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A comparative study on environmental impact analysis of synthetic and ESR flux used for refining of steel

机译:用于精制钢的合成和ESR通量环境影响分析的比较研究

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Synthetic fluxes used in the steel industry are used for the refining of liquid steel to remove sulfur, phosphorus, and non-metallic inclusions so as to improve the mechanical property and performance of steel during critical applications. Similarly, Electro Slag Remelting (ESR) fluxes are used during the remelting of steel ingots in the ESR process for refining purpose. These fluxes have been manufactured by mixing the various slag components or fusing them at a high temperature. Both of these manufacturing methods have pros and cons during refining of steel. This investigation focuses on the life cycle assessment of different manufacturing processes of fluxes for steel refining. The major objective of this investigation is to perform an analysis of environmental impact assessment of the processes. A detailed comparison of the environmental impact has been carried out and discussed relative to the contribution of different unit steps involved in the manufacturing stage for the cradle-to-gate analysis. The results indicate that energy consumption as well as environmental impact is significant for the mixer and furnace heating step during production of refining fluxes for the steel industry.
机译:钢铁工业中使用的合成助熔剂用于液体钢的精炼,除以硫,磷和非金属夹杂物,以改善关键应用期间钢的机械性能和性能。类似地,在ESR过程中钢锭的重熔期间使用电渣重熔(ESR)助熔剂以进行精炼目的。通过在高温下将各种炉渣组件混合或将它们熔化它们来制造这些助熔剂。这两种制造方法在精炼钢中具有优缺点。本研究侧重于钢精炼助熔剂不同制造过程的生命周期评估。本调查的主要目标是对流程进行环境影响评估进行分析。已经进行了环境影响的详细比较,并相对于摇篮到栅极分析所涉及的不同单位步骤的贡献来讨论。结果表明,能耗以及环境影响对于钢铁工业精炼通量的生产过程中的混合器和炉加热步骤具有重要意义。

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