Reusable Porous SiO2 for Methylene Blue Removal: A Study on Adsorption and Regeneration Cycles

被引:0
作者
Cisneros-Trejo, Samara J. [1 ,2 ]
Paraguay-Delgado, Francisco [1 ]
Hernandez-Hernandez, Arturo [2 ]
Pantoja-Espinoza, Juan C. [1 ]
机构
[1] Ctr Invest Mat Avanzados SC CIMAV, Ave Miguel Cervantes 120,Complejo Ind Chihuahua, Chihuahua 31136, Chih, Mexico
[2] Univ Autonoma Estado Hidalgo, Escuela Super Apan, Carretera Apan-Calpulalpan Km 8,Col Chimalpa, Apan 43920, Hidalgo, Mexico
关键词
Adsorbent; Porous SiO2; Methylene blue; Wastewater treatment; Adsorption; Regeneration cycles; OXIDE NANOPARTICLES; SILICA PARTICLES; MESOPOROUS SIO2; ORGANIC-DYES; WASTE-WATER; RICE HUSK; DEGRADATION; COMPOSITE; KINETICS; ISOTHERM;
D O I
10.1007/s11270-024-07539-x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In response to the water contamination problem, this study presents a novel method to remove methylene blue (MB), a typical water pollutant, using synthesized porous silicon dioxide (SiO2). The SiO2 was synthesized via a cost-effective sol-gel method and characterized for its thermal stability, structural, textural, morphological properties, and elemental composition using techniques such as TGA, FT-IR, XRD, BET-BJH, SEM, TEM, and STEM-EDS. A unique aspect of this study is the evaluation of SiO2 reusability in MB removal through multiple adsorption and thermal regeneration cycles, a critical factor for practical applications. The results demonstrated the successful synthesis of thermally stable, amorphous, porous SiO2 with a surface area of 811 m(2)g(-1) initially, reducing to 600 m(2)g(-1) after the adsorption and regeneration cycles, indicating its stability and durability. The removal efficiency of MB was consistent across cycles, achieving 71.19 +/- 0.94%, 75.55 +/- 0.69%, and 73.49 +/- 0.15% after 20 min, and the adsorption capacity at equilibrium was 3.73 +/- 0.025, 4.08 +/- 0.045, and 3.48 +/- 0.021 mg(MB) g(ads)(-1) during the first, second, and third cycles, respectively. These findings highlight the potential of the synthesized porous SiO2 as a reusable and efficient adsorbent for MB removal in water treatment, contributing to the advancement of sustainable and effective solutions for water pollution.
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页数:17
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