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Influence of mineral matter on coke reactivity with carbon dioxide

机译:矿物质对焦炭与二氧化碳反应性的影响

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A method to improve blast furnace efficiency and make it sustainable is to lower the temperature of the iron oxide reduction using a highly reactive coke. Understanding the role of coal rank, maceral composition and mineral matter in coke in the gasification reaction under these new conditions is of major importance. Four cokes prepared from Australian coals of varying rank, maceral composition and ash composition were gasified with carbon dioxide. The rank and maceral composition of the parent coals did not appear to be related to the reactivity of the cokes. However, coke reactivity increased with increasing total amount of catalytic minerals in crystalline phases such as metallic iron, iron sulfides. Calcium sulfide could be a potential catalyst for the gasification reaction. Iron, potassium and sodium present in the amorphous phase did not appear to have any effect on coke reactivity. Calcium was present only in the crystalline phases. Knowing the form and amount of the mineral phases that catalyse the gasification reaction in coke would improve the ability to predict coke reactivity. This knowledge would contribute to more efficiently matching cokes to blast furnace requirements.
机译:一种提高高炉效率并使之可持续的方法是使用高反应性焦炭降低氧化铁还原的温度。在这些新条件下,了解煤级,显微组成和矿物质在焦炭在气化反应中的作用至关重要。用二氧化碳气化由不同等级,宏观组成和灰分组成的澳大利亚煤制得的四种焦炭。母体煤的等级和宏观组成似乎与焦炭的反应性无关。但是,焦炭反应性随结晶相(例如金属铁,硫化铁)中催化矿物总量的增加而增加。硫化钙可能是气化反应的潜在催化剂。非晶相中存在的铁,钾和钠似乎对焦炭反应性没有任何影响。钙仅存在于结晶相中。知道在焦炭中催化气化反应的矿物相的形式和数量将提高预测焦炭反应性的能力。这些知识将有助于更有效地将焦炭与高炉要求匹配。

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