首页> 外文会议>2001 TMS (The Minerals, Metals amp; Materials Society) Annual Meeting, Feb 11-15, 2001, New Orleans, Louisana >Behaviour of Cu_2O particles in copper smelting heat recovery boiler conditions
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Behaviour of Cu_2O particles in copper smelting heat recovery boiler conditions

机译:Cu_2O颗粒在铜冶炼余热锅炉中的行为

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Primary copper production using suspension smelting techniques like Outokumpu Flash Smelting always causes some dust formation. Flue dust particles are formed when sulphide feed material reacts violently with oxygen inducing particle disintegration and total desulphurisation of fragments. In the process, flue dust follows the off-gases to the heat recovery boiler (HRB) where its sulphation takes place because of prevailing conditions. Sulphation releases heat and causes also a drop in particle melting temperature and, further, particle sticking to the walls and heat exchange tube banks. Sulphation of synthetic CU_2O particles were examined using a laboratory scale fluid-bed reactor. This study aims to a better understanding of flue dust behaviour in a HRB and, thus, to a better operational practise and design of a HRB. The effect of pso_2/Po_2 -ratio and temperature on the sulphation kinetics were tested. Standard chemical analysis, light optical and scanning electron microscopy with energy dispersive spectroscopy were used to examine the samples.
机译:使用悬浮熔炼技术(例如Outokumpu闪速熔炼)生产的初级铜总是会形成一些粉尘。当硫化物​​原料与氧气剧烈反应时,会形成烟尘颗粒,从而导致颗粒分解和碎片完全脱硫。在此过程中,烟尘随废气而流至热回收锅炉(HRB),在该处由于普遍条件而发生硫酸化。硫化会释放热量,还会导致颗粒熔化温度下降,进而使颗粒粘在壁和热交换管束上。使用实验室规模的流化床反应器检查了合成CU_2O颗粒的硫化。这项研究旨在更好地了解HRB中的烟尘行为,从而更好地操作和设计HRB。测试了pso_2 / Po_2比和温度对硫酸化动力学的影响。使用标准化学分析,光学光学和带能谱仪的扫描电子显微镜检查样品。

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