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Exergoeconomic optimization of an ammonia–water hybrid absorption–compression heat pump for heat supply in a spraydrying facility

机译:氨 - 水混合吸收 - 压缩热泵的经济优化,用于喷雾干燥设备的供热

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摘要

Spray-drying facilities are among the most energy intensive industrial processes. Using a heat pump to recover waste heat and replace gas combustion has the potential to attain both economic and emissions savings. In the case examined a drying gas of ambient air is heated to 200 C yielding a heat load of 6.1 MW. The exhaust air from the drying process is 80 C. The implementation of anammonia–water hybrid absorption–compression heat pump to partly cover the heat load is investigated. A thermodynamic analysis is applied to determine optimal circulation ratios for a number of ammonia mass fractions and heat pump loads. An exergo economic optimization is applied to minimize the lifetime cost of the system. Technological limitations are imposed to constrain the solution to commercial components. The best possible implementation is identified in terms of heat load, ammonia mass fraction and circulation ratio. The best possible implementation is a895 kW heat pump with an ammonia mass fraction of 0.82and a circulation ratio of 0.43. This results in economic savings with a present value of 146,000 € and a yearly CO2emissions reduction of 227 ton.
机译:喷雾干燥设备是能耗最高的工业过程之一。使用热泵回收废热并替代燃气燃烧有潜力实现经济和排放节省。在检查的情况下,将环境空气的干燥气体加热到200°C,从而产生6.1MW的热负荷。干燥过程中的废气为80°C。研究了氨水混合吸收压缩热泵部分覆盖热负荷的实现方式。应用热力学分析来确定许多氨气质量分数和热泵负荷的最佳循环比。应用exergo经济优化技术以最小化系统的生命周期成本。施加技术限制以将解决方案限制为商业组件。根据热负荷,氨质量分数和循环比确定最佳实施方案。可能的最佳实现方法是a895 kW热泵,其氨质量分数为0.82,循环比为0.43。结果是节省了经济价值,现值为146,000欧元,每年的二氧化碳排放量减少了227吨。

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