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Waste Heat Recovery Power Generation Systems for Cement Production Process

机译:水泥生产过程废热回收发电系统

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Cement production process is highly energy intensive with approximately 3–4-GJ energy consumption per ton of cement produced. Moreover, energy costs are responsible for 25% of total production costs, whereas 75% of primary energy usage is thermal energy. However, the process is characterized by a significant amount of heat loss mainly by the flue gases and the air stream used for cooling down the clinker. Waste heat is generated by a fuel combustion process or chemical reactions and then dumped into the environment although it could still be reused for some useful and economic purposes. Reducing the amount of wasted heat as well as reusing it has been a matter of great concern for the past couple of decades. A heat recovery system could increase the efficiency of the cement plant as well as reduce the amount of emissions to the environment by lowering the temperature of the exhaust gases. This paper is an introduction to waste heat recovery generation systems and their operations and feasibility for the cement production process and is also a review of the four common power generation cycles, i.e., steam Rankine cycle, organic Rankine cycle, Kalina cycle, and supercritical cycle.
机译:水泥生产过程是高能耗的,每生产一吨水泥大约消耗3-4 GJ能耗。此外,能源成本占总生产成本的25%,而一次能源使用的75%是热能。然而,该方法的特征在于大量的热损失,主要是通过烟气和用于冷却熟料的空气流。废热是通过燃料燃烧过程或化学反应产生的,然后被排放到环境中,尽管它仍然可以出于某些有用的经济目的而被再利用。在过去的几十年中,减少浪费的热量并加以再利用一直是人们极为关注的问题。热回收系统可以通过降低废气温度来提高水泥厂的效率,并减少向环境的排放量。本文介绍了废热回收发电系统及其在水泥生产过程中的可行性以及可行性,同时还回顾了四个常见的发电循环,即蒸汽朗肯循环,有机朗肯循环,卡利纳循环和超临界循环。 。

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