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Packed-bed sorption of copper using spent animal bones: factorial experimental design, desorption and column regeneration

机译:用废动物骨头填充床吸附铜:析因实验设计,解吸和柱再生

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摘要

A two-level factorial experimental design method has been proposed to investigate the influence of the operating parameters in a packed-bed adsorption column. This technique has been applied to quantify the influence of bed-depth, influent flow rate, and influent metal concentration on break-through time during the removal of copper from aqueous solutions using spent animal bones. A factorial model has been built-up and used to study all interactions among the considered parameters. It was found that while the effect of influent flow rate, as a main effect, was relatively insignificant, the effects of bed-depth and influent metal concentration were found to be significant at a 95% confidence interval. All other interactions between the studied parameters were significant. Desorption of copper from the bones-packed column was carried out using various concentrations of H_2SO_4. A solution of 5-mM was found to be suitable for this process. It has also been demonstrated that the efficiency of the bones-packed column did not change significantly after four sorption/desorption cycles.
机译:提出了一种二级析因实验设计方法来研究填充床吸附塔中操作参数的影响。该技术已用于量化床深度,进水流速和进水金属浓度对使用废动物骨头从水溶液中去除铜期间突破时间的影响。析因模型已经建立,并用于研究所考虑参数之间的所有相互作用。已发现,虽然进水流量的影响(作为主要影响)相对微不足道,但发现床深度和进水金属浓度的影响在95%置信区间内是显着的。研究参数之间的所有其他交互作用都非常重要。使用各种浓度的H_2SO_4从骨头填充柱中解吸铜。发现5 mM的溶液适用于该过程。还已经证明,在四个吸附/解吸循环后,骨头填充柱的效率没有明显变化。

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