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中国合格评定国家认可委员会:城市碳中和建筑手册(英文版)(55页).pdf

上传人: AG 编号:607712 2024-01-01 55页 7.97MB

1、GlossaryScopeContextBiomaterialsMisconceptionsOpportunitiesRegulationsHandbookBenefitsPrefaceUrban growth and ever-increasing consumption patterns are putting pressure on our planets resources like never before.This is challenging the traditional methods employed by an increasing number of climate-c

2、onscious local governments and influential stakeholders within the construction industry.These stakeholders encompass material producers,developers,designers,and architects who are actively engaged in researching and implementing diverse biobased construction materials and are looking to explore the

3、 potential of these materials to serve as a viable solution for mitigating the large carbon footprint often associated with construction projects.To keep pace,it is estimated that two billion square metres of new building stock will be required every year between 2023 and 2028 alone.The climate impa

4、ct of such development will be significant in terms of both embodied and operational emissions.To reduce impact on climate and promote healthy living places we must focus on the consequences of our material,design,and fabrication choices.To ensure that the buildings and construction sector is on tra

5、ck to meet the Paris Agreement goals,we need to acknowledge the built environment as a system in which all actors in the construction material supply chain have a role and responsibility to reduce emissions across the full life cycle of built assets.Carbon performance needs to become an integral par

6、t of the assessment during every transaction all along the value chain and cities are uniquely placed to demand this and integrate carbon performance into procurement and regulations.Space and resource constraints,climate change mitigation and resilience,and a greater focus on human well-being,among

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本文主要讨论了生物基建筑材料在建筑行业中的应用及其优势。生物基建筑材料包括木材、竹子、大麻、稻草、木纤维、软木、羊毛和菌丝体等,它们来源于生物质,具有可再生、低碳足迹、低毒性、社会价值等优点。然而,这些材料的应用也存在一些误解和知识盲区,如数据可用性、防火性能、湿度调节、耐久性、成本和可扩展性等。为了克服这些挑战,文章提出了城市可以采取的策略,包括知识提升、政策支持、金融激励和制定法规。欧盟也制定了一系列法规和政策,以促进生物基建筑材料的使用,如欧洲绿色协议、建筑产品法规、能源性能建筑指令等。总体而言,生物基建筑材料在建筑行业中的应用具有巨大潜力,但需要克服一些技术和市场障碍,以实现更广泛的应用。
生物基材料在建筑中的优势是什么? 生物基材料在建筑应用中存在哪些误解和知识缺口? 城市如何促进生物基材料在建筑中的使用?
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