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Life cycle assessment of domestic heat pump hot water systems in Australia

机译:澳大利亚家用热泵热水系统的生命周期评估

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Water heating accounts for 23% of residential energy consumption in Australia, and, as over half is provided by electric water heaters, is a significant source of greenhouse gas emissions. Due to inclusion in rebate schemes heat pump water heating systems are becoming increasingly popular, but do they result in lower greenhouse gas emissions? This study follows on from a previous life cycle assessment study of domestic hot water systems to include heat pump systems. The streamlined life cycle assessment approach used focused on the use phase of the life cycle, which was found in the previous study to be where the majority of global warming potential (GWP) impacts occurred. Data was collected from an Australian heat pump manufacturer and was modelled assuming installation within Australian climate zone 3 (AS/NZS 4234:2011). Several scenarios were investigated for the heat pumps including different sources of electricity (grid, photovoltaic solarmodules, and batteries) and the use of solar thermal panels. It was found that due to their higher efficiency heat pumphotwater systems can result in significantly lower GWP than electric storage hot water systems. Further, solar thermal heat pump systems can have lower GWP than solar electric hot water systems that use conventional electric boosting. Additionally, the contributions of HFC refrigerants to GWP can be significant so the use of alternative refrigerants is recommended. Heat pumps combined with PV and battery technology can achieve the lowest GWP of all domestic hot water systems.
机译:热水占澳大利亚住宅能源消耗的23%,并且由于电热水器提供了一半以上的能源,因此是温室气体排放的重要来源。由于包含在回扣计划中,热泵水加热系统变得越来越流行,但是它们是否导致了温室气体排放的减少?这项研究是在之前对家用热水系统(包括热泵系统)进行生命周期评估的基础上进行的。简化的生命周期评估方法侧重于生命周期的使用阶段,在先前的研究中发现这是大部分全球变暖潜能(GWP)影响发生的地方。数据是从一家澳大利亚热泵制​​造商那里收集的,并假设安装在澳大利亚第3气候带内进行了建模(AS / NZS 4234:2011)。对热泵的几种情况进行了研究,包括不同的电源(电网,光伏太阳能组件和电池)以及太阳能热板的使用。人们发现,由于热泵热水系统效率更高,因此与电动储水热水系统相比,其GWP值大大降低。此外,与使用常规电增压的太阳能热水系统相比,太阳能热泵系统可以具有更低的GWP。此外,氢氟碳化合物制冷剂对全球升温潜能值的贡献可能很大,因此建议使用替代制冷剂。结合了光伏和电池技术的热泵可以实现所有家用热水系统中最低的GWP。

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