Your browser doesn't support javascript.
loading
Flower-like molybdenum disulfide/cobalt ferrite composite for the extraction of benzotriazole UV stabilizers in environmental samples.
Zhang, Zi-Yang; Xu, Yi-Heng; Chen, Ke-Yan; Zhang, Mei-Hang; Meng, Chun-Yan; Wang, Xue-Sheng; Wang, Man-Man.
Afiliación
  • Zhang ZY; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China.
  • Xu YH; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China.
  • Chen KY; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China.
  • Zhang MH; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China.
  • Meng CY; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China.
  • Wang XS; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China.
  • Wang MM; School of Public Health, North China University of Science and Technology, No.21 Bohai Road, CaofeidianHebei, 063210, Tangshan, China. mmwangheuu@126.com.
Mikrochim Acta ; 190(2): 75, 2023 Jan 26.
Article en En | MEDLINE | ID: mdl-36700977
ABSTRACT
Benzotriazole UV stabilizers (BUVSs) are a class of emerging contaminants of concern; the development of rapid and convenient monitoring method for these trace-level pollutants in waters is of crucial significance in environmental science. Here, a novel magnetic flower-like molybdenum disulfide/cobalt ferrite nanocomposite (MoS2/CoFe2O4) was synthesized by hydrothermal reaction. Compared with the conventional Fe3O4-based magnetic composites, the proposed material just required a minimum consumption of Co/Fe towards the equivalent of MoS2 while providing superior magnetization performance. Taking advantages of high adsorption capacity, extraordinary stability, and repeatability in construction, MoS2/CoFe2O4 was applied to the extraction to BUVSs. The enrichment factors of three BUVSs were in the range 164-193 when 20 mL of environmental water sample was loaded on 40 mg of the adsorbent. MoS2/CoFe2O4 could be regenerated and recycled at least 10 cycles of adsorption/desorption with recoveries of 80.1-111%. The method of MoS2/CoFe2O4-based extraction coupled with high-performance liquid chromatography-variable wavelength detector was applied to the monitoring of BUVSs in seawater, lake water, and wastewater, which gave detection limits (S/N = 3) of 0.023-0.030 ng·mL-1 and recoveries of 80.1-110%. The intra-day and inter-day precisions (relative standard deviation, RSDs, n = 3) were in the range 1.6-7.5% and 3.2-11.5%, respectively. The approach is an alternative for efficient and sensitive extraction and determination of trace-level environmental pollutants in waters.
Palabras clave

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Mikrochim Acta Año: 2023 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Mikrochim Acta Año: 2023 Tipo del documento: Article País de afiliación: China