铝包装的生命周期

Dajana D. Uletilović, S. Grbić
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引用次数: 0

摘要

目的是分析食品工业中使用的铝包装的环境负荷。尤其是铝罐。LCA显示了材料的来源,铝生产,作为基本材料,排放到空气,水和土壤和浪费材料的数量,作为生产1000个铝罐的结果。本研究内容包括:铝生产原料、铝生产、铝罐生产、铝罐的使用和回收。在这项研究中,我们收集了燃料和能源消耗的数据,原材料、产品和副产品的数量,向空气、水和土壤的排放,以及废物的数量。在计算对环境影响的方法中,使用了作为指标的方法:全球变暖(kg CO2-ekv.)、富营养化(kg P-ekv .)、酸化(kg SO2-ekv.)、生态致害性(kg 1,4 DB-ekv.)、不可再生资源储量短缺(kg)、水消耗(kg)、对人类的致害性(kg 1,4 DB-ekv.)、层破坏(kg R11-ekv.)、土壤占用(m2·god.)。LCA模型由GaBi 4软件系统(版本GaBi 4.3)制作[8]。为了对环境影响进行相应的评估,我们定义了截止过程值。在这种情况下,作为截止值使用的权重比小于5%的值,在这种情况下,过程忽略。
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Life Cycle of Aluminium Packaging
Aim is to analyze environmental load with aluminium packaging, used in food industry. especially with aluminium cans. LCA shows origin of materials, aluminium production, as basic materials, emission to air, water and soil and quantitz of wasting materials, as a result of production of 1000 aluminium cans.This study includes:raw material for aluminium productionaluminium productionaluminium cans productionusage and recycling of aluminium cans.For this study we gathered data for fuel and energy consumption, amount of raw materials, products and byproducts, emission to air, water and soil, and a quantity of waste material. Within a metode of calculation of influences to environment as indicators was used:global warming (kg CO2-ekv.), eutrophication (kg P-ekv), acidification (kg SO2-ekv.), ekotoksicity (kg 1,4 DB-ekv.), reserves shortage of nonrenewable resources (kg), water consumption (kg), toksicity for humans (kg 1,4 DB-ekv.), oyone layer destruction (kg R11-ekv.) soil occupation (m2·god.). LCA model is made by GaBi 4 software system (verzion GaBi 4.3) [8].In order to have relevant estimation of influence to environment, we defined cut-off proces value. In this case as cut-off value was used value of weight ratio less than 5%, and in that case proces disregarded.
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