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Global Warming and Carbon Resource Evaluation of Foam Blowing Agents for Residential-use Polyurethane

机译:用于住宅用聚氨酯的泡沫发泡剂的全球变暖和碳资源评价

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We share the scientific meaning of polyurethane insulation efficiency to cope with global warming and the decrease in carbon resources. It will help us select better blowing agents for the future in terms of global warming and resource-saving. Reduction of global warming and carbon resources saving are our top priority issues for the future generations. According to the concept of radiative forcing, a linear relationship can be found between global mean surface temperature change (ΔTS) and radiative forcing (RF): ΔTS = λRF, where λ is the climate sensitivity. The effects of GHGs in the atmosphere including foam blowing agents on the global temperature rise were evaluated. This evaluation was based on the observed mixing ratio of each GHG and the past, present and future of warming due to each GHG was analyzed, then this was applied to the analysis of the warming due to each blowing agent. Further, along with the value of new indicators, CEWN and CETN, the index value obtained from this evaluation was compared with GWP value, for each GHG. By means of these indicators, the comparison among blowing agents were carried out. Recently, the importance of carbon resources is growing when considering the selection of technologies. We present the comparison of blowing agents from the viewpoint of carbon resources.
机译:我们分享聚氨酯绝缘效率的科学意义,以应对全球变暖和碳资源减少。在全球变暖和资源节约方面,它将有助于我们为未来选择更好的吹风剂。降低全球变暖和碳资源储蓄是我们未来几代的首要任务问题。根据辐射强制的概念,可以在全局平均表面温度变化(ΔTs)和辐射强制(RF)之间找到线性关系:ΔTs=λRF,其中λ是气候敏感性。评估了GHG在全球温度升高上包括泡沫发泡剂的气氛中的气氛的影响。该评估基于每个GHG的观察到的混合比,并分析了由于每个温度的每个温室,因此升温的目的和未来,然后应用于由于每个发泡剂引起的变暖分析。此外,随着新指标,CEWN和CETN的值,对于每个GHG,将从该评估获得的指标值与GWP值进行比较。通过这些指标,进行了发泡剂的比较。最近,在考虑选择技术时,碳资源的重要性正在增长。我们从碳资源的观点出示了吹风剂的比较。

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