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Exergy,CO_2 and Economical Analyses of the Hydrogen Production Using Waste Heat from Molten Slag in the Steel Industry

机译:钢铁行业利用熔渣废热制氢的火用,CO_2和经济分析

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摘要

A feasibility study of the hydrogen production from high temperature waste heat in the steel industry is carried out from the viewpoints of thermodynamics and economics.The waste heat of molten slag is chemically recovered by endothermic methane-steam reforming.To recover the sensible/latent heat of molten slag directly,it is granulated by a spinning disk atomizer and is cooled by a mixture of steam and methane.In this study,exergy analysis of the proposed system was conducted on the basis of the total unrecovered waste heat.A simple heat and material balance model was employed to evaluate the possibility of Japanese steelworks as a hydrogen station by calculating exergy loss and cost benefit.The results show that the proposed heat recovery system for the production of hydrogen has a less exergy loss of only 12% as compared to the unrecovered system.It also gives a cost benefit totaled US 277 million based on the annual steel production of 102 million tons.The results also offer a possibility for hydrogen production with high cost performance by utilizing waste heat from high temperature industries.
机译:从热力学和经济学的角度对钢铁行业高温废热制氢的可行性进行了研究,通过吸热甲烷蒸汽重整化学回收了熔融炉渣的废热,以回收显热/潜热。直接将熔融炉渣的一部分通过旋转盘式雾化器制粒,并通过蒸汽和甲烷的混合物进行冷却。在本研究中,基于未回收的废热总量对拟议系统进行了火用分析。通过计算物料平衡模型,通过计算火用损失和成本效益来评估日本钢铁厂作为加氢站的可能性。结果表明,与氢相比,拟议的制氢热回收系统的火用损失仅为12%基于每年1.02亿吨的钢铁产量,它还带来了总计2.77亿美元的成本效益。利用高温行业的余热,以高成本效益生产氢气。

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