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Applying multivariate analysis for optimising the electrodialytic removal of Cu and Pb from shooting range soils

机译:应用多元分析优化靶场土壤电渗析去除Cu和Pb

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Multivariate analysis was applied to simultaneously evaluate the influence of soil properties and experimental variables on electrodialytic removal of Cu and Pb from three shooting range soils. Both stationary and stirred setups in laboratory scale were tested, representing in-situ and ex-situ remediation conditions, respectively. Within the same experimental space, higher removal of the targeted metals, Cu and Pb, were observed in the stirred setup (9-81%) compared to the stationary set-up (0-41%). Multivariate analysis (projections onto latent structures) revealed that the influence of soil type on the remediation efficiency was dependent on the metal and varied in the stationary and stirred set-ups. Optimising the removal of Cu by adjusting the experimental settings was easier to achieve in the stirred set-up and could be done by increasing the current density. Optimising the removal of Pb could be done by prolonging the treatment and in the stirred set-up also by increasing the current density.
机译:应用多变量分析同时评估土壤性质和实验变量对三种渗流土壤中电渗析去除铜和铅的影响。测试了实验室规模的固定和搅拌装置,分别代表了原位和异位修复条件。在相同的实验空间内,与固定装置(0-41%)相比,在搅拌装置中观察到目标金属Cu和Pb的去除率更高(9-81%)。多变量分析(投影到潜在结构上)表明,土壤类型对修复效率的影响取决于金属,并且在固定和搅拌条件下都不同。通过调整实验设置来优化Cu的去除在搅拌设置中更容易实现,并且可以通过增加电流密度来实现。优化Pb的去除可以通过延长处理时间来完成,在搅拌条件下,也可以通过增加电流密度来实现。

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