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Thermodynamic Analysis of Thermochemical Recovery of High Temperature Wastes

机译:高温废物热化学回收的热力学分析

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This paper describes a feasibility study of direct heat recovery system from high temperature wastes over 1700K by using objective chemical reaction, in which enthalpy-exergy diagram, so-called thermodynmic compass, is introduced for evaluating various systems. Blast furnace slag was taken as an example for the evaluation and familiar endothermic reactions in the cement production, the chemical industry, etc, were selected as a combination process for the heat recovery. Exergy analysis of cement and methanol plants was also carried out for further discussion. The results showed that decomposition of limestone, reforming of methane and gasification of carbon are the most promising for heat recovery of the high temperature wastes; various slag and LD gas, from a viewpoint of effective use of exergy, not energy. This also appeals a possibility of next generation symbiotic steelworks with heat cascade utilization, rather than heat recovery.
机译:本文通过客观化学反应描述了从1700K以上高温废物中直接热回收系统的可行性研究,其中引入了热能图,即所谓的热动力罗盘,以评估各种系统。以高炉矿渣为例进行评估,并选择水泥生产,化学工业等中熟悉的吸热反应作为热回收的组合工艺。水泥和甲醇工厂的火用分析也进行了进一步的讨论。结果表明,石灰石的分解,甲烷的重整和碳的气化是高温废物热回收的最有前景的方法。从有效利用火用而不是能源的角度来看,各种炉渣和LD气体。这也吸引了具有热级联利用而不是热回收的下一代共生钢厂的可能性。

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