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A Fe-C-Ca big cycle in modern carbon-intensive industries: toward emission reduction and resource utilization

机译:现代碳化碳密集型产业的FE-C-CA大循环:减少减排和资源利用

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Herein a big Fe-C-Ca cycle, clarifying the basic element flows and energy flows in modern carbon-intensive industries including the metallurgical industry and the cement industry, was proposed for the first time in the contexts of emission reduction and iron ore degradation nowadays. This big cycle was focused on three industrial elements of Fe, C and Ca and thus it mainly comprised three interdependent loops, i.e., a C-cycle, a Fe-cycle and a Ca-path. As exemplified, we started from the integrated disposal of hot steel slags, a man-made iron resource via char gasification and the employment of hematite, a natural iron resource greatly extended the application area of this idea. Accordingly, based on this concept, the theoretical potentials for energy saving, emission reduction and Fe resource recovery achieved in modern industry are estimated up to 7.66?Mt of standard coal, 63.9?Mt of CO2 and 25.2?Mt of pig iron, respectively.
机译:在这里,阐明了在包括冶金工业和水泥行业的现代碳密集型产业中的基本元素流量和能量流动,在第二次减排和铁矿石退化的情况下,提出了现代碳密集型产业中的基本元素流量和能量流动。这种大循环集中在Fe,C和Ca的三个工业元素上,因此它主要包括三个相互依存的环,即C循环,Fe周期和Ca-路径。如例,我们从热钢渣的综合处理开始,通过Char气化和赤铁矿的就业,自然的铁资源大大扩展了这个想法的应用领域。因此,基于这一概念,现代工业中实现的节能,减排和FE资源回收的理论潜力估计高达7.66吨标准煤,分别为63.9吨二氧化碳和25.2吨的猪铁。

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