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Ammonia-water based thermal conversion technology: Applications in waste heat recovery for the cement industry

机译:基于氨水的热转换技术:水泥行业废热回收中的应用

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Cement production is one of the most energy intensive industrial processes in the world. In many world regions, energy cost is 50% to 60% of the direct production cost of cement. Energy cost is incurred due to the need for large quantities of thermal heat for the kiln, calcination and drying processes and electrical energy for operation of motors for grinding mills, fans, conveyers and other motor driven process equipment. As electricity prices increase, cement producers are installing energy saving devices throughout cement plants to incrementally reduce purchased power. A major energy conservation project available to each cement facility is utilization of the exhaust gases from preheater towers and clinker coolers to produce electricity. Both of these heat sources are classified as medium to low temperature heat for electrical power generation. These heat streams are well matched for use of the Kalina Cyclereg process for waste heat recovery (WHR) to produce electricity. This paper describes the conditions of typical cement plant heat sources available for utilization to generate electricity. The sources of heat from cement plants are compared with specific heat sources utilized in existing Kalina Cycle power plant projects. The Kalina Cycle is described for power generation "inside the fence" of a cement plant facility including specific environmental and operational safety considerations
机译:水泥生产是世界上最具能源密集型工业过程之一。在许多世界地区,能源成本为水泥直接生产成本的50%至60%。由于需要大量的热量为窑,煅烧和干燥工艺以及用于研磨轧机,风扇,输送机和其他电动机驱动的工艺设备的电动机的电动机的大量热量而产生的能量成本。随着电力价格的增加,水泥生产商正在整个水泥厂安装节能器件,以逐步减少购买的电力。每个水泥设施可用的主要节能项目是利用预热器塔和熟料冷却器的废气以产生电力。这两种热源被归类为介质到低温热量用于电力​​发电。这些热流良好匹配,用于使用Kalina Cyclereg方法进行废热回收(WHR)以产生电力。本文介绍了可用于利用电力的典型水泥厂热源的条件。将来自水泥厂的热源与现有Kalina循环发电厂项目中使用的特定热源进行比较。在包括特定的环境和操作安全考虑的水泥厂设施的发电“围栏内”的发电“围栏”中描述了Kalina循环

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