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Techno-economic comparison of a high-temperature heat pump and an organic Rankine cycle machine for low-grade waste heat recovery in UK industry

机译:英国工业中用于低品位废热回收的高温热泵和有机朗肯循环机的技术经济比较

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This paper presents a comparison of a high-temperature heat pump and an organic Rankine cycle (ORC) plant for the recovery of low-grade waste heat for a UK inorganic chemicals case study. Superficially, the two technologies appear equally suitable for use here; therefore, both technologies are modelled in order to provide data for a comparison in terms of expected technical and economic performance. Both technologies are proven to be feasible in this case study, with the heat pump helping to significantly reduce the natural gas requirement of the plant and the ORC producing a significant net output of electricity. This leads to each technology being attractive from the economic and environmental viewpoints. However, the proposed ORC achieves greater potential greenhouse gas reductions (499 tCO2 eq/year as opposed to 401 tCO2 eq/year) and greater potential cost savings (£69 000/year as opposed to £37 800/year). Therefore, the ORC machine is shown to be the preferred technology in this case. A sensitivity analysis based on continuation of the utility cost trends is performed and shows that the ORC plant would gain in profitability in future years whereas the potential profit of the heat pump system would diminish to almost zero by 2020. Such results suggest that ORCs may be further utilised in future years whilst the use of heat pumps may decline.
机译:本文针对英国无机化学品案例研究,比较了高温热泵和有机朗肯循环(ORC)厂用于回收低品位废热的比较。从表面上看,这两种技术似乎同样适用于此。因此,对这两种技术都进行了建模,以便提供数据以进行预期的技术和经济表现方面的比较。在本案例研究中,两种技术均被证明是可行的,其中热泵有助于显着降低工厂的天然气需求,而ORC则可产生大量的净电能。从经济和环境的角度来看,这导致每种技术都具有吸引力。但是,拟议的ORC可以实现更大的潜在温室气体减排量(每年499 tCO 2 当量/年,而不是401 tCO 2 当量/年)和更大的潜在成本节省(£ 69) 000 /年,而不是80037800 /年)。因此,在这种情况下,显示ORC机器是首选技术。进行了基于公用事业成本趋势持续性的敏感性分析,结果表明,ORC工厂将在未来几年获利,而热泵系统的潜在利润到2020年将减少至几乎为零。这些结果表明ORC可能是在未来几年进一步利用,而热泵的使用可能会下降。

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