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Utilizing Artocarpus altilis (breadfruit) skin for the removal of malachite green: isotherm, kinetics, regeneration, and column studies

机译:利用面包果(面包果)皮去除孔雀石绿:等温线,动力学,再生和色谱柱研究

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摘要

Tropical fruit waste, breadfruit skin (BS), demonstrates great potential as a low-cost adsorbent for the removal of toxic malachite green (MG) dye. The optimum values of shaking time, settling time, and pH for the interaction of MG on BS are determined to be 3.5 h, 1 h, and pH 4.58, respectively. Further, adsorption of MG by BS is ionic strength dependent. Six isotherm models analyzed using adsorption equilibrium data indicate that the MG-BS adsorbate-adsorbent system can be best described by the Langmuir model with the maximum adsorption capacity (q(max)) of 55.2 mg g(-1), which is further confirmed by six different error functions. This adsorption system follows the pseudo-second-order kinetics, and the intraparticle diffusion could be the rate-determining step. Regeneration studies using NaOH washing illustrate the ability of BS to retain its high adsorption capacity of >90% even after 5 consecutive cycles. Column study reveals that more than 1,200 mL of 100 mg L-1 MG solution can be introduced to the column for up to 95% dye removal.
机译:热带水果废料面包果皮(BS)展示出作为低成本吸附剂的巨大潜力,可用于去除有毒孔雀石绿(MG)染料。确定MG与BS相互作用的最佳振荡时间,稳定时间和pH值分别为3.5 h,1 h和pH 4.58。此外,BS对MG的吸附取决于离子强度。使用吸附平衡数据分析的六个等温模型表明,Langmuir模型可以最好地描述MG-BS吸附物-吸附剂系统,最大吸附容量(q(max))为55.2 mg g(-1),这一点得到了进一步证实通过六个不同的错误函数。该吸附系统遵循拟二级动力学,粒子内扩散可能是速率确定的步骤。使用NaOH洗涤的再生研究表明,即使在连续5个循环后,BS仍能够保持> 90%的高吸附能力。色谱柱研究表明,可以将1,200 mL以上的100 mg L-1 MG溶液引入色谱柱中,以去除95%的染料。

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