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Analysis and Prediction of Corrosion of Refractory Materials by Potassium during Biomass Combustion-Thermodynamic Study

机译:生物质燃烧-热力学研究中钾对耐火材料腐蚀的分析与预测

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As a kind of renewable resource, biomass has been used more and more widely, but the potassium contained in biomass can cause corrosion of the refractory. For a better understanding of corrosion thermodynamic mechanisms, the five components of common refractory materials (magnesium chrome spinel MgO·Cr 2 O 3 , magnesium aluminum spinel MgO·Al 2 O 3 , Al 2 O 3 , MgO, and Cr 2 O 3 ) with potassium salts (K 2 CO 3 , K 2 SO 4 , and KCl) under high-temperature were studied by using the FactSage TM 7.0 software. Thermodynamic calculation results indicate that MgO is the best corrosion resistance of the five components of refractory materials. Based on the obtained results, the corrosion experiments in the laboratory were carried out (muffle furnace or high-temperature tube furnace) for corrosion reaction of KCl and MgO. The chemical compositions of the corroded samples were analyzed by X-ray diffraction (XRD). Under laboratory conditions (600–1200 °C), no corrosion products have been observed in the high-temperature corrosion experiments. The result indicates that to prevent the corrosion processes, refractories should contain as much MgO as possible.
机译:生物质作为一种可再生资源,已经得到越来越广泛的应用,但是生物质中所含的钾会引起耐火材料的腐蚀。为了更好地理解腐蚀热力学机理,常用耐火材料的五种成分(镁铬尖晶石MgO·Cr 2 O 3,镁铝尖晶石MgO·Al 2 O 3,Al 2 O 3,MgO和Cr 2 O 3)使用FactSage TM 7.0软件研究了在高温下用钾盐(K 2 CO 3,K 2 SO 4和KCl)处理的过程。热力学计算结果表明,MgO是耐火材料五种成分中最佳的耐蚀性。根据所得结果,在实验室(马弗炉或高温管式炉)中进行了KCl和MgO腐蚀反应的腐蚀实验。通过X射线衍射(XRD)分析腐蚀样品的化学成分。在实验室条件下(600–1200°C),在高温腐蚀实验中未观察到腐蚀产物。结果表明,为防止腐蚀过程,耐火材料应包含尽可能多的MgO。

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