Novel g-C3N4/BiVO4 heterostructured nanohybrids for high efficiency photocatalytic degradation of toxic chemical pollutants

被引:68
|
作者
Reddy, Ch. Venkata [1 ]
Nagar, Aashna [2 ]
Shetti, Nagaraj P. [3 ]
Reddy, I. Neelakanta [1 ]
Basu, Soumen [2 ,4 ]
Shim, Jaesool [1 ]
Kakarla, Raghava Reddy [5 ]
机构
[1] Yeungnam Univ, Sch Mech Engn, Gyongsan 712749, South Korea
[2] Thapar Inst Engn & Technol, Sch Chem & Biochem, Patiala 147004, India
[3] KLE Technol Univ, Sch Adv Sci, Dept Chem, Hubballi 580031, Karnataka, India
[4] Thapar Inst Engn & Technol, Affiliate Fac, TIET Virginia Tech Ctr Excellence Emerging Mat, Patiala 147004, India
[5] Univ Sydney, Sch Chem & Biomol Engn, Sydney, NSW 2006, Australia
基金
新加坡国家研究基金会;
关键词
g-C3N4/BiVO4; nanohybrids; Pollutants; Photocatalysis; Environmental remediation; Z-SCHEME PHOTOCATALYST; OXIDATION; PHOTODEGRADATION; NANOSTRUCTURES; FABRICATION;
D O I
10.1016/j.chemosphere.2023.138146
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Novel heterostructured hybrid catalysts are essential for the efficient photocatalytic removal of organic pollutants from wastewater generated by the pharmaceutical and textile industries. In this study, novel g-C3N4/BiVO4 nanohybrid catalysts were prepared using a solvothermal technique, and examined their structural and optical properties using different characterizations. The X-ray diffraction analysis confirmed the monoclinic crystal phase of BiVO4. Field emission scanning electron microscopy (FESEM) images revealed that g-C3N4 sheets anchored on the surface of BiVO4 nanospheres. X-ray photoelectron spectroscopy (XPS) analysis confirmed the oxidation states of g-C3N4/BiVO4 composite sample. UV-Vis DRS spectroscopy analysis revealed that the composite (2.08 eV) sample had a reduced bandgap compared to other samples. The photocatalytic properties of the prepared samples were tested in the presence of organic methylene blue (MB) and antibiotic tetracycline (TC) pollutants under visible light illumination. The hybrid composite catalyst exhibited enhanced photocatalytic degradation efficiency of MB (88%) and TC (89%) pollutants at elevated rate constants of 0.0128 and 0.01174 min(-1), respectively. The improved catalytic performance of the composite catalyst is due to the heterojunctions between g-C3N4 and BiVO4 that successfully reduced the rate of charge carrier recombination in the catalyst system. Scavenger experiments revealed that O-2(center dot-) and h(+) radicals played a main role in the degradation of the chemical pollutants. The developed g-C3N4/BiVO4 heterostructured catalyst is a suitable candidate for removing contaminants from industrial wastewater because of its facile fabrication and exceptional photocatalytic activity under visible light irradiation.
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页数:10
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