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Top of the REAC tube corrosion induced by under deposit corrosion of ammonium chloride and erosion corrosion

机译:氯化铵沉积不足腐蚀和腐蚀腐蚀引起的REAC管顶部腐蚀

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摘要

The crystal and deposition behavior of ammonium chloride salt (NH4Cl) and multiphase flow simulation were investigated by using Aspen software and CFD technology. And the corrosion failure causes of inlet tube explosion of a refinery hydrocracking reactor effluent air cooler (REAC) were studied. The top of 10# carbon steel base tube corrosion is severe, and reveals an inhomogeneous thinning. The field with localized corrosion is mainly distributed in a range of approximately 1.5 m away from the liner tube. The NH4Cl crystal temperature increases with the increase of feedstock chloride content, and the decrease of injected water volume. The NH4Cl salt granules mainly distribute in the forepart of an inlet tube of the REAC system. The liquid phase mainly exists in the bottom of an inlet tube, and the gas phase in the top of the tube. Without the enough liquid water, the NH4Cl in the gas phase crystallizes and deposits on the top of a pipeline, resulting in under deposit corrosion, which interacts with the flow erosive action accelerates the localized corrosion thinning at the top of forepart of an inlet tube. Outside of the range of corrosion failure, the possibility of ammonium salt crystal decreases with decreasing temperature, and the condensed water increases gradually, then the deposited ammonium salts completely dissolve, and reduces the corrosion of downstream system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用Aspen软件和CFD技术研究了氯化铵盐(NH4Cl)的晶体和沉积行为以及多相流模拟。并研究了炼油加氢裂化反应器出风冷却器(REAC)进水管爆炸的腐蚀破坏原因。 10#碳钢基管的顶部腐蚀很严重,并且显示出不均匀的变薄。局部腐蚀的区域主要分布在距衬管约1.5 m的范围内。 NH4Cl晶体温度随着原料氯化物含量的增加和注入水量的减少而升高。 NH4Cl盐颗粒主要分布在REAC系统入口管的前部。液相主要存在于进口管的底部,而气相则存在于进口管的顶部。如果没有足够的液态水,气相中的NH4Cl就会结晶并沉积在管道顶部,从而导致沉积不足腐蚀,这种腐蚀与流动侵蚀作用相互作用,加速了入口管前部局部的局部腐蚀变薄。在腐蚀破坏范围之外,铵盐晶体的可能性随温度降低而降低,冷凝水逐渐增加,然后沉积的铵盐完全溶解,从而减少了下游系统的腐蚀。 (C)2015 Elsevier Ltd.保留所有权利。

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