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Experimental Study on the Erosion–Corrosion Characteristics of Desulfurization Slurry on Stainless Steel Pipe Materials

烟气脱硫 泥浆 腐蚀 材料科学 冶金 冲蚀腐蚀 腐蚀 热交换器 废物管理 复合材料 生物 热力学 物理 工程类 古生物学
作者
Gaofeng Fan,Jinming Zhang,Tianlin Yuan,Chang’an Wang,Yujie Hou,Xinyue Gao,Jie Xu,Defu Che
出处
期刊:ACS omega [American Chemical Society]
卷期号:9 (6): 7132-7142 被引量:1
标识
DOI:10.1021/acsomega.3c09065
摘要

The recovery of low-grade waste heat from power plants greatly benefits energy conservation and emission reduction during electricity generation, while the waste heat utilization directly from desulfurization slurry is a significantly promising method to deeply recover such low-grade energy and has been developed in practical application. However, the pipe materials are subjected to erosion and corrosion challenges due to the high level of solid compositions and the presence of harmful ions, such as Cl-1, which requires further evaluation under the condition of slurry heat exchange. The present study aimed at an experimental study on the erosion-corrosion characteristics of desulfurization slurry on three types of stainless steel, including type 304, 316L, and 2205. Both mass loss and micromorphology features were analyzed with possible mechanisms elucidated. The erosion-corrosion rate is weak at low temperatures, while the increase in the slurry temperature clearly promotes its rate. The influence of the temperature on the corrosion resistance of 304 is much greater than that of 2205. With an increase in duration time, the weight loss rate of stainless steel in the desulfurization slurry declines, and the changing trend of metal mass slightly slows down. The present study offers a better understanding of the erosion-corrosion behaviors of three types of stainless steel under flow and heat transfer conditions of a desulfurization slurry.
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