首页> 外文学位 >STUDIES OF THE RATE PHENOMENA IN PARTICULATE FLASH REACTION SYSTEMS: OXIDATION OF METAL SULFIDES.
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STUDIES OF THE RATE PHENOMENA IN PARTICULATE FLASH REACTION SYSTEMS: OXIDATION OF METAL SULFIDES.

机译:特定的闪光反应系统中速率现象的研究:金属硫化物的氧化。

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摘要

The chemical and physical rate phenomena associated with the flash oxidation of metal sulfides have been examined thoroughly, by means of analysis of the literature, experimental work on single sulfide particles, and examination of the reaction products obtained from the experimental flash reactor at the Henry Krumb School of Mines of Columbia University and the Outokumpu Company pilot plant at Pori, Finland.; On the basis of the above work, the appropriate equations for mass, energy and momentum transfer for gas-solid and gas-liquid reactions were developed, along with the equations of continuity and motion in a mathematical model of the reaction system. A computer program was then developed for solving the simultaneous multi-stage chemical reaction, phase transformation, fragmentation, fluid flow and heat/mass transfer equations involved.; The results of this analysis show that there are three major reaction rate regimes, namely: sulfide decomposition, oxidation of decomposed sulfide and oxidation of molten sulfide. Substantial reduction in the rate of oxygen consumption occurs when particles move from one regime to the next. The initial reaction when particles are still in solid phase was found to proceed topochemically. When particle temperature reaches the melting point, there is some particle fragmentation and mass transfer through the liquid film accompanied by fast chemical reaction is shown to be the rate determining step in the ensuing gas-liquid reaction stage.; The predicted behavior of various process variables was compared with the experimental results obtained in the Pori pilot reactor of Outokumpu Oy. and also the developed model was applied to conditions that simulate those in the reaction shaft of an industrial copper flash smelting reactor. Discussion of results is divided into two sections: (1) Simulation of particle reaction phenomena. (2) Simulation of reactor operation.; The detailed behavior of the particles and gas in the flash reaction shaft is examined in the first section. The temperature and concentration profiles for each size fraction of concentrate and gas, and the average axial velocity profiles for the gas and particles have been provided.; In the second section, the effect of following key process operation and design parameters on the overall performance of a reactor is examined: wall temperature, oxygen enrichment and loading, inlet gas pre-heating, particle size distribution, feed rate of concentrate and inert materials and reactor size.
机译:通过文献分析,单一硫化物颗粒的实验工作以及在亨利·克鲁姆(Henry Krumb)的实验性闪蒸反应器中获得的反应产物的检测,对与金属硫化物的快速氧化有关的化学和物理速率现象进行了彻底的检查。哥伦比亚大学矿业学院和奥托昆普公司在芬兰波里的试点工厂。在上述工作的基础上,开发了气固和气液反应的质量,能量和动量传递的适当方程式,以及在反应系统数学模型中的连续性和运动方程式。然后开发了一个计算机程序来解决同时发生的多阶段化学反应,相变,碎裂,流体流动和热/质量传递方程。分析结果表明,存在三种主要的反应速率机制:硫化物分解,分解的硫化物氧化和熔融的硫化物氧化。当颗粒从一种状态转移到另一种状态时,会大大降低耗氧率。发现当颗粒仍为固相时的初始反应在拓扑化学上进行。当颗粒温度达到熔点时,有一些颗粒破碎,通过液膜的传质伴随着快速的化学反应,是随后的气液反应阶段的速率确定步骤。将各种过程变量的预测行为与在Outokumpu Oy的Pori中试反应器中获得的实验结果进行了比较。并将开发的模型应用于模拟工业铜闪速熔炼反应器反应竖井中的条件。对结果的讨论分为两个部分:(1)粒子反应现象的模拟。 (2)反应堆运行模拟。在第一部分中检查了闪蒸反应竖井中颗粒和气体的详细行为。提供了每种尺寸的精矿和气体的温度和浓度分布图,以及气体和颗粒的平均轴向速度分布图。在第二部分中,研究了以下关键工艺操作和设计参数对反应器整体性能的影响:壁温,氧气富集和负载,进气预热,粒度分布,精矿和惰性物料的进料速度和反应堆的大小。

著录项

  • 作者

    KIM, YOUNG HWAN.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Engineering Metallurgy.
  • 学位 Eng.Sc.D.
  • 年度 1987
  • 页码 305 p.
  • 总页数 305
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

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