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Life cycle assessment of central solar heating plants with seasonal storage

机译:季节性储存中央太阳能加热设备的生命周期评估

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Renewable energies can play a very important role in the development of a new energy model contributing effectively towards a more sustainable development in the mid and long term. In this context Central Solar Heating Plants with Seasonal Storage (CSHPSS) are able to provide space heating and Domestic Hot Water (DHW) to residential buildings with high solar fractions (>50%). These systems are already being used in Central and Northern Europe, as well as in Canada, where there is an important experience in district heating systems. Life Cycle Assessment (LCA) is an objective methodology that evaluates the environmental loads associated with a product, process, or activity, identifying and quantifying the use of mass and energy as well as environmental emissions over its life cycle. It provides a comprehensive view of the environmental aspects of a product or process and a more accurate picture of the true environmental trade-offs in product and process selection. In this paper is presented a LCA of a CSHPSS, which should cover the space heating and DHW demand of 500 dwellings of 100 m~2, located in Zaragoza, Spain. Environmental burdens through the life cycle of the system are estimated based on relevant emissions to the atmosphere, e.g. greenhouse gases, NO_x, SO_x, and comprehensive environmental indicators as, for instance, the IMPACT 2002+ and CED (Cumulative Energy Demand). These indicators allow to evaluate the reduction of the environmental load achieved by the CSHPSS analyzed with respect to conventional space heating and DHW systems, as well as to identify the most critical aspects since an environmental perspective.
机译:可再生能源可以在开发新能源模型的发展中发挥着非常重要的作用,有效地促进了中期和长期更加可持续的发展。在这种情况下,具有季节性存储(CSHPS)的中南太阳能加热设备能够为具有高太阳能级数(> 50%)的住宅建筑物提供空间加热和家庭热水(DHW)。这些系统已经在中央和北欧以及加拿大使用,在加拿大,在地区供热系统中存在重要经验。生命周期评估(LCA)是一种客观方法,可评估与产品,过程或活动相关的环境负荷,识别和量化质量和能量以及环境排放的使用。它提供了产品或过程的环境方面的全面视图,以及更准确地了解产品和过程选择中的真实环境权衡。本文介绍了一个CSHPS的LCA,它应覆盖位于西班牙萨拉戈萨的500米〜2的500个住宅的空间加热和DHW需求。通过系统的生命周期来估计环境负担,基于对大气的相关排放,例如,估计。温室气体,NO_X,SO_X和综合环境指标,例如2002+的影响和CED(累计能源需求)。这些指标允许评估通过对传统空间加热和DHW系统分析的CSHPS实现的环境载荷的降低,以及自环境视角以来识别最关键的方面。

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