SYNTHESIS AND CHARACTERIZATION OF THE MnO2/Al2O3 CATALYST APPLIED FOR TREATMENT OF ORGANIC DYES IN WASTE WATER

Ngày nhận bài: 23-01-2017

Ngày duyệt đăng: 27-04-2017

Ngày xuất bản: 06-08-2025

Lượt xem

0

Download

0

Chuyên mục:

KỸ THUẬT VÀ CÔNG NGHỆ

Cách trích dẫn:

Hanh, N. (2025). SYNTHESIS AND CHARACTERIZATION OF THE MnO2/Al2O3 CATALYST APPLIED FOR TREATMENT OF ORGANIC DYES IN WASTE WATER. Tạp Chí Khoa học Nông nghiệp Việt Nam, 15(3), 290–297. https://doi.org/10.31817/tckhnnvn.2017.15.3.

SYNTHESIS AND CHARACTERIZATION OF THE MnO2/Al2O3 CATALYST APPLIED FOR TREATMENT OF ORGANIC DYES IN WASTE WATER

Nguyen Thi Hong Hanh (*) 1

  • Tác giả liên hệ: [email protected]
  • 1 Department of Chemistry, Vietnam National University of Agriculture
  • Từ khóa

    Metal oxide, MnO2/Al2O3, Methylene blue, organic dyes, ozonation

    Tóm tắt


    In this study, MnO2/Al2O3 catalysts were synthesized from manganese acetate and aluminum hydroxide by the sol-gel method at room temperature, followed by thermal treatment at 300°C. The characterization of the product was performed by X-ray diffraction (XRD), energy dispersive analysis of X-rays (EDX), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and Brunauer-Emmett-Teller (BET). The ozonation of methylene blue (MB) solution in the presence of MnO2/Al2O3 catalyst was investigated in a laboratory scale batch reactor. The effect of pH solution (2-12), reaction time (0 - 60 minutes), and MnO2/Al2O3 catalyst dosage (0 and 0.1 - 5 g.L-1) on MB treatment was determined. The results showed that the reaction with the presence of catalyst required less time and improved the reduction level of MB compared to conventional ozonation. The optimal pH and catalyst dosage values were 8 and 1 g.L-1, respectively. For textile dyeing wastewater treatment, the catalytic ozonation decreased the color scale from 7693.89 Pt-Co to 28.40 Pt-Co and COD from 387.60 mg.L-1 to 52.35 g.L-1. Therefore, the ozonation with MnO2/Al2O3 catalysts can be considered as effective and feasible for treating the textile dyeing wastewater.

    Tài liệu tham khảo

    A. Serrano, A. van den Doel, M. van Bommel, J. Hallett, I. Joosten, K.J. Van den Berg (2015). Investigation of crimson-dyed fibres for a new approach on the characterization of cochineal and kermes dyes in historical textiles, Anal. Chim. Acta., 897: 116 - 127.

    F. Arena, G. Trunfio, J. Negro, B. Fazio, L. Spadaro (2007). Basic Evidence of the Molecular Dispersion of MnCeOx Catalysts Synthesized via a Novel “Redox-Precipitation” Route, Chem. Mater., 19: 2269 - 2276.

    F. Nawaz, Y. Xie, J. Xiao, H. Cao, Z.A. Ghazi, Z. Guo, and Yue Chen (2016). The influence of the substituent on the phenol oxidation rate and reactive species in cubic MnO2 catalytic ozonation, Catal. Sci. Technol., 6: 7875 - 7884.

    H.M. Jalali (2016). Kinetic study of antibiotic ciprofloxacin ozonation by MWCNT/MnO2 using Monte Carlo simulation, Mater. Sci. Eng. C.,

    : 924 - 929.

    J. Pulit-Prociak, J. Chwastowski, A. Kucharski, M. Banach (2016). Functionalization of textiles with silver and zinc oxide nanoparticles, Appl. Surf. Sci., 385: 543 - 553.

    L. Zhou, K. Xu, X. Cheng, Y. Xu, Q. Jia (2017). Study on optimizing production scheduling for water-saving in textile dyeing industry, J. Clean. Prod., 141: 721- 727.

    M.A. Rahman, S.M.R. Amin, a M.S. Alam (2012). Removal of Methylene Blue from Waste Water Using Activated Carbon Prepared from Rice Husk, Dhaka Univercity J. Sci., 60: 185 - 189.

    P. Bhatt, A. Rani (2013). Textile dyeing and printing industry: An environmental hazard, Asian Dye., 10: 51 - 54.

    P.B.S. Ratna (2012), Pollution due to synthetic dyes toxicity and carcinogenicity studies and remediation, Int. J. Environ. Sci., 3: 940 - 955.

    S. Khuntia, S.K. Majumder, P. Ghosh (2016). Catalytic ozonation of dye in a microbubble system: Hydroxyl radical contribution and effect of salt, J. Environ. Chem. Eng., 4: 2250 - 2258.

    X. Tan, Y. Wan, Y. Huang, C. He, Z. Zhang, Z. He, Hu L., Zeng J. and Shu D. (2017). Three-dimensional MnO2 porous hollow microspheres for enhanced activity as ozonation catalysts in degradation of bisphenol A, J. Hazard. Mater., 321: 162 - 172.

    Y. Liu, J. Jiang, J. Ma, Y. Yang, C. Luo, X. Huangfu, and Zhongkai Guo (2015). Role of the propagation reactions on the hydroxyl radical formation in ozonation and peroxone (ozone/hydrogen peroxide) processes, Water Res., 68: 750 - 758.

    Y.P. Zong, X.H. Liu, X.W. Du, Y.R. Lu, M.Y. Wang, G.Y. Wang (2013). Decolorization of methylene blue in aqueous suspensions of gold nanoparticles using parallel nanosecond pulsed laser., J. Environ. Sci. Health. A. Tox. Hazard. Subst. Environ. Eng., 48: 1583- 1591.