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Building-Integrated Photovoltaic/Thermal (BIPVT): LCA of a facade-integrated prototype and issues about human health, ecosystems, resources

机译:建筑物集成式光伏/热能(BIPVT):立面集成式原型的LCA和有关人类健康,生态系统,资源的问题

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Building-Integrated Photovoltaic/Thermal (BIPVT) technology offers multiple advantages; however, these types of installations include materials such as Photovoltaic (PV) cells and metals which considerably influence BIPVT environmental impact. Therefore, there is a need to evaluate BIPVT environmental profile, for instance by means of Life Cycle Assessment (LCA). In light of the issues mentioned above, the present article is an LCA study that assesses the environmental performance of a BIPVT prototype that has been developed and patented at the Ulster University (Belfast, UK). The investigation places emphasis on material manufacturing, based on Cumulative Energy Demand (CED), Global Warming Potential (GWP), ReCiPe, Ecological footprint and USEtox. The results show that according to all the adopted methods/environmental indicators and based on primary materials, the PV cells and the two vessels (steel) are the components with the three highest impacts. Scenarios which include recycling of steel, plastics and brass (land fill for the other materials has been assumed), based on CED, GWP 100a and ReCiPe endpoint, have been examined. It was found that steel recycling offers a considerable impact reduction, ranging from 47% to 85%. Furthermore, the impact of the proposed BIPVT module per m(2) of thermal absorber has been calculated. The results, based on primary materials, show 4.92 GJ(prim)/m(2) and 0.34 t CO2.eq/m(2) (GWP 100a). In addition, according to USEtox/ecotoxicity, USEtox/human toxicity-non-cancer (scenario based on primary materials), the PV cells present the highest contributions to the total impact of the module: 55% in terms of ecotoxicity and 86% concerning human toxicityon-cancer. A comparison with literature is provided. Moreover, a separate section of the article is about factors which influence BIPVT environmental profile, discussing parameters such as the storage materials and the end-of-life management. (C) 2019 Elsevier B.V. All rights reserved.
机译:建筑物集成式光伏/热能(BIPVT)技术具有多种优势。但是,这些类型的装置包括会严重影响BIPVT环境影响的材料,例如光伏(PV)电池和金属。因此,需要例如通过生命周期评估(LCA)来评估BIPVT环境概况。鉴于上述问题,本文是一项LCA研究,评估了由Ulster大学(英国贝尔法斯特)开发并获得专利的BIPVT原型的环境性能。调查重点是基于累积能源需求(CED),全球变暖潜势(GWP),回收,生态足迹和USEtox的材料制造。结果表明,根据所有采用的方法/环境指标,并基于主要材料,PV电池和两个容器(钢)是影响最大的三个组件。根据CED,GWP 100a和ReCiPe终点,研究了包括钢,塑料和黄铜回收的情景(假定采用其他材料的土地填埋)。结果发现,钢铁回收可大大减少影响,范围从47%到85%。此外,已计算出每m(2)个吸热器所建议的BIPVT模块的影响。根据主要材料得出的结果显示,4.92 GJ(prim)/ m(2)和0.34 t CO2.eq / m(2)(GWP 100a)。此外,根据USEtox /生态毒性,USEtox /非人类毒性(基于主要材料的场景),PV电池对模块总影响的贡献最大:就生态毒性而言,占55%,而对于毒性而言,占86%人类毒性/非癌症。提供与文献的比较。此外,本文的另一部分是关于影响BIPVT环境概况的因素,并讨论了诸如存储材料和寿命终止管理之类的参数。 (C)2019 Elsevier B.V.保留所有权利。

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