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Waste heat recovery heat transfer experience in cement

机译:水泥余热回收与传热经验

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摘要

Since the beginning of cement manufacturing, innovative process technologies have continuously evolved, aimed at making the cement process more energy efficient. In the last thirty years, WHR power systems have advanced globally with steam (SRC) and organic (ORC) Rankine cycles for power generation. With the advancement of additional environmental emission reductions, heat transfer techniques from one section of the cement process to provide re-heating for catalytic processes for DeNOx and THC/oHAP reductions requiring an optimum "temperature window" have evolved. On balance, today the technology for conservation and recovery of energy in cement has advanced, along with enhanced environmental control capability for catalytic processes requiring heat transfer management. Details of operating experience with process design and economic analysis for energy recovery and heat transfer process by thermal oil experience are presented in this paper. An additional benefit is that CO2 emissions are reduced by offsetting the need for additional fuel usage.
机译:自水泥制造开始以来,创新的工艺技术就不断发展,旨在使水泥工艺更加节能。在过去的三十年中,WHR电力系统已在全球范围内通过蒸汽(SRC)和有机(ORC)朗肯循环进行发电。随着额外的环境排放量减少的发展,已经发展出一种水泥工艺的传热技术,以为催化过程的再加热提供脱硝和减少THC / oHAP的催化作用,而这需要一个最佳的“温度窗口”。总而言之,如今,水泥中能量的保存和回收技术已经取得了进步,同时对于需要传热管理的催化过程,环境控制能力也得到了增强。本文详细介绍了过程设计方面的操作经验以及通过热油经验进行能量回收和传热过程的经济分析。另一个好处是,通过抵消对额外燃料使用的需求,减少了二氧化碳的排放。

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