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A comprehensive approach for designing, modeling and optimizing of waste heat recovery cycle and power generation system in a cement plant: A thermo-economic and environmental assessment

机译:水泥厂废热回收循环和发电系统设计,建模和优化综合方法:热经济和环境评估

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摘要

Mazandaran cement plant in Iran is to be retrofitted for decreasing energy consumption and increasing energy efficiency. This project came up with designing heat recovery from grate coolers (Air Quenching Cooler or AQC boiler) and heat recovery from cyclones' exhaust gases (Suspension Preheater or SP boiler). The procedures of modeling (in energy, exergy, economic and environmental aspects) and optimum design of waste heat recovery and power generation (WHRPG) systems for two parallel lines of cement production which are new and specific to our studied cement plant are reported here. The objective functions were exergy destruction (which was minimized) and relative annual benefit (which was maximized). Results for our case study for Rankine (Organic Rankine) cycle showed that using water (toluene) as working fluid provided 9.14 (6.56) MW power output with exergy destruction ratio of 47.9% (53.5%). Furthermore, the amount of fuel for producing steam and providing the equal value of power output was estimated to be 2.38 x 10(7) (1.7 x 10(7)) m(3) natural gas and its corresponding cost was 2.1 x 10(6) $/year (1.46 x 10(6) $/year), with 5.36 x 10(4) ton/year (3.81 x 10(4) ton/year) lower CO2 production. The payback period for equipment installed was 3.4 (5.1) years for water (toluene) as the working fluid.
机译:Makandaran在伊朗的水泥厂将被改装,以降低能耗和提高能效。该项目提出了从炉排冷却器(空气淬火冷却器或AQC锅炉)的热回收和从旋风器的废气(悬架预热器或SP锅炉)的热回收。在此报道,在这里,在我们研究的水泥厂的两次平行水泥生产中建模(在能量,走动,经济和环境方面)和最佳设计的垃圾热回收和发电(WHRPG)系统的优化设计。客观职能是出境的破坏(最小化)和相对年度福利(最大化)。结果对兰曲峰(有机朗肯)循环的案例研究表明,使用水(甲苯)作为提供的工作流体提供9.14(6.56)MW功率输出,具有47.9%(53.5%)。此外,估计用于生产蒸汽并提供电力输出等值的燃料的量为2.38×10(7)(1.7×10(7))m(3)天然气,其相应的成本为2.1 x 10( 6)$ /年(1.46 x 10(6)美元),5.36 x 10(4)吨/年(3.81 x 10(4)吨/年)CO2生产。安装设备的投资回收期为3.4(5.1)岁,水(甲苯)作为工作流体。

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