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首页> 外文期刊>Journal of Materials Engineering and Performance >Early Corrosion Characterization of 316 Stainless Steel (Passivated in Supercritical Water with Na3PO4) in Subcritical Water Containing Oxygen and NaCl
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Early Corrosion Characterization of 316 Stainless Steel (Passivated in Supercritical Water with Na3PO4) in Subcritical Water Containing Oxygen and NaCl

机译:316不锈钢的早期腐蚀表征在含氧氧和NaCl的亚临界水中的316不锈钢(用NA3PO4钝化)

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摘要

Corrosion has severely hindered the development and application of high-temperature hydrothermal oxidation technologies for disposing of chloride-containing organic wastewater. This study explored the early corrosion behaviors of 316 stainless steel (316 SS) (UNS S31600), passivated by sodium phosphate (Na3PO4) in supercritical water in advance, in subcritical water (at 100, 160, 230, and 300 degrees C and 25 MPa) having high contents of oxygen (O-2) and sodium chloride (NaCl) for 50 h. The results show that the corrosion rate of the phosphate-passivated 316 SS was approximately half of that of the passivated 316 SS (pretreated in supercritical water without Na3PO4) under the same conditions. The surface oxides of the phosphate-passivated 316 SS consisted of Cr2O3, Fe2O3, CrPO4, FePO4, and Ni-3(PO4)(2). The passivation pretreatment of 316 SS in supercritical water with Na3PO4 could form a stable and protective oxide film containing phosphates. These phosphates significantly improved the corrosion resistance of 316 SS in subcritical water (containing oxygen and chloride) by preventing corrosive substances from contacting the alloy substrate.
机译:腐蚀严重阻碍了用于处理含氯有机废水的高温水热氧化技术的开发和应用。本研究探讨了316个不锈钢(316 SS)(UNS S31600)的早期腐蚀行为,在亚临界水(在100,160,230和300℃和25处,通过超临界水中的超临界水中的超临界水钝化具有高氧(O-2)和氯化钠(NaCl)的高含量为50小时的MPA)。结果表明,在相同条件下,磷酸盐钝化316SS的腐蚀速率约为钝化的316SS(在没有Na3PO4的超临界水中的预处理)的一半。磷酸盐钝化的316秒的表面氧化物由Cr 2 O 3,Fe 2 O 3,CRPO 4,FEPO4和Ni-3(PO4)(2)组成。使用Na3PO4的超临界水中316Ss的钝化预处理可以形成含有磷酸盐的稳定和保护性氧化物膜。这些磷酸盐通过防止腐蚀性物质接触合金基质,显着提高了亚临界水(含氧和氯化物)中的316秒的耐腐蚀性。

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