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Wastewater treatment

Photocatalytic activity of tetracycline hydrochloride in mariculture wastewater degraded by CuO/Bi2O3 under visible light

, ORCID Icon, , , &
Pages 2930-2940 | Received 23 Sep 2020, Accepted 13 Nov 2020, Published online: 17 Dec 2020

References

  • Jinghua, L.; Xiaocai, Y.; Liping, W.; Meicen, G.; Siyao, T.; Wanting, Z. Photocatalytic Degradation of Oxytetracycline Hydrochloride Pollutants in Marine Aquaculture Wastewater under Visible Light. J Environ Sci Health. Part A, Toxic/Hazard Subst Environ Eng. 2019, 54(14), 1–7.
  • Regmi, C.; Kshetri, Y. K.; Kim, T.-H.; Pandey, R. P.; Kumar Ray, S.; Lee., S. W. Fabrication of Ni-doped BiVO4 Semiconductors with Enhanced Visible-light Photocatalytic Performances for Wastewater Treatment. Appl. Surf. Sci. 2017, 413(15), 253–265.
  • Xiaocai, Y.; Jinghua, L.; Liping, W.; meicen, G.; Zhiwei, N.; Zhen., Y. Study on Photocatalysis Treatment of Tetracycline Hydrochloride Pollution in Aquaculture Wastewater by Nano ZnO. Appl Chem. 2018, 47(12), 2586–2589 + 2594.
  • Changfu, C.;. Why Do Aquaculture in China Abuse Fishery Drugs? Contemporary Fish. 2020, 45(1), 64–65.
  • Liang, X. M.; Chen, B. W.; Nie, X. P.; Shi, Z.; Huang, X.; Li, X.;; et al. The Distribution and Partitioning of Common Antibiotics in Water and Sediment of the Pearl River Estuary, South China. Chemosphere. 2013, 92(11), 1410–1416.
  • Qiang, Z.; Xin, Q.; Jingmin, Z.; Jinping, C. The Current Situation of Antibiotic Pollution in Main Waters of China and Its Ecological Environmental Effects [J]. Environ. Chem. 2014, 33(7), 1075–1083.
  • Adriana, O.; Ewa, K.; Monika, H.; Ewa, F.; Sylwia, B.; Piotr, J.; Sebastian, N.; Iwona, K. Small-scale Wastewater Treatment Plants as a Source of the Dissemination of Antibiotic Resistance Genes in the Aquatic Environment [J]. J. Hazard. Mater. 2020, 381(5), 121221.
  • Tingting, Z.; Jiaojiao, M.; Yujun, Q.; Xiuwen, L.; Xianhui, P.; Wen, Z.; Na., H. Diversity of Tetracycline Resistant Genes in Human, Animal and Environmental Microecology in Different Countries. Chin J Infect Control. 2019, 18(9), 797–802.
  • Masjedi-Arani, M.; Salavati-Niasari., M. A Simple Sonochemical Approach for Synthesis and Characterization of Zn2SiO4 Nanostructures [J]. Ultrasonics - Sonochem. 2016, 29, 226–235. DOI: https://doi.org/10.1016/j.ultsonch.2015.09.020.
  • Salavati-Niasari, M.; Farzaneh, F.; Ghandi, M. Oxidation of Cyclohexene with Tert -butylhydroperoxide and Hydrogen Peroxide Catalyzed by Alumina-supported Manganese (II) Complexes [J]. J Mol Catal A Chem. 2002, 186(1), 101–107. DOI: https://doi.org/10.1016/S1381-1169(02)00045-6.
  • Onkani Shirley, P.; Diagboya Paul, N.; Mtunzi Fanyana, M.; Klink Michael, J.; OluOwolabi Bamidele, I.; Vusumzi, P. Comparative Study of the Photocatalytic Degradation of 2-chlorophenol under UV Irradiation Using Pristine and Ag-doped Species of TiO2, ZnO and ZnS Photocatalysts. J. Environ. Manage. 2020, 260(15), 110145.
  • Zhang, Y.; Jiang, W.; Ren, Y.; Wang, B.; Liu, Y.; Hua, Q.; Tang, J. Efficient Photocatalytic Degradation of 2-chloro-4, 6-dinitroresorcinol in Salty Industrial Wastewater Using Glass-supported TiO2. Korean J. Chem. Eng. 2020, 37(3), 536–545. DOI: https://doi.org/10.1007/s11814-019-0448-y.
  • Narendhran, S.; Baby Shakila, P.; Manikandan, M.; Vinoth, V.; Rajiv, P. Spectroscopic Investigation on Photocatalytic Degradation of Methyl Orange Using Fe2O3/WO3/FeWO4 Nanomaterials. Spectrochim. Acta, Part A: Mol. Biomol. Spectrosc. 2020, 232, 118164. DOI: https://doi.org/10.1016/j.saa.2020.118164.
  • Rostami-Vartooni, A.; Nasrollahzadeh, M.; Salavati-Niasari, M.; Atarod, M. Photocatalytic Degradation of Azo Dyes by Titanium Dioxide Supported Silver Nanoparticles Prepared by a Green Method Using Carpobrotus Acinaciformis Extract [J]. J. Alloys Compd. 2016, 689, 15–20. DOI: https://doi.org/10.1016/j.jallcom.2016.07.253.
  • Salavati-Niasari, M.; Davar, F.; Fereshteh, Z. Synthesis and Characterization of ZnO Nanocrystals from Thermolysis of New Precursor [J]. Chem. Eng. J. 2008, 146(3), 498–502. DOI: https://doi.org/10.1016/j.cej.2008.09.042.
  • Salavati-Niasari, M.; Davar, F.; Mazaheri, M. Synthesis and Characterization of ZnS Nanoclusters via Hydrothermal Processing from [Bis(salicylidene)zinc(ii)][j]. J. Alloys Compd. 2008, 470(1), 502–506. DOI: https://doi.org/10.1016/j.jallcom.2008.03.048.
  • Fan, L.; Synthesis and Visible Light Catalytic Performance of Core-shell Fe3O4@Bi2O3 Composite Microspheres. Proceedings of the 15th colloids and interface chemistry conference of the Chinese chemical society (2nd chapter). Chinese chemical society: Chinese chemical society, 2015:118–119.
  • Salavati-Niasari., M.;. Nanoscale Microreactor-encapsulation of 18-membered Decaaza Macrocycle Nickel (II) Complexes [J]. Inorg. Chem. Commun. 2004, 8(2), 174–177. DOI: https://doi.org/10.1016/j.inoche.2004.11.004.
  • Sin, J.-C.; Lam, S.-M.; Satoshi, I.; Lee, K.-T.; Mohamed, A. R. Sunlight Photocatalytic Activity Enhancement and Mechanism of Novel Europium-doped ZnO Hierarchical Micro/nanospheres for Degradation of Pheno [J]. Appl. Catal. B Environ. 2014, 148–149(27), 258–268.
  • Esmaeili, E.; Salavati-Niasari, M.; Mohandes, F.; Davar, F.; Seyghalkar, H. Modified Single-phase Hematite Nanoparticles via a Facile Approach for Large-scale Synthesis [J]. Chem. Eng. J. 2011, 170(1), 278–285. DOI: https://doi.org/10.1016/j.cej.2011.03.010.
  • Salavati-Niasari, M.; Shakouri-Arani, M.; Davar, F. Flexible Ligand Synthesis, Characterization and Catalytic Oxidation of Cyclohexane with Host (Nanocavity of zeolite-Y)/guest (Mn(ii), Co(II), Ni(II) and Cu(II) Complexes of Tetrahydro-salophen) Nanocomposite materials[J]. Microporous Mesoporous Mater. 2008, 116(1), 77–85. DOI: https://doi.org/10.1016/j.micromeso.2008.03.015.
  • Tianhua, F.; Hong, Z. Progress in Preparation and Modification of ZnO Photocatalyst. J Chengdu Univ (Natural Science Edition). 2019, 38(3), 316–321.
  • Salavati-Niasari, M.; Hasanalian, J.; Najafian, H. Alumina-supported FeCl3, MnCl2, CoCl2, NiCl2, CuCl2, and ZnCl2 as Catalysts for the Benzylation of Benzene by Benzyl Chloride. J Mol Catal A Chem. 2003, 209(1), 209–214. DOI: https://doi.org/10.1016/j.molcata.2003.08.027.
  • Xiangrui, Z.; Jing, W.; Xin, L. Research Progress in Photocatalyst Modification of TiO2. Environ Protect Circular Econ. 2019, 39(8), 28–31 + 67.
  • Salavati-Niasari, M.; Banitaba, S. H. Alumina-supported Mn(II), Co(II), Ni(II) and Cu(II) Bis(2-hydroxyanil)acetylacetone Complexes as Catalysts for the Oxidation of Cyclohexene with Tert –butylhydroperoxide. J Mol Catal A Chem. 2003, 201(1), 43–54. DOI: https://doi.org/10.1016/S1381-1169(03)00128-6.
  • Langmara, O.; Ganivetb, C.; de la Torreb, G.; Torresbc, T.; Costaa, R. D.; Guldia., D. M. Optimizing CuO P-type Dye-sensitized Solar Cells by Using a Comprehensive Electrochemical Impedance Spectroscopic Study. Nanoscale. 2018, 8(41), 17963–17975. DOI: https://doi.org/10.1039/C6NR05507A.
  • Wang, X.; Cho, H. J. p-CuO Nanowire/n-ZnO Nanosheet Heterojunction-based Near-UV Sensor Fabricated by Electroplating and Thermal Oxidation Process. Mater. Lett. 2018, 223, 170–173. DOI: https://doi.org/10.1016/j.matlet.2018.04.042.
  • Zhou, Q.; Ting-Ting, L.; Wei, X.; Zhu, H.-L.; Zheng, Y.-Q. Ultrathin Nanosheets-assembled CuO Flowers for Highly Efficient Electrocatalytic Water Oxidation. J. Mater. Sci. 2018, 53(11), 8141–8150. DOI: https://doi.org/10.1007/s10853-018-2160-4.
  • Scuderi, V.; Amiard, G.; Sanz, R.; Boninelli, S.; Impellizzeri, G.; Privitera, V. TiO2, Coated CuO Nanowire Array: Ultrathin P–n Heterojunction to Modulate Cationic/anionic Dye Photo-degradation in Water. Appl. Surf. Sci. 2017, 416, 885–890. DOI: https://doi.org/10.1016/j.apsusc.2017.04.229.
  • Rodney John, D.; Deepapriya, S.; Annie Vinosha, P.; Cyril Robinson, M.; Krishnan, S.; Martin Britto Dhas, S. A.; Jerome Das, S. Impact of Synthesis Technique on Lanthanum Doped Copper Oxide Nanocrystals, an Alternative Counter Electrode for Pt-Free Dye-Sensitized Solar Cells. J. Nanosci. Nanotechnol. 2020, 20(7), 4023–4034.
  • Jinghuihua. Preparation and Characterization of Nano Bismuth Oxide; Central South University, 2011.
  • Mortazavi-Derazkola, S.; Zinatloo-Ajabshir, S.; Salavati-Niasari., M. Novel Simple Solve Nt-less Preparation, Characterization and Degradation of the Cationic Dye over Holmium Oxide Ceramic Nanostructures [J]. Ceram. Int. 2015, 41(8), 9593–9601. DOI: https://doi.org/10.1016/j.ceramint.2015.04.021.
  • Rodríguez-González, V.; Obregón, S.; Patrón-Soberano, O. A.; Terashima, C.; Fujishima., A. An Approach to the Photocatalytic Mechanism in the TiO2-nanomaterials Microorganism Interface for the Control of Infectious Processes. Appl. Catal. B Environ. 2020, 270, 118853. DOI: https://doi.org/10.1016/j.apcatb.2020.118853.
  • Zeng, B.; zeng, W. J.; liu, W. F. Green Synthetic Graphene-loaded Copper Sulfide/cadmium Sulfide Multistage Nanosphere and Its Application in Water Pollution Treatment. Acta Intraocular Lens Sinica. 2019, 48(10), 1907–1911. ( (in Chinese with English abstract)).
  • Ruan, Y.; Gao., B. Synthesis of Zinc-porphyrin Based Multi-arm Star Poly (N -isopropylacrylamide) and the Effect of Topology on Photocatalytic Performance. J. Mol. Struct. 2020, 1210(15), 128050.
  • Tavakoli, P.; Shadizadeh, S. R.; Hayati, F.; Fattahi, M. Effects of Synthesized Nanoparticles and Henna-Tragacanth Solutions on Oil/water Interfacial Tension: Nanofluids Stability Considerations. Petroleum. 2020, 6, 3. DOI: https://doi.org/10.1016/j.petlm.2020.03.001.
  • Payra, S.; Likhitha Reddy, K.; Sharma, R. S.; Singh, S.; Roy., S. A Trade-off between Adsorption and Photocatalysis over ZIF-derived Composite. J. Hazard. Mater. 2020, 393(5), 122491.
  • Rezaee, M.; Kazemeini, M.; Fattahi, M.; Rashidi, A. M.; Vafajoo, L. Oxidation of H2S to Elemental Sulfur over Alumina Based Nanocatalysts: Synthesis and Physiochemical Evaluations [J]. Scientia Iranica. 2016, 23(3), 1160–1174. DOI: https://doi.org/10.24200/sci.2016.3886.
  • Kazemeini, M.; Nikkhah, M.; Fattahi, M.; Vafajoo., L.; Properties, P. Catalytic Performances of Nanostructured V2O5 over TiO2 and γ-Al2O3 for Oxidative Dehydrogenation of Propane [J]. Chem. Biochem. Eng. Q. 2016, 30(1), 9–18. DOI: https://doi.org/10.15255/CABEQ.2014.2049.
  • Serafin, J.; Soler, L.; Vega, D.; Rodríguez, Á.; Llorca, J. Macroporous Silicon Coated with M/TiO2 (M = Au,Pt) as a Highly Efficient Photoreactor for Hydrogen Production. Chem. Eng. J. 2020, 393(1), 124701.
  • zhi., W.;. Process Research of Low Temperature Plasma and H2O2 Enhanced Vacuum Uv Catalytic Degradation of VOCs Such as Toluene; Zhejiang university, 2019.
  • Baniamer, M.; Almasi, A.; Sharifnia, S. Degradation of Diclofenac Sodium under Solar Light Irradiation by Photocatalytic Performance of ZnO and V2O5. Iran J Chem Eng. 2018, 15(3), 3–14.
  • Haifeng, B.;. Preparation of Bismuth Oxide Matrix Composites by Electrospinning and Their Visible Light Photocatalytic Properties [D]; Jilin University, 2019.
  • Sin, J.-C.; Lam, S.-M.; Satoshi, I.; Lee, K.-T.; Mohamed., A. R. Sunlight Photocatalytic Activity Enhancement and Mechanism of Novel Europium-doped ZnO Hierarchical Micro/nanospheres for Degradation of Phenol [J]. Appl Catal B. 2014, 148–149, 258–268. DOI: https://doi.org/10.1016/j.apcatb.2013.11.001.
  • Yin, M.; Zhaosheng, L.; Kou, J.; Zou, Z. Mechanism Investigation of Visible Light-Induced Degradation in a Heterogeneous TiO2/Eosin Y/Rhodamine B System [J]. Environ. Sci. Technol. 2009, 43(21), 8361–8366. DOI: https://doi.org/10.1021/es902011h.

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