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首页> 外文期刊>Fresenius environmental bulletin >APPLICATION OF LOW-CARBON ENVIRONMENTALPROTECTION CONCEPT IN BAMBOO MATERIALPRODUCT DESIGN
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APPLICATION OF LOW-CARBON ENVIRONMENTALPROTECTION CONCEPT IN BAMBOO MATERIALPRODUCT DESIGN

机译:低碳环境保护概念在竹材产品设计中的应用

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Environmental problems have become a new challenge for social survival and development, bam- boo materials can be used as low-carbon ecological materials for construction, interior design and prod- uct packaging, effectively reducing carbon emis- sions. Based on low-carbon design concept, this pa- per studied the application of bamboo material prod- ucts in daily life, and the overall design scheme. The standard value of elastic modulus of bamboo materi- als was determined by using the formula of parame- ter method, and the performance of different bamboo materials was analyzed. Combination of physical and chemical methods to improve the penetration of bamboo materials, in order to design a variety of product structure. According to the parameter method, the standard value parameters of elastic modulus were determined, and the direct bamboomaterial products and indirect material bamboo products were designed. The experimental results showed that Product A under the concept of low-car- bon design has no excessive pollution release, so the pollutant index on human clothing and skin meets the requirements of industry standards, and has good environmental protection performance. Product B under the concept of low-carbon design can adsorb the indoor formaldehyde, and control the seriously excessive concentration below 0.08mg/m3, which has extremely high adsorption performance. It can be seen that the low-carbon design concept has a good application effect in the design of bamboo material products.
机译:环境问题已成为社会生存和发展的新挑战,BAM-BOO材料可用作施工,室内设计和产品包装的低碳生态材料,有效地减少碳辐射。基于低碳设计概念,每研究竹材产品在日常生活中的应用,以及整体设计方案。通过使用平衡法测定竹材料的弹性模量的标准值,分析了不同竹材材料的性能。物理化学方法的组合,提高竹材渗透,以设计各种产品结构。根据参数方法,确定了弹性模量的标准值参数,设计了直接竹材料产品和间接材料竹制品。实验结果表明,产品A下的低送货机设计的概念没有过度污染释放,因此人类服装和皮肤的污染指数符合行业标准的要求,具有良好的环保性能。产品B在低碳设计的概念下可以吸附室内甲醛,并控制严重过度浓度低于0.08mg / m3,具有极高的吸附性能。可以看出,低碳设计理念在竹材产品设计方面具有良好的应用效果。

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