly decided by the HNO_3/HNO_2 equilibrium. The thermodynamic calculation also suggested that the increased oxidization potential on the beat-transfer surface is attributed to the reduction of nitrous acid concentration by the thermal decomposition of nitrous acid on the surface and the continuous removal of decomposition product from the solutions by boiling bubbles.
机译:为了理解硝酸溶液中金属的腐蚀,必须知道溶液中高平衡电位的生成机理,尤其是在沸腾条件下。首先通过拉曼光谱分析硝酸溶液中现有的氮氧化物,然后使用SOLGASMIX软件通过热力学计算来检查氮氧化物的存在量。拉曼光谱分析表明,未离解的HNO_3的存在量随着硝酸浓度和溶液温度的升高而增加。热分解也增加了NO_2的含量。热力学计算表明,硝酸溶液中重要的氮氧化物为HNO_3,NO_3〜-,HNO_2,NO_2和NO。但是,硝酸溶液的平衡电位主要由HNO_3 / HNO_2平衡决定。热力学计算还表明,在拍子传递表面上增加的氧化电势归因于亚硝酸在表面上的热分解和通过沸腾气泡从溶液中连续除去分解产物而降低了亚硝酸浓度。

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