Investigating the Corrosive Influence of Chloride Ions on Slag Recovery Machine Inner Guide Wheel in Power Plants

Author:

Hu Dalong1,Ma Xiaohan2,Bai Jintao2,Fan Yongzhe23,Yu Yaohong1,Ma Ruina23,Zhang Jiangtao1,Du An23,Xi Tianhao1,Zhao Xue23,Wang Shengxing2

Affiliation:

1. Xi’an TPRI Water-Management & Environmental Protection Co., Ltd., State Key Laboratory of High Efficiency Flexible Coal Power Generation and Carbon Capture Utilization and Storage, Xi’an 710054, China

2. School of Materials Science and Engineering, Hebei University of Technology, Tianjin 300130, China

3. Key Lab for New Type of Functional Materials in Hebei Province, Tianjin 300130, China

Abstract

An important method that coal-fired power plants use to realise low-cost zero discharge of desulfurisation wastewater (FGD wastewater) is to utilise wet slag removal systems. However, the high Cl− content of FGD wastewater in wet slag removal systems causes environmental damage. In this study, the corrosion behaviour of the inner guide wheel material, 20CrMnTi, was studied using dynamic weight loss and electrochemical methods. X-ray diffraction, scanning electron microscopy, and energy spectroscopy were used to analyse the organisational and phase changes on the surfaces and cross sections of the samples at different Cl− concentrations. The corrosion rate increased with the Cl− concentration up to 20 g/L, but it decreased slightly when the Cl− concentration exceeded 20 g/L. In all the cases, the corrosion rate exceeded 0.8 mm/a. The corrosion product film density initially increased and then decreased as the Cl− concentration increased. The corrosion products comprised mainly α-FeOOH, γ-FeOOH, β-FeOOH, Fe3O4, and γ-Fe2O3.

Funder

National Natural Science Foundation of China

China Huaneng Group Corporation Headquarters Science and Technology Project, Research and Development of Intelligent Water Resources Management Platform for Thermal Power Plants

Publisher

MDPI AG

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