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METTOP PROCESS CONTROL AND REGULATION SYSTEM

机译:Mettop过程控制和调节系统

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The Peirce Smith converter is the key metallurgical vessel in the majority of copper smelters. During the two step process, oxygen enriched air is injected through a row of tuyeres into the matte received from a primary smelting unit. Additionally, in the first step the iron content is oxidized into a fayalite slag by the addition of silica. During the second step, the remaining copper sulphide is converted into blister copper with a final sulphur content of approximately 200 ppm. The overall efficiency of this process is determined by the total reaction time, the slag quality and quantity, and the chemistry of the final blister copper. To increase the reaction kinetics during both stages, the METTOP Process Control and Regulation (MPCR) system was developed, which consists of four elements: OPC -^sOptical product control ACR -^sAutomatic computer regulation GCU -^sGas control unit GIS -^sGas injection system. The OPC system from SEMTECH records the optical spectrum emitted by the off gas flame providing immediate, detailed process information. Using this online data, additional gas can be automatically injected into the converter through a gas injection system opposite the tuyere zone. An improved oxygen distribution in the melt and the accurate determination of the process end point results in a significant reduction in the process cycle time. Furthermore, by maintaining the reaction closer to the equilibrium the final sulphur and oxygen content can be reduced compared to the conventional process. In particular, the final sulphur content can be lower than 70 ppm, eliminating the need for an oxidation step in the anode furnace.
机译:Peirce Smith转换器是大多数铜冶炼厂的关键冶金血管。在两个步进过程中,富氧空气通过一排大块喷射到从初级熔炼单元接收的遮罩中。另外,在第一步中,通过加入二氧化硅将铁含量氧化成配位渣。在第二步中,将剩余的硫化铜转化为泡罩铜,最终硫含量约为200ppm。该方法的整体效率由总反应时间,渣质量和数量和最终泡罩铜的化学决定。在两个阶段增加反应动力学,开发了Mettop过程控制和调节(MPCR)系统,由四个元素组成:OPC - ^ Soptical产品控制ACR - ^ Sautomatic计算机调节GCU - ^ SGAS控制单元GIS - ^ SGAS注射系统。 SEMTECH的OPC系统记录了由OFF气体火焰发出的光谱,提供即时详细的处理信息。使用该在线数据,可以通过对与风口区域相对的气体喷射系统自动注入转换器中的额外气体。改善熔体中的氧气分布和过程终点的精确测定导致过程循环时间显着降低。此外,通过将反应保持更接近的反应,与常规方法相比,可以减少最终硫和氧含量。特别地,最终的硫含量可以低于70ppm,消除了阳极炉中氧化步骤的需要。

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