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RECENT DEVELOPMENTS IN DRY SLAG GRANULATION:A PATH TO IMPROVING SAFETY AND SUSTAINBILITY OF THE METALLURGICAL SECTOR

机译:干渣造粒的最新发展:提高冶金部门安全性和可持续性的途径

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Molten slag from pyrometallurgical furnaces is tapped at high temperature, carrying a large amount of thermal energy. But the common slag dumping and water granulation methods used for slag treatment do not permit energy recovery. Furthermore, water is present in these processes and while operations are designed to minimize risks of steam explosions, from the contact of slag with water, these common slag handling practices have never been inherently safe. Common handling practices do permit some slags to be sold, but often in low volumes at low prices. Dry granulation offers advantages over these common slag handling practices, including the production of by-products, the recovery of thermal energy, and the eliminated consumption and safety hazards of water. For these reasons, there have been various studies in dry granulation and heat recovery, but most have never been brought to commercial scale due to scalability and cost challenges. Ecomaister-Hatch has developed and brought to commercial scale a reliable and simple dry granulation and heat recovery technology. Here we review common slag handling practices, the developments in dry slag granulation over the last three decades, introduce the Ecomaister-Hatch dry slag granulation process, and elaborate on future applications of the technology in the processing of argon oxygen decarburization and blast furnace slags.
机译:来自PyromePuralgurgical炉的熔渣在高温下敲击,携带大量的热能。但用于熔渣处理的普通炉渣和水造粒方法不允许能量回收。此外,水的存在在这些过程中,虽然操作旨在最大限度地减少蒸汽爆炸的风险,从渣与水的接触,这些常见的渣处理的做法从来没有固有安全性。常见的处理实践确实允许一些渣销售,但通常以低价格销售。干法造粒优于这些普通炉渣处理实践,包括副产品的生产,热能恢复以及消除的消费和水的安全危害。出于这些原因,在干造粒和热量恢复中存在各种研究,但由于可扩展性和成本挑战,大多数从未被带入商业规模。 Ecomaister-Hatch已经开发并带到了商业规模可靠而简单的干燥造粒和热回收技术。在这里,我们审查了普通的渣处理实践,过去三十年中的干渣造粒的发展,引入了生态瘤孵化干渣造粒过程,并详细阐述了该技术在氩气脱碳和高炉炉渣加工中的应用。

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