烟气
热交换器
腐蚀
烟气脱硫
管(容器)
材料科学
冶金
捆绑
穿孔
管壳式换热器
冷凝
钼
空气预热器
硫黄
高温腐蚀
二氧化硫
废物管理
完井(油气井)
烟道
复合材料
沸腾
锅炉(水暖)
板式换热器
作者
J. Zhang,L. Zhang,An-Xia Pan,Tao Wu,Zijian Dai,Fang Liu,Jinjie Feng,Hongwei Qian
出处
期刊:Corrosion
[NACE International]
日期:2026-01-05
卷期号:82 (3): 249-264
摘要
To clarify the causes of corrosion perforation in the tube bundle of the flue gas desulfurization (FGD) heat exchanger, research was performed on the failed tube bundle. Through material analysis, the possibility of failure caused by defects in the heat-exchange tubes themselves was excluded. By means of scanning electron microscopy, energy dispersive spectroscope, and x-ray diffraction surface analysis, it was found that the corrosion was related to acidic media and insufficient molybdenum content in the material. Through numerical simulation, it was discovered that the low-temperature zone near the upper tube sheet was prone to the condensation of acidic media, and the low-velocity zone in the upper part of the tube bundle would retain corrosive media. The two, together with flue gas scouring and vibration, triggered corrosion perforation. Accordingly, optimization schemes for materials, operation, and protection were proposed.
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