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Accelerated corrosion of five commercial steels under a ZnCl_2-KCl deposit in a reducing environment typical of waste gasification at 673-773 K

机译:在典型的673-773 K废气气化还原环境中,ZnCl_2-KCl沉积物对五种商品钢的加速腐蚀

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The corrosion of five Fe-Cr commercial steels containing 0-18 wt.%Cr at 673-773 K has been studied in a reducing H_2-HCl-CO_2 atmosphere under a ZnCl_2-KCl deposit typical of waste gasification environments. In comparison with the behavior of the same steels in a similar gas mixture without salt deposit, all steels suffered from accelerated corrosion induced by the salt and formed porous scales with poor adherence to the underlying steels. Some Cl was detected close to the steels/scale interface, indicating that Cl-contain-ing species were able to go through the scale down to the metal matrix. Even though the corrosion rates generally decreased with increasing Cr content, the high-Cr stainless steel SS304 was still unable to provide a good corrosion resistance against the ZnCl_2-KCl deposit. The reaction mechanisms are discussed on the basis of thermodynamic considerations and of the "active oxidation" model.
机译:在还原气化的H_2-HCl-CO_2气氛下,典型的废气气化环境ZnCl_2-KCl沉积物中,研究了在673-773 K下五种含0-18 wt。%Cr的Fe-Cr商业钢的腐蚀。与相同的钢在无盐沉积的类似气体混合物中的行为相比,所有钢都受到盐诱导的加速腐蚀,并形成了对底层钢的附着力差的多孔水垢。在钢/氧化皮界面附近检测到一些Cl,表明含Cl的物种能够通过氧化皮向下到达金属基体。尽管腐蚀速率通常随Cr含量的增加而降低,但高Cr不锈钢SS304仍无法提供对ZnCl_2-KCl沉积物的良好耐腐蚀性。在热力学考虑和“活性氧化”模型的基础上讨论了反应机理。

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