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Carbon footprint of copying paper: Considering temporary carbon storage based on life cycle analysis

机译:复印纸的碳足迹:考虑基于生命周期分析的临时碳库

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In the era of climate change, life cycle analysis (LCA) has been acknowledged as a useful method for examining carbon footprints of products or services. , Once captured and stored by trees and other plants, biogenic CO2 would re-enter the atmosphere sooner or later after the use phase of the product. And many LCA studies did not calculate the temporary carbon storage in biogenic carbon. Thus, this paper proposed a hybrid LCA approach to provide a structured methodology for evaluating carbon footprint of copying paper in consideration of temporary carbon storage. The developed method was then applied to a paper mill of China. It is indicated that the hybrid LCA method could provide a comprehensive methodology for accounting carbon footprints as well as assessing effects of delaying GHG emissions. The results shows that the carbon footprint of 1000 kg copying paper was 647.89 kg CO2 under scenario 1 and-5094 kg CO2 under scenario 2. Concurrently, the effect of delaying the emission of the temporarily stored carbon in copying paper was 7.67%, 15.52%, or 23.58% for a certain period of time (i.e., 10, 25, or 30 years).
机译:在气候变化时代,生命周期分析(LCA)被认为是用于检查产品或服务的碳足迹的有用方法。曾经被树木和其他植物捕获并储存的曾经捕获并储存过,生物二氧化碳将在产品的使用相瞬间或以后重新进入气氛。许多LCA研究没有计算生物碳中的临时碳储存。因此,本文提出了一种杂交LCA方法,以提供用于考虑临时碳储存的复印纸碳足迹的结构化方法。然后将开发的方法应用于中国的造纸厂。结果表明,杂交LCA方法可以为会计碳足迹提供全面的方法,以及评估延迟温室气体排放的影响。结果表明,1000公斤复印纸的碳足迹为647.89千克二氧化碳,在情景1和-5094公斤CO2下。同时,延迟暂时储存碳含量在复印纸上的效果为7.67%,15.52%或一段时间(即10,25或30岁)的23.58%。

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