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Fabrication of Ni/TiO2 visible light responsive photocatalyst for decomposition of oxytetracycline.
Park, Jaegu; Lam, Su Shiung; Park, Young-Kwon; Kim, Byung-Joo; An, Kay-Hyeok; Jung, Sang-Chul.
Afiliación
  • Park J; Dept. of Environ. Eng., Sunchon Nat'l Univ., 255 Sunchon 57922, South Korea.
  • Lam SS; Higher Institute Center of Excellences, Univ. Malaysia Terengganu, Kuala Neruss 21030, Malaysia.
  • Park YK; School of Environ. Eng., Univ. of Seoul, Seoul 02504, South Korea.
  • Kim BJ; Dept. of Nano & Advanced Mater. Eng., Jeonju Univ., 303 Jeonju 55069, South Korea.
  • An KH; Dept. of Nano & Advanced Mater. Eng., Jeonju Univ., 303 Jeonju 55069, South Korea.
  • Jung SC; Dept. of Environ. Eng., Sunchon Nat'l Univ., 255 Sunchon 57922, South Korea. Electronic address: jsc@sunchon.ac.kr.
Environ Res ; 216(Pt 3): 114657, 2023 01 01.
Article en En | MEDLINE | ID: mdl-36328223
ABSTRACT
Nickel-impregnated TiO2 photocatalyst (NiTP) responding to visible light was prepared by the liquid phase plasma (LPP) method, and its photoactivity was evaluated in degrading an antibiotic (oxytetracycline, OTC). For preparing the photocatalyst, nickel was uniformly impregnated onto TiO2 (P-25) powder, and the nickel content increased as the number of LPP reactions increased. In addition, the morphology and lattice of NiTP were observed through various instrumental analyses, and it was confirmed that NiO-type nanoparticles were impregnated in NiTP. Fundamentally, as the amount of impregnated nickel in the TiO2 powder increased sufficiently, the band gap energy of TiO2 decreased, and eventually, the NiTP excited by visible light was synthesized. Further, OTC had a decomposition reaction pathway in which active radicals generated in OTC photocatalytic reaction under NiTP were finally mineralized through reactions such as decarboxamidation, hydration, deamination, demethylation, and dehydroxylation. In effect, we succeeded in synthesizing a photocatalyst useable under visible light by performing only the LPP single process and developed a new advanced oxidation process (AOP) that can remove toxic antibiotics.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Oxitetraciclina Idioma: En Revista: Environ Res Año: 2023 Tipo del documento: Article País de afiliación: Corea del Sur

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Oxitetraciclina Idioma: En Revista: Environ Res Año: 2023 Tipo del documento: Article País de afiliación: Corea del Sur