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Integration Of Absorption Cooling Systems Into Micro Gas Turbine Trigeneration Systems Using Biogas: Case Study Of A Sewage Treatment Plant

机译:利用沼气将吸收式冷却系统集成到微型燃气轮机三联产系统中:一个污水处理厂的案例研究

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Absorption chillers can help to increase the performance of biogas-driven micro gas turbine (MGT) cogeneration plants. In this paper we analyse various integrated configurations of several types of commercially available absorption cooling chillers and MGT cogeneration systems driven by biogas. MGTs are fuelled with biogas and their waste heat is used to drive absorption chillers and other thermal energy users. The chillers considered in this study include single- and double-effect water/LiBr and ammonia/water chillers. The exhaust gas from the MGT can be used directly to drive the chiller or indirectly to produce hot water to drive the chiller. In this paper we conduct a case study for an existing sewage treatment plant. Chilled water is used to reduce humidity in the biogas pre-treatment process and cool the combustion air of the MGT. We identify the most interesting integrated configurations for trigeneration systems that use biogas and micro gas turbines. We analyse these configurations and compare them with conventional configurations using operational data from an existing sewage treatment plant. The best configurations are those that completely replace the existing system with a trigeneration plant that uses all the available biogas and additional natural gas to completely meet the heating demands of the sewage treatment plant.
机译:吸收式制冷机可以帮助提高沼气驱动的微型燃气轮机(MGT)热电联产设备的性能。在本文中,我们分析了由沼气驱动的几种类型的商用吸收式冷却冷却器和MGT热电联产系统的各种集成配置。 MGT以沼气为燃料,其余热用于驱动吸收式制冷机和其他热能用户。本研究中考虑的制冷机包括单效和双效水/溴化锂和氨/水制冷机。 MGT产生的废气可直接用于驱动冷却器,也可间接产生热水以驱动冷却器。在本文中,我们对现有污水处理厂进行了案例研究。冷冻水用于降低沼气预处理过程中的湿度并冷却MGT的燃烧空气。我们确定了使用沼气和微型燃气轮机的三代发电系统中最有趣的集成配置。我们分析这些配置,并使用现有污水处理厂的运行数据将其与常规配置进行比较。最好的配置是将这些系统完全替换为使用所有可用沼气和其他天然气的三代发电厂,以完全满足污水处理厂的供热需求。

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