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首页> 外文期刊>Revista de metalurgia >Modelización del proceso de degradación de envases metálicos para bebida, en el suelo, en el agua y en la interacción agua-suelo
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Modelización del proceso de degradación de envases metálicos para bebida, en el suelo, en el agua y en la interacción agua-suelo

机译:用于饮料的金属容器在土壤,水中,水和水-土壤相互作用中的降解过程建模

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This study asses the environmental pollution by metal release that takes place during prolonged exposures when metallic drink containers are accidentally settle in the soil in a uncontrolled way, For comparative purposes, the F111 steel and the aluminium alloy 3003, widely used for the fabrication of these containers, are also considered. A experimental design is proposed to simulate the environmental pollution during prolonged exposures. Analytical indicators have been obtained determining the metallic concentration from three types of mediums; water, water in presence of soil, and absorption-adsorption in soil. An analytical methodology has been developed by Atomic Emission Spectrometry with ICP as exciting source (ICP-OES) for metallic quantification. The method was validated using Certified Reference Materials (CRMs) of soil and water and the precision obtained varies from 5.39 to 5.86% and from 5.75 to 6.27%, respectively according to of the element studied. A statistical descriptive study followed by a factorial analysis (linear general model) has been carried out for the treatment of the experimental data packages. The metallic quantification for the three mediums shows that the soil inhibits metallic solubility in water. The process to make packages reduces in both cases their metallic cession.
机译:这项研究评估了长时间暴露于金属饮料容器以不受控制的方式意外沉降到土壤中时,金属释放所造成的环境污染。作为比较,F111钢和铝合金3003被广泛用于制造这些产品容器,也考虑在内。提出了一个实验设计来模拟长时间暴露过程中的环境污染。已经获得了用于确定三种类型介质中金属浓度的分析指标。水,土壤中的水以及土壤中的吸收-吸附。原子发射光谱法已经开发出一种分析方法,以ICP作为激发源(ICP-OES)进行金属定量。该方法已使用土壤和水的认证参考材料(CRM)进行了验证,根据所研究元素的不同,获得的精度分别为5.39至5.86%和5.75至6.27%。进行了统计描述性研究,然后进行了因子分析(线性通用模型),用于处理实验数据包。三种介质的金属定量表明,土壤抑制了金属在水中的溶解度。在两种情况下,制造包装的过程都会减少其金属的渗出。

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