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Dew-Point Corrosion Behavior of 10# Carbon Steel inHCl-H2O Environment |
Guofu OU, Lulu ZHAO, Kai WANG, Kuanxin WANG, Haozhe JIN( ) |
Institute of Flow Induced Corrosion, Zhejiang Sci-Tech University, Hangzhou 310018, China |
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Abstract The influence of the pH value, impact velocity and impact angle of the corrosive medium (HCl droplet) on the dew point corrosion behavior of 10# carbon steel in a simulated HCl-H2O dew point corrosion environment of the atmospheric tower system was investigated by means of mass change measurement, scanning electron microscopy (SEM), X-ray diffraction (XRD). Results indicate that: the dew point corrosion rate of 10# carbon steel increases with the impact velocity, and decreases with the increasing pH value and impact angle of HCl droplet, while a turning point of the dew point corrosion rate exists at the impact angle of 45°. The corrosion mode of 10# carbon steel in the HCl-H2O environment is pitting corrosion, and there are many pits with different sizes and shapes on its surface, and Cl- in the solution will deepen the pits. The main composition of corrosion product on 10# carbon steel is α-FeOOH and Fe2O3.
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Received: 09 January 2017
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Fund: Supported by Coal Joint Fund from Natural Science Foundation of China and Shenhua Group Corporation Limited(U1361107), National Key R&D Plan (2017YFF0210403), Zhejiang Provincial Natural Science Foundation of China (LY17E060008) and Talent Project of Zhejiang Association for Science and Technology (2017YCGC016) |
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