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Compositional design of low carbon sulphuric acid dewpoint corrosion resistant steel and corresponding anticorrosive mechanism

机译:低碳硫酸露点耐腐蚀钢的成分设计及相应的防腐机理

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摘要

The optimal contents of C, S, Cu and Sb in a new low alloy steel for the purpose of improving the sulphuric acid dewpoint corrosion resistance were investigated by weight loss and potentiodynamic polarisation in 50 wt-%H_2SO_4 at 70℃. The optimal elemental contents of C, S, Cu and Sb in the low carbon sulphuric acid dewpoint corrosion resistant steel (SADPS) are 0·09, 0·016, 0·3 and 0·09 respectively. The corrosive products of Fe_2(SO_4)_3 and FeSO_4 were found on the surface of plain low carbon steel while corrosive products of (Cu,Fe)SO_4, FeSbO_4, FeSb_2O_4, CuSbO_4 and CuO were found on the surface of SADPS. Potentiodynamic polarisation test also revealed that the higher corrosion resistance of SADPS was due to inhibition of the cathodic reaction due to surface enrichment by the alloying elements.
机译:通过在70wt%的50wt%H_2SO_4中的失重和电势极化,研究了一种新型的低合金钢中C,S,Cu和Sb的最佳含量,以提高其耐硫酸露点腐蚀性能。低碳硫酸露点耐蚀钢(SADPS)中C,S,Cu和Sb的最佳元素含量分别为0·09、0·016、0·3和0·09。在普通低碳钢表面发现Fe_2(SO_4)_3和FeSO_4的腐蚀产物,而在SADPS表面发现(Cu,Fe)SO_4,FeSbO_4,FeSb_2O_4,CuSbO_4和CuO的腐蚀产物。电位动力学极化试验还表明,SADPS的较高耐蚀性是由于合金元素表面富集而抑制了阴极反应。

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