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首页> 外文期刊>The Science of the Total Environment >Quantitative analysis of the material, energy and value flows of a lead-acid battery system and its external performance
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Quantitative analysis of the material, energy and value flows of a lead-acid battery system and its external performance

机译:铅酸电池系统的材料,能量和价值流及其外部性能的定量分析

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The comprehensive optimization of lead-acid battery system (LABS) can promote the relationship between the development of human-socio-economic system and environment Based on the lead anthropogenic cycle, LABS is divided into four stages: production of primary lead (PPL), fabrication and manufacture (F&M), use and waste management and recycling (WNW). According to the relationship between LABS and external environment, a framework is developed for the coupling of composite flow (material flow, energy flow and value flow). The quantitative relations between external performance indicators (lead ore consumption, scrap lead emissions, energy consumption and increase in value) and the internal factors arc established, and key factors that affect external performance and their impact level arc identified. The results of Chinese LABS in 2014 indicate that the external performance of the material flow reduced as the decrease of the emission rates of PPL (gamma(1)), F&M (gamma(2)) and WM&R (gamma(4)) and the increase of the large recycling rate (alpha(tau)) and production ratio. The impact level of the former three was 15-2.2 times higher than those of the latter two. gamma(2), gamma(4) and alpha(tau) had the higher impact level on energy consumption in descending order. The impact level of the emission rates was 2.0-3.0 times higher than that of the recycling rate. gamma(4), alpha(tau), gamma(1), gamma(2), in descending order, were the four higher factors that affected the increase in value, and the impact levels of the farmer two were 15-2.0 times higher than those of the latter two. Moreover, gamma(4) and gamma(2) were the factors that influenced the whole external environment greater. The decreasing order of influence degree of the above factors on the external performance indicators was increase in value, energy consumption and the external performance indicators of material flow. The impact from coupling coefficients between energy, value and material on external performance is less than the above factors. (C) 2019 Elsevier B.V. All rights reserved.
机译:铅酸电池系统(LABS)的全面优化可以促进人类社会经济系统发展与环境之间的关系。基于铅人为循环,LABS分为四个阶段:一次铅的生产(PPL),制造和制造(F&M),使用和废物管理与回收(WNW)。根据LABS与外部环境之间的关系,开发了一个框架来耦合复合流(物料流,能量流和价值流)。建立了外部绩效指标(铅矿石消耗,废铅排放,能源消耗和价值增加)与内部因素之间的定量关系,并确定了影响外部绩效及其影响水平的关键因素。 2014年中国LABS的结果表明,物质流的外部性能随着PPL(gamma(1)),F&M(gamma(2))和WM&R(gamma(4))排放速率的降低而降低。大回收率(α(tau))和生产率的提高。前三个的影响程度比后两个的影响程度高15-2.2倍。 gamma(2),gamma(4)和alpha(tau)对能耗的影响程度降序较高。排放率的影响水平是回收率的2.0-3.0倍。 gamma(4),alpha(tau),gamma(1),gamma(2)降序排列是影响价值增加的四个较高因素,而两个农民的影响水平则高15-2.0倍比后两个此外,gamma(4)和gamma(2)是对整个外部环境影响更大的因素。上述因素对外部性能指标的影响程度从高到低依次为:价值,能耗和物料流动的外部性能指标。能量,价值和材料之间的耦合系数对外部性能的影响小于上述因素。 (C)2019 Elsevier B.V.保留所有权利。

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