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Optimal energy supply structures for industrial sites in different countries considering energy transitions: A cheese factory case study

机译:考虑能源转换的不同国家/地区工业场所的最佳能源供应结构:奶酪工厂案例研究

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摘要

This present study focuses on analysing the most efficient utility energy supply structure in terms of primary energy efficiency, carbon emissions and energy costs. In the German dairy industry, separate conversion with gas fired steam boiler, and cooling with ammonia chillers are the-state-of-the-art technologies. It is attractive due to its robustness and low investment costs. But given the ongoing energy transition to renewable energy, opportunities to reduce emissions will become increasingly important. There are other energy supply options, such as Combined Heat and Power (CHP) and Heat Pumps (HP), that if implemented need to compete against the conventional energy supply systems. One option is CHP to provide cogenerated electricity and heat while cooling remains supplied by ammonia chillers. In countries with high electricity Grid Emissions Factors (GEF) such as Germany and the USA, the use of decentralised CHP results in savings of primary energy and emissions. However, this option is less attractive for countries with low GEF such as France and Norway, and for places like Germany where the energy transition lowering its GEF by 50 % in 2030. In these cases, HP solutions provide the lowest emissions and highest primary energy efficiency.
机译:本研究的重点是从一次能源效率,碳排放量和能源成本方面分析最有效的公用事业能源供应结构。在德国乳业中,采用燃气蒸汽锅炉进行单独转换以及使用氨冷却器进行冷却是最先进的技术。由于其坚固性和低投资成本,它具有吸引力。但是,鉴于正在进行的能源向可再生能源的过渡,减少排放的机会将变得越来越重要。还有其他能源供应选项,例如热电联产(CHP)和热泵(HP),如果实施,则需要与常规能源供应系统竞争。一种选择是热电联产,以提供热电联产的热量和热量,同时仍由氨冷却器提供冷却。在德国和美国等具有较高电网排放因子(GEF)的国家中,使用分散式CHP可节省一次能源和排放。但是,对于法国和挪威等GEF较低的国家,以及德国等能源转型到2030年将GEF降低50%的地区,此选项的吸引力较小。在这些情况下,HP解决方案可提供最低的排放量和最高的一次能源效率。

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