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Comparison of Three Methods of Digestion for Trace Metal Analysis in Surface Dust Collected from an EwasteudRecycling Site

机译:三种从废液中收集的表面粉尘中痕量金属的消化方法的比较回收站

摘要

The recycling of e-waste materials potentially contaminates the environment with heavy metals.udAnalysing the exact contents of heavy metal in e-waste products is germane for the routine monitoring, riskudassessment and regulation of the environment. Therefore, the efficiency of three methods of digestion was evaluatedudfor Cd, Fe, Pb, Cr and Zn by AAS in surface dust from an e-waste recycling site and to recommend the mostudefficient digestion method. The digestion methods were aqua regia, dry ashing followed by aqua regia and nitric aciduddigestion followed by extraction with HCl. Analysis of variance, Student’s t-test and F-test were performedudseparately for the indoor, outdoor and control dust samples analytical result. Analytical results indicated that theudnitric acid digestion followed by extraction with HCl was the most efficient in recovering Pb and Fe based onudrecovery efficiency. Aqua regia was found to be an alternative method for recovering Pb and Fe based on cost andudtime effectiveness. Aqua regia was the most efficient in recovering Zn while aqua regia and nitric acid digestionudfollowed by extraction with HCl were satisfactory for the recovery of Cd. Dry ashing followed by aqua regia wasudfound unsuitable for the analysis of these metals in the samples because it recovers relatively little heavy metals andudmore analysis time.
机译:电子废物材料的回收可能会重金属污染环境。 ud分析电子废物产品中重金属的确切含量与日常监测,风险评估和环境监管密切相关。因此,通过AAS对来自电子废物回收站点的表面粉尘中的Cd,Fe,Pb,Cr和Zn的三种消化方法进行了效率评估,并推荐了最高效的消化方法。消化方法为王水,干灰,王水和硝酸消化,然后用HCl萃取。对室内,室外和对照粉尘样品的分析结果分别进行了方差分析,Student's t检验和F检验。分析结果表明,以 udrecovering效率为基础,以硝酸消化,然后用HCl萃取是最有效的回收Pb和Fe的方法。基于成本和时间有效性,王水被发现是回收铅和铁的另一种方法。王水是最有效的回收锌元素,王水和用HCl萃取的硝酸消化法/随后的硝酸法消化法可回收镉。发现干灰化然后王水不适合分析样品中的这些金属,因为它能回收相对较少的重金属和更多的分析时间。

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