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Analysis of the Engineering Process of Reforming Dead Catalysts for the Extraction of Platinum Group Metals

机译:铂金属提取改革催化剂的工程过程分析

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摘要

The analysis of the engineering process of reforming dead catalysts for the extraction of platinum group metals has been carried out. Fully-dead catalyst, having passed several cycles of regeneration and entitled to utilization, has the considerable carbonaceous deposits, both on external and internal surfaces. Their content averages 5.0% of the mass of the catalyst. The research objectively consisted in selection of the sweet roasting modes, promoting the fullest removal of the dense carbonaceous deposits from the surface of the dead platinum-rhenium catalysts. The kinetics research of carbonaceous removal deposits from the surface of the catalyst was carried out in a pipe-still heater; oxygen content, duration and temperature of sweet roasting being varied. The maximum temperature during the research reached 950°C, the maximum duration of isothermal holding didn't exceed 6 hours. The extent of carbonaceous deposits removal was calculated by changing sample weight. The kinetic curves were approximated by high-order polynomials, which made it possible to obtain a diagram, illustrating the degree of organic deposits removal, depending on temperature and firing time. It is shown that in the environment enriched to 30-35 vol. % oxygen, the engineering process of catalysts for regeneration is possible to be carried out at 650 °C, with holding for 2 hours at a specified temperature. The alternative of sweet roasting is the air blowing of dead catalysts at temperature of 800 °C within an hour. Both modes guarantee the complete removal of the dense carbonaceous deposits from the surface of the dead catalyst.
机译:进行了改革铂型金属萃取的改革催化剂的工程过程的分析。通过多个再生循环并有权使用的完全死催化剂具有相当大的碳质沉积物,无论是在外部和内表面上。它们的内容平均催化剂质量的5.0%。这些研究客观地由选择甜焙烧模式,促进从死铂 - 铼催化剂的表面的最大去除致密的碳质沉积物。在催化剂表面碳质去除沉积物的动力学研究在管道静止的加热器中进行;氧气含量,甜味烘烤的持续时间和温度变化。研究期间的最高温度达到950°C,等温控的最大持续时间不超过6小时。通过改变样品重量计算碳质沉积物的程度。通过高阶多项式近似动力学曲线,这使得可以获得图示的图,示出了有机沉积物的程度,这取决于温度和烧制时间。结果表明,在环境中富集到30-35卷。 %氧气,用于再生的催化剂的工程过程可以在650℃下进行,在特定温度下保持2小时。甜烘焙的替代方案是在每小时800℃的温度下的死催化剂的空气吹送。两种模式都保证了从死催化剂的表面完全除去致密的碳质沉积物。

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