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首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >NaOH-assisted direct reduction of Ring of Fire chromite ores, and the associated implications for processing
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NaOH-assisted direct reduction of Ring of Fire chromite ores, and the associated implications for processing

机译:NaoH辅助直接减少火环矿石环,以及对加工的相关影响

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摘要

As part of a broader programme to fully characterize the chromite ores discovered in the 'Ring of Fire' region of northern Ontario, NRCan and private research facilities in Canada have performed extensive test work over the past six years. The studies focused on developing alternative approaches for producing ferrochrome at lower temperatures and with fewer greenhouse gas emissions. The use of various fluxes or catalysts for accelerated direct reduction had yielded promising results, particularly with caustic soda (NaOH). The initial work had been protected by a patent known as the 'KWG process'. The most recent work by NRCan has confirmed that the addition of NaOH to chromite ores in carefully controlled amounts leads to high degrees of metallization at much lower temperatures than would be achieved by conventional smelting technologies, at greatly accelerated reactions rates. This paper summarizes the key findings of the latest work, including the role of NaOH in the reduction process and parameters influencing the degree of metallization and alloy particle growth. The paper will also discuss the implications of the results with respect to benefits, challenges, and opportunities for processing Ring of Fire chromite ores into saleable chrome units.
机译:作为更广泛方案的一部分,以完全表征在安大略省北部的“火环”区域中发现的铬铁矿矿石,加拿大的NRCAN和私人研究设施在过去六年中进行了广泛的考试工作。研究重点是在较低温度下开发替代方法生产铬铁,更少的温室气体排放。使用各种助熔剂或催化剂的加速直接还原均产生了有希望的结果,特别是苛性钠(NaOH)。最初的工作受到称为“KWG过程”的专利保护。 NRCAN的最新工作证实,在精心控制的量中向铬铁矿矿石添加NaOH对铬铁矿的增加,其温度远低于常规冶炼技术的温度远低于较低的反应率。本文总结了最新工作的关键结果,包括NaOH在减少过程中的作用和影响金属化程度和合金颗粒生长的参数。本文还将讨论结果对福利,挑战和加工铬铁矿环圈的福利,挑战和机会的影响。

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