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The Influence of Potassium on the Boudouard Reaction in Manganese Production

机译:钾对锰生产中布氏反应的影响

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The reactivity of selected, industrially applicable, carbonaceous materials towards CO_2 has been investigated. Metallurgical cokes from various locations, single source cokes, and eucalyptus charcoal have been tested for reactivity in a thermo-gravimetric furnace. A graphite sample was added to the experimental plan as a reference. The effect of potassium on the CO_2 gasification rate for selected metallurgical cokes and single source cokes was studied after gaseous impregnation of the samples using potassium carbonate as a precursor. The deposited compound was then examined for chemical composition using EPMD technique. Results from the reactivity measurements using non-impregnated samples were compared with properties of the carbons and the best correlation is illuminated. Also, activation energy of the cokes is presented and compared with the activation energy of the potassium impregnated samples. The results showed that charcoal has the highest CO_2 reactivity, while graphite has the lowest reaction rate. The reactivity of different metallurgical cokes is similar and moderate, while cokes produced from single source coals exhibit strong variation in reactivity. Of the examined carbon properties, the alkali index showed the strongest influence on the reaction rate. Studies on catalytic gasification showed that the reactivity of the laboratory impregnated samples is higher and that the increase is related to the initial reactivity of the original material. Following this it can be stated that potassium affects all the carbons used in this work equally.
机译:已经研究了选定的,工业上可应用的碳质材料对CO_2的反应性。来自不同地点的冶金焦,单源焦和桉木炭已在热重炉中进行了反应性测试。将石墨样品添加到实验计划中作为参考。在以碳酸钾为前体对样品进行气态浸渍后,研究了钾对选定的冶金焦和单源焦的CO_2气化速率的影响。然后使用EPMD技术检查沉积的化合物的化学组成。将使用未浸渍样品的反应性测量结果与碳的性质进行比较,并阐明了最佳相关性。另外,给出了焦炭的活化能并将其与浸渍钾的样品的活化能进行比较。结果表明,木炭具有最高的CO_2反应性,而石墨具有最低的反应速率。不同冶金焦的反应性相似且适中,而由单一来源的煤生产的焦炭的反应性变化很大。在所检查的碳特性中,碱指数对反应速率的影响最大。催化气化的研究表明,实验室浸渍样品的反应性更高,并且增加与原始材料的初始反应性有关。在此之后,可以说钾同等地影响这项工作中使用的所有碳。

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