Application of the Zn0.5Mn0.5Fe2O4-PMMA nanocomposite for efficient removal of complex organic pollutants

被引:8
作者
Arambula, Joshua [1 ]
Mohammadi, Somayeh [1 ]
Mahdaviarab, Amirhossein [2 ]
Sanaei, Daryoush [3 ]
Patil, Rajendra P. [4 ]
Sharifan, Hamidreza [1 ]
机构
[1] Univ Texas El Paso, Dept Chem & Biochem, El Paso, TX 79968 USA
[2] Texas A&M Univ, Dept Biol & Agr Engn, College Stn, TX USA
[3] Univ Tehran Med Sci, Inst Environm Res, Ctr Water Qual Res, Tehran, Iran
[4] Shivaji Univ, MH Shinde Mahavidyalaya, Dept Chem, Kolhapur 416206, Maharashtra, India
关键词
FERRITES; CARBON; DYES; CO1-XZNXFE2O4; DEGRADATION; ZN;
D O I
10.1039/d3nj04840c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nanomaterials are promising candidates to overcome the water quality issues caused by dye consuming industries. However, their restricted efficiency in water treatment hinders their practical applications, particularly in the case of dispersed nanomaterials used in water systems. This study presents a novel approach for immobilizing ferromagnetic nanocomposites on a polymeric microporous structure. 100 mg L-1 Zn0.5Mn0.5Fe2O4 nanocomposites (NCPs) were embedded into poly(methyl methacrylate) (PMMA), eliminating the need to retrieve the dispersed nanomaterials after water treatment. The developed Zn0.5Mn0.5Fe2O4-PMMA nanocomposite was characterized by scanning electron microscopy (SEM) and Fourier transform infrared (FTIR) spectroscopy. The removal of two commercial dyes (Brilliant Blue and Allura Red) at concentration levels of (0, 25, 35, 50, 70, and 100 mg L-1) was examined by batch adsorption studies followed by ultraviolet-visible (UV-vis) spectrophotometry quantification. It was observed that the maximum removal percentage was obtained for the embedded Zn0.5Mn0.5Fe2O4 nanoparticles on the PMMA polymer using 100 mg of Zn0.5Mn0.5Fe2O4 NCPs for all the four dye levels in comparison to dispersed Zn0.5Mn0.5Fe2O4 nanocomposites. It was observed that the maximum adsorption of Brilliant Blue and Allura Red was obtained under alkaline conditions, pH 7.32 and 8.37, respectively. It was suggested that Zn0.5Mn0.5Fe2O4-PMMA can be applied as a sustainable material to enhance water treatment efficiency by merging the advantages of a fast preparation technique and a higher adsorption capacity to remove complex organic contaminants.
引用
收藏
页码:22235 / 22245
页数:11
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