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吸附剂去除靛蓝胭脂红染料的效率:基于化学计量学的经济深度

The efficiency of adsorbent in indigo carmine dye removal: Economy depth via chemometrics.

作者信息

Inyinbor Adejumoke A, Bankole Deborah T, Solomon Pamela, Ayeni Temitope S, Lukman Adewale F

机构信息

Department of Physical Sciences, Landmark University, P.M.B 1001, Omu Aran, Nigeria.

Landmark University Clean Water and Sanitation Sustainable Development Goal, Landmark University, Omu Aran, Nigeria.

出版信息

Heliyon. 2024 Jun 3;10(11):e32121. doi: 10.1016/j.heliyon.2024.e32121. eCollection 2024 Jun 15.

Abstract

The remediation of dye pollutants remains a concern in contemporary water management practices. Hence, the need for efficient and cost-effective techniques for dye removal from wastewater. In this study, the epicarp of fruits was treated with orthophosphoric acid for enhanced porosity and efficiency in the uptake of Indigo carmine dye (ICD). Treated fruit waste (RHPW) presented morphologically distributed pores as well as high porosity with Branneur-Emmet-Teller (BET) surface area of 945.43 m/g. RHPW displayed functional groups suitable for adsorption. The maximum ICD uptake was observed at pH 5 while the maximum uptake (q) was 20.41 mg/g in the concentration range of 2-10 mg/L. Freundlich isotherm and Pseudo-second order kinetics well-described equilibrium and kinetics data respectively. This indicated a multilayered adsorption. The Dubinin-Radushkecich model energy value was 40.82 kJ/mol, indicating chemical adsorption. The ridge regression, the Lasso and the Elastic net statistical models were used to establish a positive relationship between the various adsorption operational parameters studied. Lasso provided the best result based on the estimated mean squared error. The RHPW-ICD adsorption system was more favorable at room temperature, as the removal efficiency decreased with temperature rise. The findings established fruit epicarp as an economical and sustainable precursor for the preparation of potent adsorbent for Indigo carmine dye removal. This can find possible application in wastewater treatment.

摘要

在当代水管理实践中,染料污染物的修复仍是一个令人关注的问题。因此,需要高效且经济高效的技术来去除废水中的染料。在本研究中,水果外果皮用正磷酸处理,以提高孔隙率和对靛蓝胭脂红染料(ICD)的吸附效率。处理后的水果废料(RHPW)呈现出形态分布的孔隙以及高孔隙率,其BET表面积为945.43 m²/g。RHPW显示出适合吸附的官能团。在pH为5时观察到ICD的最大吸附量,而在2 - 10 mg/L的浓度范围内,最大吸附量(q)为20.41 mg/g。Freundlich等温线和伪二级动力学分别很好地描述了平衡和动力学数据。这表明是多层吸附。Dubinin - Radushkecich模型能量值为40.82 kJ/mol,表明是化学吸附。使用岭回归、套索和弹性网络统计模型来建立所研究的各种吸附操作参数之间的正相关关系。基于估计的均方误差,套索提供了最佳结果。RHPW - ICD吸附系统在室温下更有利,因为随着温度升高,去除效率降低。这些发现确立了水果外果皮作为制备用于去除靛蓝胭脂红染料的有效吸附剂的经济且可持续的前驱体。这可在废水处理中找到可能的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/320c/11200299/2b0299206647/ga1.jpg

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