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    鲁金涛, 张波, 黄锦阳, 杨珍, 徐宏杰. 烟气脱硝用尿素水解装置关键部件用候选材料的腐蚀行为[J]. 机械工程材料, 2017, 41(7): 6-12. DOI: 10.11973/jxgccl201707002
    引用本文: 鲁金涛, 张波, 黄锦阳, 杨珍, 徐宏杰. 烟气脱硝用尿素水解装置关键部件用候选材料的腐蚀行为[J]. 机械工程材料, 2017, 41(7): 6-12. DOI: 10.11973/jxgccl201707002
    LU Jintao, ZHANG Bo, HUANG Jinyang, YANG Zhen, XU Hongjie. Corrosion Behavior of Candidate Materials Used for Critical Parts of Urea Hydrolysis Equipment in Gas Denitrification[J]. Materials and Mechanical Engineering, 2017, 41(7): 6-12. DOI: 10.11973/jxgccl201707002
    Citation: LU Jintao, ZHANG Bo, HUANG Jinyang, YANG Zhen, XU Hongjie. Corrosion Behavior of Candidate Materials Used for Critical Parts of Urea Hydrolysis Equipment in Gas Denitrification[J]. Materials and Mechanical Engineering, 2017, 41(7): 6-12. DOI: 10.11973/jxgccl201707002

    烟气脱硝用尿素水解装置关键部件用候选材料的腐蚀行为

    Corrosion Behavior of Candidate Materials Used for Critical Parts of Urea Hydrolysis Equipment in Gas Denitrification

    • 摘要: 在模拟烟气脱硝的尿素水解环境中研究了尿素水解装置关键部件用候选材料316L不锈钢、316Lmod不锈钢、HR3C不锈钢、Inconel718合金和TC4合金的腐蚀行为。结果表明:316L与316Lmod不锈钢在腐蚀初期均出现不同程度的溶解腐蚀,腐蚀后期316L不锈钢的腐蚀产物沉积量增多,腐蚀产物出现大面积剥落,腐蚀过程以点蚀为主,而316Lmod不锈钢则以均匀腐蚀、腐蚀产物沉积为主;TC4合金、Inconel718合金与HR3C不锈钢均具有比316L和316Lmod不锈钢更好的耐蚀性能;TC4钛合金表面形成一层约3 μm厚的致密钛氧化层,腐蚀过程中水热合成了Cr2O3和Fe2O3产物;Inconel718合金在腐蚀初期出现少量溶解腐蚀,后期以大量氧化物沉积为主;HR3C不锈钢在腐蚀初期发生了明显的晶间腐蚀,之后以腐蚀产物沉积为主。

       

      Abstract: Corrosion behavior of candidate alloys such as 316L stainless steel, 316Lmod stainless steel, HR3C stainless steel, Inconel718 alloy and TC4 alloy used for critical parts of urea hydrolysis equipment in gas denitrification was studied in simulated urea hydrolysis environment. The results show that different degree of dissolve corrosion was happened for 316L and 316Lmod stainless steel at the initial stage. In the following corrosion stage, corrosion product deposition increased and a large surface of corrosion products exfoliation were observed on 316L stainless steel which was mainly pitting corrosion, while uniform corrosion and deposition of corrosion products dominated the corrosion process for 316Lmod stainless steel. TC4 alloy, Inconel718 alloy and HR3C stainless steel showed a better corrosion resistance compared with 316L and 316Lmod stainless steel. There was a dense titanium oxide layer with 3 μm in thickness formed on surface of TC4 alloy and mixed oxides consisting of Cr2O3 and Fe2O3 formed by hydrothermal synthesis reaction were the main corrosion products. A small amount of dissolve corrosion was observed on Inconel718 alloy at the initial stage and in later stage deposition of corrosion products dominated the corrosion process. Intergranular corrosion was clearly observed in HR3C stainless steel at the initial stage and deposition of corrosion products dominated the following corrosion process of HR3C stainless steel.

       

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