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首页> 外文期刊>Energy Reports >6th International Conference on Energy and Environment Research, ICEER 2019, 22–25 July, University of Aveiro, Portugal Innovative polymeric air–air heat recovery system — Life cycle assessment
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6th International Conference on Energy and Environment Research, ICEER 2019, 22–25 July, University of Aveiro, Portugal Innovative polymeric air–air heat recovery system — Life cycle assessment

机译:第六次国际能源与环境研究会议,ICEER 2019年7月22日至25日,Aveiro大学,葡萄牙创新的聚合物空气热回收系统 - 生命周期评估

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摘要

The energy consumption of conventional HVAC systems in cold climates is strongly influenced by the ventilation thermal loads required to keep adequate levels of indoor air quality. The improvement of the energy efficiency of such systems may be achieved using heat recovery systems consisting of heat exchangers used to heat cold outdoor air using as heat source hot discharge air. Today, heat recovery systems are mostly made of metallic materials, namely aluminium alloys. The present paper assesses the technical viability of an alternative concept using polymeric materials. A set of functional requirements have been defined taking into account the operating conditions of the heat recovery system in order to select a polymer that is considered an alternative to the current metals. Polystyrene was the polymer selected. It is also reported a cradle to grave life cycle assessment for polystyrene and aluminium establishing a comparative analysis of environmental impact between both. The indicators considered are: emission of greenhouse gases and energy consumed.
机译:寒冷气候中传统HVAC系统的能量消耗受到保持足够水平的室内空气质量所需的通风热载荷的强烈影响。可以使用由用于热源热排放空气的热交换器组成的热交换器组成的热回收系统来实现这种系统的能效的改善。如今,热回收系统主要由金属材料制成,即铝合金。本文评估了使用聚合物材料的替代概念的技术可行性。考虑到热回收系统的操作条件,定义了一组功能要求,以便选择被认为是当前金属的替代的聚合物。聚苯乙烯是选择的聚合物。还报告了对聚苯乙烯和铝的严重生命周期评估的摇篮,建立了两者之间的环境影响的比较分析。所考虑的指标是:温室气体的排放和消耗的能量。

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