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Assessment of Global Emissions, Local Emissions and Immissions of Different Heating Systems

机译:评估全球排放量,局部排放量和不同供暖系统的排放量

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This paper assesses and compares existing and new technologies for space heating in Germany (e.g., heat pumps, and solar thermal and wood pellet systems) in terms of their environmental impacts. The various technologies were analyzed within the context of the new German legislation. The assessment was carried out on three levels: Global emissions: a life cycle assessment was carried out in order to find the global environmental footprint of the various technologies Local emissions: the effects of local emissions on human health were analyzed Immissions: the immissions were evaluated for the various technologies using a dispersion calculation A special feature of this study is the substitution of frequently used database emission values by values obtained from field studies and our own measurements. The results show large differences between the different technologies: while electric heat pumps performed quite well in most categories, wood pellet systems performed the best with respect to climate change. The latter, however, are associated with high impacts in other environmental impact categories and on a local scale. The promotion of some technologies (especially systems based on fuel oil, a mixture of fuel oil and rapeseed oil, or a mixture of natural gas and biomethane) by the newly introduced German legislation is doubtful. In terms of the immissions of wood pellet systems, it can be concluded that, even for extremely unfavorable meteorological conditions, the regulatory limits are not exceeded and the heating systems have a negligible influence on the total PM load in the ambient air.
机译:本文评估并比较了德国现有和新的空间供暖技术(例如热泵,太阳热能和木屑系统)对环境的影响。在德国新法规的范围内对各种技术进行了分析。评估从三个层面进行:全球排放:进行了生命周期评估,以发现各种技术的全球环境足迹。本地排放:分析了本地排放对人类健康的影响排放:评估了排放针对使用散布计算的各种技术的研究本研究的一个特殊功能是将常用的数据库排放值替换为通过实地研究和我们自己的测量获得的值。结果显示出不同技术之间的巨大差异:虽然电动热泵在大多数类别中表现都不错,但就气候变化而言,木质颗粒系统表现最佳。但是,后者与其他环境影响类别和地方范围的重大影响相关。新近引入的德国立法对某些技术(特别是基于燃油,燃油和菜籽油的混合物或天然气与生物甲烷的混合物的系统)的推广存在疑问。就木质颗粒系统的排放而言,可以得出结论,即使对于极端不利的气象条件,也不会超出监管限制,并且加热系统对环境空气中的总PM负荷的影响可忽略不计。

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