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The influence of small amounts of KCI(s) and ZnCI2(s) on the high temperature corrosion of a Fe-2.25Cr-1 Mo steel at 300 and 400°C

机译:少量KCl(S)和ZnCl2(S)对300和400°C的Fe-2.25Cr-1 Mo钢的高温腐蚀的影响

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It is well known that alkali and heavy metal salts, especially lead and zinc chlorides increase the corrosivity of deposits even at relatively low material temperatures (about 250°-450°C).This causes large corrosion problems in e.g. boilers firing fuels containing these species. In order to limit fouling of these boiler and increasing fuel flexibility it is important to better understand the corrosion mechanism caused by these species. Recent studies have shown that KCI(s) is very corrosive towards the low-alloyed steel Fe-2.25Cr-1 Mo at 400 °C [1,2]. As the initial reaction is very fast it was studied by ESEM in-situ exposures and analysis. The initial stages of corrosion are considered too strongly influence the later corrosion behavior. It was shown that rapid corrosion is initialized well below 400 °C [2]. This can be seen in Figure 1 where the corrosion behavior of a KCI particle is monitored in the ESEM at 300-400 °C [2]. The aim with this work is to study the corrosion behavior of ZnCI2 and KCI at 300-400 °C on the low alloyed steel Fe-2.25Cr-1Mo.The initial stages may be studied with the ESEM in-situ exposure technique. Longer exposures times (up to 168h) will be studied using tube furnaces and in-situ TG with a Rubotherm system. The corrosion products will be investigated by FIB/SEM, SEM/EDX and XRD.
机译:它公知的是碱金属和重金属盐,尤其是铅和锌的氯化物增加沉积物的腐蚀性,即使在相对较低的材料的温度(约250°-450℃)。这会导致大的腐蚀问题在例如锅炉点火含有这些物质燃料。为了将这些锅炉的限制污染和提高燃料灵活性也更好地了解造成这些物种的腐蚀机理是非常重要的。最近的研究已经表明,KCI(s)为对低合金钢的Fe-2.25Cr-1沫非常腐蚀性的,在400℃[1,2]。作为初始反应是非常快的它是由ESEM原位曝光和分析研究。腐蚀的初始阶段被认为是过于强烈地影响着后来的腐蚀行为。结果表明迅速腐蚀是公低于400℃[2]进行初始化。这可以在图1,其中一个KCI粒子的腐蚀行为在ESEM在300-400℃[2]监测中可以看出。与此工作的目的是研究在对低合金钢的Fe-2.25Cr-1Mo.The初始阶段可以与ESEM原位曝光技术进行研究300-400℃下的ZnCl 2和KCI的腐蚀行为。更长时间的曝光时间(长达168小时)将利用管式炉和原位TG与Rubotherm系统进行研究。腐蚀产物将FIB / SEM,SEM / EDX和XRD进行调查。

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