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Effects of a Heat-transfer on Corrosion of Zirconium in a Boiling Nitric Acid Solution

机译:传热对沸腾硝酸溶液中锆腐蚀的影响

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The effects of a heat-transfer on the corrosion of zirconium was examined in boiling nitric acid Solutions with various concentrations. Corrosion mass losses and electrochemical polarization curves were measured on the heat-transfer and isothermal surfaces in the solutions. It was found that the corrosion rate of zirconium was higher on the heat-transfer surface than that on the isothermal surface. The rate increased with increasing nitric acid concentration and solution temperature. The increased oxidization potential on the heat-transfer surface is attributed to the reduction of nitrous acid concentration by the thermal decomposition on the surface and the removal of the decomposition product from solution by boiling bubbles. The redox potential of 12 mol/dm~3 nitric acid on a boiling heat-transfer surface was very close to the breakdown potential of primary passivity of zirconium. This suggests the initiation of SCC on a boiling heat-transfer surface in a nuclear fuel reprocessing.
机译:在各种浓度的沸腾硝酸溶液中检查了传热对锆腐蚀的影响。在溶液的传热和等温表面上测量腐蚀质量损失和电化学极化曲线。发现传热表面上的锆腐蚀速率高于等温表面上的腐蚀速率。该速率随硝酸浓度和溶液温度的升高而增加。传热表面上增加的氧化电势归因于通过表面上的热分解而降低了亚硝酸浓度,以及通过沸腾气泡从溶液中除去了分解产物。沸腾的传热表面上12 mol / dm〜3硝酸的氧化还原电势非常接近于锆的初级钝化击穿电势。这表明在核燃料后处理中,SCC在沸腾的传热表面上引发。

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