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Integration of coal gasification and waste heat recovery from high temperature steel slags: an emerging strategy to emission reduction

机译:煤气化与高温钢渣余热回收的整合:减少排放的新兴策略

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摘要

With the continuous urbanization and industrialization in the world, energy saving and greenhouse gas (GHG) emission reduction have been serious issues to be addressed, for which heat recovery from traditional energy-intensive industries makes up a significant strategy. Here we report a novel approach to extract the waste heat and iron from high temperature steel slags (1450–1650 oC) produced in the steel industry, i.e., integration of coal gasification and steel slag treatment. Both the thermodynamics and kinetics of the pertinent reactions were identified. It was clarified that the kinetic mechanism for gasification varied from A2 model to A4 model (Avrami-Erofeev) in the presence of slags. Most importantly, the steel slags acted not only as good heat carriers but also as effective catalysts where the apparent activation energy for char gasification got remarkably reduced from 95.7 kJ/mol to 12.1 kJ/mol (A2 model). Furthermore, the FeO in the slags was found to be oxidized into Fe3O4, with an extra energy release, which offered a potential for magnetic separation. Moreover, based on the present research results, an emerging concept, composed of multiple industrial sectors, was proposed, which could serve as an important route to deal with the severe environmental problems in modern society.
机译:随着世界上持续的城市化和工业化,节能和减少温室气体(GHG)排放已成为亟待解决的重大问题,传统能源密集型产业的热回收是一项重要的战略。在这里,我们报告了一种从钢铁工业生产的高温钢渣(1450–1650 o C)中提取废热和铁的新方法,即煤气化和钢渣处理的整合。确定了相关反应的热力学和动力学。澄清了在存在炉渣的情况下,气化的动力学机理从A2模型到A4模型(Avrami-Erofeev)是不同的。最重要的是,钢渣不仅充当了良好的载热体,而且还充当了有效的催化剂,炭化气的表观活化能从95.7 kJ / mol显着降低至12.1 12.kJ / mol(A2模型)。此外,发现炉渣中的FeO被氧化成Fe3O4,并释放出额外的能量,为磁选提供了潜力。此外,根据目前的研究结果,提出了一个由多个工业部门组成的新兴概念,可以作为解决现代社会严重环境问题的重要途径。

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