响应面法优化介孔MCM-41去除水中氟化物的研究

Bodhaditya Das, Saumen Banerjee, P. Raul, R. R. Devi, I. M. Umlong, A. K. Talukdar, Sanjai K. Dwivedi
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引用次数: 3

摘要

超过1.5 mg·L-1的氟化物对健康有害。已尝试使用介孔MCM-41作为强吸附剂从水中去除氟化物。通过透射电镜对煅烧后的MCM-41进行表征,发现其平均尺寸为20 nm,比表面积(BET研究)为1306.96 m2·g-1的正六边形介孔通道阵列。颗粒的平均孔径为14.21 nm。接触时间对氟去除率影响的研究表明,在接触时间为120 min时,MCM-41对氟的吸收率超过85%。Langmuir吸附研究发现,在301 K下,氟的最大吸附量为63.05 mg/g。从热力学研究来看,+ΔHo值为2.29 kJ·mol-1,表明脱除过程是吸热的。响应面模型的应用表明,当氟浓度为10 mg·L-1、pH为6.3、接触时间为120 min时,除氟率可达77.88%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Removal of Fluoride from Water Using Mesoporous MCM-41: An Optimization Approach Using Response Surface Methodology (RSM)
Fluoride above 1.5 mg·L-1 is injurious to health. Removal of fluoride from water using mesoporous MCM-41 as a strong adsorbent material has been attempted. Characterization using transmission electron microscopic study of calcined MCM-41 showed the regular hexagonal array of mesoporous channels with an average size of 20 nm and the surface area (BET study) of 1306.96 m2·g-1. The average pore size of the particles was found to be 14.21 nm. A study on the effect of contact time on the removal of fluoride revealed that more than 85% uptake of fluoride onto MCM-41 was achieved at a contact time of 120 min. From the Langmuir adsorption study, the maximum sorption capacity of fluoride was found to be 63.05 mg/g at 301 K. From the thermodynamic study, the +ΔHo value of 2.29 kJ·mol-1 indicated the endothermic nature of the removal process. Application of Response Surface Model suggested that 77.88% of fluoride removal can be achieved at fluoride concentration of 10 mg·L-1, pH (6.3), and contact time of 120 min.
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