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Effect of Coke Breeze Distribution on Coke Combustion Rate of the Quasi-particle

机译:焦炭微风分布对准颗粒焦炭燃烧率的影响

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Coke combustion rate in an iron ore sintering process is one of the most important factors for quality and productivity of sintering iron ore.In order to improve coke combustion efficiency, a new granulation method was developed. In the new granulation method, coke and limestone are segregated to the particle’s surface. The purpose of this study is to investigate the effect of coke distribution in the quasi-particle on coke combustion rate.Four kinds of samples, which have different coke distributions, were prepared. The samples consist of interior part and exterior part.Combustion experiments were carried out under air atmosphere at 1073 K, 1223 K, 1373 K and 1523 K. From the results, coke combustion rates were improved when added coke were segregated to sample’s surface. At higher experimental temperature, the combustion rates become faster. The results were analyzed by using unreacted-core model with one reaction interface.From the kinetic analysis, it was found that the coke distribution of the quasi-particle had effects on not the interfacial reaction rate but the oxygen diffusion. In other words, oxygen diffusion in the quasi-particle become faster when added coke was segregated to the quasi-particle’s surface. This is one of the main reasons that coke combustion rate in quasi-particle made from new granulation method was improved.
机译:铁矿石烧结过程中焦炭燃烧速率是影响铁矿石烧结质量和生产率的最重要因素之一。为了提高焦炭燃烧效率,开发了一种新的造粒方法。在新的制粒方法中,焦炭和石灰石被隔离在颗粒的表面。本研究的目的是研究准颗粒中焦炭分布对焦炭燃烧率的影响。制备了四种不同焦炭分布的样品。样品由内部和外部组成。燃烧实验是在空气中1073 K,1223 K,1373 K和1523 K下进行的。结果表明,将添加的焦炭隔离到样品表面可以提高焦炭的燃烧速率。在更高的实验温度下,燃烧速率变得更快。使用具有一个反应界面的未反应核模型对结果进行了分析。从动力学分析中发现,准颗粒的焦炭分布对界面反应速率和氧扩散均没有影响。换句话说,当添加的焦炭被隔离到准粒子的表面时,准粒子中的氧扩散会变得更快。这是新造粒方法制得的准颗粒中焦炭燃烧速率提高的主要原因之一。

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