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用于气候中性建筑的材料饮食。

Material Diets for Climate-Neutral Construction.

机构信息

Department of Architecture, Built Environment and Construction Engineering (ABC), Politecnico di Milano, Via G. Ponzio 31, 20133 Milan, Italy.

Department of Civil, Environmental, and Geomatic Engineering, ETH Zurich, Stefano-Franscini-Platz 5, CH-8093 Zurich, Switzerland.

出版信息

Environ Sci Technol. 2022 Apr 19;56(8):5213-5223. doi: 10.1021/acs.est.1c05895. Epub 2022 Apr 4.

Abstract

The climate crisis is urging us to act fast. Buildings are a key leverage point in reducing greenhouse gas (GHG) emissions, but the embodied emissions related to their construction often remain the hidden challenge of any ambitious policy. Therefore, in this paper, we explored material GHG neutralization where herbaceous biobased insulation materials with negative net-global warming potentials (GWPs) were used to compensate for building elements that necessarily release GHGs. Different material diets, as well as different building typologies, were modeled to assess the consequences in terms of biobased insulation requirements to reach climate neutrality. Our results show that climate-neutral construction can be built with sufficient energy performance to fulfill current standards and with building component thicknesses within a range of 1.05-0.58 m when timber- and bamboo-based construction is chosen. Concrete-based ones require insulation sizes that are too large and heavy to be supported by the dimensioned structures or accepted by urban regulations. Moreover, a time horizon of 20 years is more appropriate for assessing the contribution of material shifts to biobased materials in the transition period before 2050. This paper demonstrates that this is technically feasible and that climate neutrality in the construction sector just depends on the future that we choose.

摘要

气候危机促使我们迅速采取行动。建筑是减少温室气体(GHG)排放的关键着力点,但与建筑相关的隐含碳往往是任何雄心勃勃的政策的隐藏挑战。因此,在本文中,我们探讨了材料碳中性化,即使用具有负净全球变暖潜势(GWP)的草本生物基绝缘材料来补偿必然会释放温室气体的建筑元素。我们对不同的材料组合以及不同的建筑类型进行建模,以评估达到气候中性所需的生物基绝缘材料的要求所产生的后果。研究结果表明,选择木材和竹材作为建筑材料,可以建造具有足够能源性能以满足当前标准的气候中性建筑,且建筑组件的厚度在 1.05-0.58 米之间。而选择混凝土作为建筑材料,则需要的绝缘材料过大过重,无法由现有的结构支撑,也无法满足城市法规的要求。此外,在 2050 年前的过渡时期,评估材料转变对生物基材料的贡献时,20 年的时间范围更为合适。本文证明了这在技术上是可行的,建筑领域的气候中性仅取决于我们所选择的未来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9053/9022436/225c24814799/es1c05895_0002.jpg

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