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A thermal performance evaluation of a new integrated gas turbine-based multigeneration plant with hydrogen and ammonia production
International Journal of Hydrogen Energy ( IF 7.2 ) Pub Date : 2020-11-27 , DOI: 10.1016/j.ijhydene.2020.11.054
Nejat Tukenmez , Fatih Yilmaz , Murat Ozturk

In this study, a new combined system driving a gas turbine cycle has been proposed for seven useful outputs of power, hydrogen, ammonia, heating-cooling, drying and hot water. The proposed integrated plant mainly consists of the gas turbine cycle, Rankine cycle, two organic Rankine cycles, ejector-based cooling, hydrogen production and liquefaction, ammonia production and storage, drying and hot water generation sub-systems. In order to demonstrate that the designed system is an efficient and environmentally plant, the performance analysis was performed by using a software package. Before performing the performance assessment of the plant, the mathematical model of the integrated plant is prepared in accordance with thermodynamic equations. Basic equilibrium equations are used for the thermodynamic equations used. Obtaining multiple useful outputs from the system also have the positive effect on the system effectiveness. The energetic effectiveness of integrated plant for multigeneration with hydrogen and ammonia production is computed to be 62.18% and exergetic efficiency is 58.37%. In addition, the energetic and exergetic effectiveness of hydrogen production and liquefaction process are 57.92% and 54.23%, respectively.



中文翻译:

基于燃气轮机的新型多联产制氢和氨生产装置的热性能评估

在这项研究中,提出了一种新的组合系统来驱动燃气轮机循环,以提供七种有用的电力、氢气、氨、加热-冷却、干燥和热水输出。拟建的综合工厂主要由燃气轮机循环、朗肯循环、两个有机朗肯循环、基于喷射器的冷却、制氢和液化、氨的生产和储存、干燥和热水生成子系统组成。为了证明所设计的系统是一种高效且环保的工厂,使用软件包进行了性能分析。在对电厂进行性能评估之前,根据热力学方程准备集成电厂的数学模型。基本平衡方程用于所使用的热力学方程。从系统获得多个有用的输出也对系统有效性产生积极影响。经计算,多联产制氢、制氨一体化装置的能效为62.18%,火用效率为58.37%。此外,制氢和液化过程的能量和火用效率分别为57.92%和54.23%。

更新日期:2020-11-27
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