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首页> 外文期刊>Journal of Industrial Ecology >Multilevel Anthropogenic Cycles of Copper and Zinc
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Multilevel Anthropogenic Cycles of Copper and Zinc

机译:铜和锌的多级人为循环

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摘要

Contemporary cycles for copper and zinc are coanalyzed with the tools of exploratory data analysis.One-year analyses (circa 1994) are performed at three discrete spatial levels- country (52 countries that comprise essentially all anthropogenic stocks and flows of the two metals),eight world regions,and the planet as a whole-and are completed both in absolute magnitude and in per capita terms.This work constitutes,to our knowledge,the first multiscale,multilevel analysis of anthropogenic resources throughout their life cycles.The results demonstrate that (I) A high degree of correlation exists between country-level copper and country-level zinc rates of fabrication and manufacturing,entry into use,net addition to in-use stocks,discard,and landfilling; (2) Regional-level rates for copper and zinc cycle parameters show the same correlations as exist at country level; (3) On a per capita basis,countries add to in-use stock almost 50% more copper than zinc; (4) The predominant discard streams for copper and zinc at the global level are different for the two metals,and relative rates of different loss processes differ geographically,so that resource recovery policies must be designed from metal-specific and location-specific perspectives; (5) When absolute magnitudes of life-cycle flows are considered,the standard deviations of the data sets decrease from country level to regional level for both copper and zinc,which is not the case for the per capita data sets,where the statistical properties of the data sets for both metals approach being independent of spatial level,thus providing a basis for predicting unmeasured per capita metal flow behavior
机译:用探索性数据分析工具对当代铜和锌的循环进行了分析。在三个离散的空间水平上进行了为期一年的分析(大约在1994年),一个国家(52个国家基本上构成了两种金属的人为存量和流量),据我们所知,这项工作构成了人类生活资源在其整个生命周期中的第一个多尺度,多层次的分析。 (一)国家一级的铜和国家一级的制造和生产,投入使用,使用中库存净增加,丢弃和填埋之间的锌率之间存在高度相关性; (2)区域一级的铜和锌循环参数速率显示出与国家一级相同的相关性; (3)按人均计算,各国在用存货比铜多出近50%。 (4)两种金属在全球范围内主要的铜和锌丢弃物流有所不同,并且不同损失过程的相对速率在地理上也不同,因此必须从针对金属和针对特定地点的角度来设计资源回收政策; (5)当考虑生命周期流量的绝对幅度时,铜和锌的数据集的标准偏差从国家水平到地区水平都会减小,而人均数据集的情况并非如此,人均数据集不是两种金属方法的数据集与空间水平无关,从而为预测未测的人均金属流动行为提供了基础

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