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Adsorption performance of continuous fixed bed column for the removal of methylene blue (MB) dye using Eucalyptus sheathiana bark biomass

机译:连续固定床柱对鞘氨醇树皮生物量去除亚甲基蓝(MB)染料的吸附性能

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摘要

In this study, the adsorptive effectiveness of sustainable and cost-effective eucalyptus bark biomass in the removal of methylene blue (MB) dye from its aqueous solution has been tested using a packed bed up-flow column experiment. A series of column experiments using raw eucalyptus bark was performed to determine the breakthrough curves with varying inlet MB dye flow rate (10-15 mL min(-1)), initial MB dye concentration (50-100 mg L-1) and adsorbent bed height (10-15 cm). High bed height, low flow rate and high initial dye concentration were found to be the better conditions for maximum dye adsorption. To predict the breakthrough curves and to determine the characteristic parameters of the column dynamics for industrial applications and for process design, Thomas model, Yoon-Nelson model and bed depth service time model were applied to experimental breakthrough data. All models were found suitable for describing the dynamic behaviour of the column, with respect to MB flow rate, initial dye concentration and adsorbent bed height. The findings revealed that eucalyptus bark biomass has a high adsorption potential for the removal of MB dye from aqueous solutions in a column system, and that it could be used to treat dye-containing effluents.
机译:在这项研究中,使用填充床上流柱实验测试了可持续且具有成本效益的桉树皮生物量从水溶液中去除亚甲基蓝(MB)染料的吸附效果。进行了一系列使用未加工的桉树皮的柱实验,以确定了不同入口MB染料流速(10-15 mL min(-1)),MB染料初始浓度(50-100 mg L-1)和吸附剂的穿透曲线床高(10-15厘米)。发现高床高度,低流速和高初始染料浓度是最大染料吸附的较好条件。为了预测突破曲线并确定工业应用和工艺设计的色谱柱动力学特征参数,将Thomas模型,Yoon-Nelson模型和床层深度服务时间模型应用于实验突破数据。发现所有模型都适合描述色谱柱的动力学行为,涉及MB流速,初始染料浓度和吸附剂床高度。研究结果表明,桉树树皮生物质具有较高的吸附潜力,可从色谱柱系统中的水溶液中去除MB染料,并可用于处理含染料的废水。

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