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Study of a low-carbon production strategy in the metallurgical industry in China

机译:中国冶金行业低碳生产战略研究

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Manufacturing is generally a country's largest energy consumer and CO2 emissions producer, especially in developing regions. In particular, the steel industry, which is the pillar of the manufacturing industry, has considerable potential for energy conservation and emissions reductions. This study presents a comprehensive review of a low carbon strategy for the metallurgical industry through the application of a composition method of system dynamics and a carbon flow analysis. This study combines three different, influential factors in an innovative way. These factors are the following: 1) the iron to steel ratio, 2) the application of new technologies and 3) the recycling rate. Results indicated that first, inputting additional Electric Arc Furnace Steel is the most efficient way to achieve the goals of both energy conservation and emissions reduction, and second, because of the high price and low stocks of scrap in China, the promotion of efficient technologies (blast furnace dehumidifier saving, TRT (Blast Furnace Top Gas Recovery Turbine Unit), BFG dry dust removal technology, blast furnace coal injection technology, blast furnace COG injection technology and DRI) and the development of a circular economy are the most feasible and viable methods to reduce carbon emissions. Based on these results, a long-term roadmap toward carbon control in the metallurgical industry was developed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:制造业通常是一个国家最大的能源消耗者和CO2排放产生者,尤其是在发展中地区。特别是作为制造业支柱的钢铁行业,在节能和减排方面具有巨大潜力。这项研究通过应用系统动力学的组成方法和碳流分析,对冶金行业的低碳战略进行了全面回顾。这项研究以创新的方式结合了三个不同的影响因素。这些因素如下:1)铁与钢的比例,2)新技术的应用,以及3)回收率。结果表明,首先,添加额外的电弧炉钢是实现节能和减排目标的最有效方法,其次,由于中国废钢价格高,库存低,促进了高效技术的发展(节约高炉除湿机,TRT(高炉煤气回收涡轮机组),高炉除尘技术,高炉喷煤技术,高炉COG注入技术和DRI)以及发展循环经济是最可行和可行的方法。减少碳排放。基于这些结果,制定了冶金行业碳控制的长期路线图。 (C)2015 Elsevier Ltd.保留所有权利。

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