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徐金俊等人在《Journal of Building Engineering》刊发研究论文

近日,中科院二区、JCR Q1的SCI源刊《Journal of Building Engineering》刊发了徐金俊副教授(通讯作者)等人的最新研究成果:Carbon emission-based life cycle assessment of rural residential buildings constructed with engineering bamboo: A case study in China(DOI: 10.1016/j.jobe.2023.107182)。我院大三本科生张佳静同学作为主要作者在论文的撰写过程中发挥了重要作用,该生已于近日早期作为第一作者发表了一篇高水平SCI检索期刊论文,现已累计发表学术论文2篇,获得国家级土木建筑学科竞赛一等奖1项、三等奖1项。


Abstract: Engineering bamboo owning to modern industrial technology is a renewable material that holds immense potential in driving the development of building structural systems with a low carbon footprint. This study presents a life cycle assessment of a rural residential building constructed with engineering bamboo (i.e., glued laminated bamboo) from the perspective of carbon emissions. To highlight the carbon sequestration of bio-based construction material, a reinforced concrete building employed from the literature was used as a contrast scheme. The system boundary encompasses the production, transportation, construction, operation, and disposal phases, with a functional unit defined as “one square meter”. The material inventory and elements in each phase of the life cycle were collated from SimaPro and available literature or specifications. To gauge the uncertainty of carbon emissions, the Monte Carlo method was used for inventory analysis. Results of the assessment highlight that the life cycle carbon emission of the engineering bamboo-based rural residential building is 104.037 kgCO2eq/m2. The operation phase is identified as the most significant contributor to carbon emissions, followed by the production phase. The transportation, construction, and disposal phases have a relatively minor impact on emissions. The notable characteristic of engineering bamboo is its ability to sequester carbon, resulting in lower carbon emissions during the production phase. Based on the Monte Carlo simulation, the mean life cycle carbon emission for the typical rural residential buildings constructed with engineering bamboo is estimated to be 1035 kgCO2eq/m2.


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