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Replacement of electric resistive space heating by an air-source heat pump in a residential application. Environmental amortization

机译:在住宅应用中用空气源热泵代替电阻性空间供暖。环境摊销

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摘要

All-electric boilers and air source heat pumps are both powered by electric energy. However, each kWh of heat that is produced implies higher electric consumption in the former. Therefore, as a consequence of financial issues, users of all-electric boilers might afford the substitution of this heating device by an air source heat pump (ASHP). In this paper, a particular facet of this replacement is analyzed, its environmental impact, providing with a deeper insight in the consequences of this substitution. A life cycle assessment of the replacement of an all-electric boiler by an ASHP is described, using 11 environmental impact categories and three different heat emitters, such as underfloor heating, low temperature radiators and conventional radiators. As a consequence of this analysis, it has been found that, in most of the categories, the energy savings from the replacement compensate the environmental impact of the ASHP. This trend is more evident with underfloor heating than radiators. Additionally, the environmental amortization of this replacement has also been analyzed. The results of this study show that the environmental amortization can be achieved by an ASHP with underfloor heating during a conservative lifespan of 10 years in all the impact categories. Other heat emitters may require between 33% and 45% more time to reach the environmental amortization.
机译:全电锅炉和空气源热泵均由电能驱动。但是,每产生一千瓦时的热量,在前者中就意味着更高的电能消耗。因此,由于财务问题,全电锅炉的用户可能会用空气源热泵(ASHP)代替这种加热设备。在本文中,将分析这种替代品的特定方面,及其对环境的影响,从而对替代品的后果提供更深入的了解。描述了使用ASHP替换全电锅炉的生命周期评估,其中使用了11种环境影响类别和三种不同的散热器,例如地板采暖,低温散热器和常规散热器。分析的结果表明,在大多数类别中,更换所节省的能源补偿了ASHP的环境影响。对于地板采暖,这种趋势比散热器更为明显。此外,还对这种替代品的环境摊销进行了分析。这项研究的结果表明,在所有影响类别中,使用地暖的ASHP可以在10年的保守寿命内实现地摊。其他散热器可能需要多33%到45%的时间才能达到环境摊销。

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