|
Adil, S., Maryam, B., Kim, E. J., & Dulova, N. (2020). Individual and simultaneous degradation of sulfamethoxazole and trimethoprim by ozone, ozone/hydrogen peroxide and ozone/persulfate processes: A comparative study. Environmental Research, 189, 109889.
Amr, S. S. A., Aziz, H. A., Adlan, M. N., & Bashir, M. J. K. (2013). Pretreatment of stabilized leachate using ozone/persulfate oxidation process. Chemical Engineering Journal, 221, 492-499.
Andreozzi, R., Caprio, V., Insola, A., & Marotta, R. (1999). Advanced oxidation processes (AOP) for water purification and recovery. Catalysis Today, 53, 51-59.
Anes, B., Silva, R. J. N. B., Oliveira, C., & Camoes, M. F. (2019). Seawater pH measurements with a combination glass electrode and high ionic strength TRIS-TRIS HCl reference buffers – An uncertainty evaluation approach. Talanta, 193, 118-122.
Arslan, A., Topkaya, E., Bingol, D., & Veli, S. (2018). Removal of anionic surfactant sodium dodecyl sulfate from aqueous solutions by O3/UV/H2O2 advanced oxidation process: Process optimization with response surface methodology approach. Sustainable Environment Research, 28, 65-71.
Bhuvaneswari, R., NAgarajan, & V., Chandiramouli, R. (2021). Molecular interaction of oxytetracycline and sulfapyridine on blue phosphorene nanotubes: A first-principles insight. Physics Letters A, 394, 127198.
Bolton, J. R., Bircher, K. G., Tumas, W., & Tolman, C. A. (2001). Figures-of-merit for the technical development and application of advanced oxidation technologies for both electric- and solar-driven systems. Pure and Applied Chemistry, 73(4), 627-637.
Campos-Martin, J. M., Blanco-Brieva, G., & Fierro, J. L. G. (2006). Hydrogen peroxide synthesis: An outlook beyond the anthraquinone process. Angewandte Chemie, 45, 6962-6984.
Chen, Z., Fang, J., Fan, C., & Shang, C. (2016). Oxidative degradation of N-Nitrosopyrrolidine by the ozone/UV process: Kinetics and pathways. Chemosphere, 150, 731-739.
Cheng, P., Wang, Y., Sarakha, M., & Mailhot, G. (2021). Enhancement of the photocatalytic activity of decatungstate, W10O324-, for the oxidation of sulfasalazine/sulfapyridine in the presence of hydrogen peroxide. Journal of Photochemistry & Photobiology, A: Chemistry, 404, 112890.
Dai, Q., Chen, L., Chen, W., & Chen, J. (2015). Degradation and kinetics of phenoxyacetic acid in aqueous solution by ozonation. Separation and Purification Technology, 142, 287-292.
Dantas, R. F., Contreras, S., Sans, C., & Esplugas, S. (2008). Sulfamethoxazole abatement by means of ozonation. Journal of Hazardous Materials, 150, 790-794.
Feng, M., Yan, L., Zhang, X., Sun, P., Yang, S., Wang, L., & Wang, Z. (2016). Fast removal of the antibiotic flumequine from aqueous solution by ozonation: Influencing factors, reaction pathways, and toxicity evaluation. Science of the Total Environment, 541, 167-175.
Franson, M. A. H. (1992). APHA method 4500-O3: standard methods for the examination of water and wastewater. American Public Health Association/American Water Works Association/Water Environment Federation, 18th Ed., 426-429.
Furman, O. S., Teel, A. L. & Watts, R. J. (2010). Mechanism of base activation of persulfate. Environmental Scence and Technology, 44, 6423-6428.
Ghuge, S. P., & Saroha, A. K. (2018). Catalytic ozonation of dye industry effluent using mesoporous bimetallic Ru-Cu/SBA-15 catalyst. Process Safety and Environmental Protection, 118, 125-132.
Han, Q. F., Zhang, X. R., Xu, X. Y., Wang, X. L., Yuan, X. Z., Ding, Z. J., Zhao, S., & Wang, S. G. (2021). Antibiotics in marine aquaculture farms surrounding Laizhou Bay, Bohai Sea: Distribution characteristics considering various culture modes and organism species. Science of the Total Environment, 760, 143863.
House, D. A. (1961). Kinetics and mechanism of oxidations by peroxydisulfate. Chemical Reviews, 62, 185-203.
Jabesa, A., & Ghosh, P. (2016). Removal of diethyl phthalate from water by ozone microbubbles in a pilot plant. Journal of Environmental Management, 180, 476-484.
Ji, L., Chen, W., Zheng, S., Xu, Z., & Zhu, D. (2009). Adsorption of Sulfonamide Antibiotics to Multiwalled Carbon Nanotubes. Langmuir, 25(19), 11608-11613.
Joseph, C. G., Puma, G. L., Bono, A., & Krishnaiah, D. (2009). Sonophotocatalysis in advanced oxidation process: A short review. Ultrasonics Sonochemistry, 16, 583-589.
Lee, B. (2014). Ozone Treatment of Antibiotics in Water. Water Reclamation and Sustainability, 265-316.
Legrini, O., Oliveros, E. & Braun, A. M. (1993). Photochemical processes for water treatment. Chemical Reviews, 93, 671-698.
Lewis, E. L. & Perkin, R. G. (1981). The practical salinity scale 1978: conversion of existing data. Deep-Sea Research, 28(4), 307-328.
Li, Y., Chen, J., Qiao, X., Zhang, H., Zhang, Y., & Zhou, C. (2016a). Insights into photolytic mechanism of sulfapyridine induced by triplet-excited dissolved organic matter. Chemosphere, 147, 305-310.
Li, H., Wan, J., Ma, Y., & Wang, Y. (2016b). Reaction pathway and oxidation mechanisms of dibutyl phthalate by persulfate activated with zero-valent iron. Science of the Total Environment, 562, 889-897.
Liang, C., Wang, Z. S. & Bruell, C. J. (2007). Influence of pH on persulfate oxidation of TCE at ambient temperatures. Chemosphere, 66, 106-113.
Lin, A. Y. C., Lin, C. F., Chiou, J. M. & Hong, P. K. A. (2009). O3 and O3/H2O2 treatment of sulfonamide and macrolide antibiotics in wastewater. Journal of Hazardous Materials, 171,452-458.
Lin, C. C. & Tasi, C. W. (2019). Degradation of isopropyl alcohol using UV and persulfate in a large reactor. Separation and Purification Technology, 209, 88-93.
Lu, T., Chen, Y., Liu, M. & Jiang, W. (2019). Efficient degradation of evaporative condensing liquid of shale gas wastewater using O3/UV process. Process Safety and Environmental Protection, 121, 175-183.
Lucas, M. S., Peres, J. A. & Li, G. (2010). Treatment of winery wastewater by ozone-based advanced oxidation processes (O3, O3/UV and O3/UV/H2O2) in a pilot-scale bubble column reactor and process economics. Separation and Purification Technology, 72, 235-241.
Marc, P. T., Veronica, G. M., Banos, M. A., Gimenez, J. & Esplugas, S. (2004). Degradation of chlorophenols by means of advanced oxidation processes: a general review. Applied Catalysis B: Environmental, 47, 219-256.
Mehrabadi, Z. S. (2016). Performance of advanced oxidation process (UV/O3/H2O2) degrading amoxicillin wastewater: A comparative study. Journal of Applied Research in Water and Wastewater, 5, 222-231.
Pelaez, M., Nolan, N. T., Pillai, S. C., Seery, M. K., Falaras, P., Kontos, A. G., Dunlop, P. S. M., Hamilton, J. W. J., Byrne, J. A., Shea, K. O., Entezari, M. H. & Dionysiou, D. D. (2012). A review on the visible light active titanium dioxide photocatalysts for environmental applications. Applied Catalysis B: Environmental, 125, 331-349.
Saien, J., Ojaghloo, Z., Soleymani, A. R., & Rasoulifard, M. H. (2011). Homogeneous and heterogeneous AOPs for rapid degradation of Triton X-100 in aqueous media via UV light, nano titania hydrogen peroxide and potassium persulfate. Chemical Engineering Journal, 167, 172-182.
Sellers, R. M. (1980). Spectrophotometric determination of hydrogen peroxide using potassium titanium(IV) oxalate. Analyst, 105, 950-954.
Sharma, S. P. & Ruparelia, J. P. (2017). Synergistic effect of O3/UV/PS process for oxidation of reactive dyes: effects of operating parameters. International Journal of Advanced Research in Engineering and Technology, 8(2), 49-57.
Shen, X., Jin, G., Zhao, Y., & Shao, X. (2020). Prevalence and distribution analysis of antibiotic resistance genes in a large-scale aquaculture environment. Science of the Total Environment, 711, 134626.
Tian, Y., Gao, B., Morales, V. L., Chen, H., Wang, Y., & Li, H. (2013). Removal of sulfamethoxazole and sulfapyridine by carbon nanotubes in fixed-bed columns. Chemosphere, 90, 2597-2605.
Tian, S., Zhang, C., Huang, D., Wang, R., Zeng, G., Yan, M., Xiong, W., Zhou, C., Cheng, M., Xue, W., Yang, Y., & Wang, W. (2020). Recent progress in sustainable technologies for adsorptive and reactive removal of sulfonamides. Chemical Engineering Journal, 389, 123423.
Wang, J., Zhou, T., Mao, J. & Wu, X. (2015). Comparative study of sulfamethazine degradation in visible light induced photo-Fenton and photo-Fenton-like systems. Journal of Environmental Chemical Engineering, 3, 2393-2400.
Wu, C. H. & Ng, H. Y. (2008). Degradation of C.I. reactive red 2 (RR2) using ozone-based systems: comparisons of decolorization efficiency and power consumption. Journal of Hazardous Materials, 152, 120-127.
Wu, J. T., Wu, C. H., Liu, C. Y., & Huang, W. J. (2015). Photodegradation of sulfonamide antimicrobial compounds (sulfadiazine, sulfamethizole, sulfamethoxazole and sulfathiazole) in various UV/oxidant systems. Water Science & Technology, 71(3), 412-417.
Wu, C. H., Wu, J. T. & Lin, Y. H. (2016). Mineralization of sulfamethizole in photo-Fenton and photo-Fenton-like systems. Water Science and Technology, 73(4), 746-750.
Xing, Z. P., Sun, D. Z., Yu, X. J., Zou, J. L. & Zhou, W. (2014). Treatment of antibiotic fermentation-based pharmaceutical wastewater using anaerobic and aerobic moving bed biofilm reactors combined with ozone/hydrogen peroxide process. Environmental Progress and Sustainable Energy, 33(1), 170-177.
Xu, Y., Wu, Y., Zhang, W., Fan, X., Wang, Y. & Zhang, H. (2018). Performance of artificial sweetener sucralose mineralization via UV/O3 process: Kinetics, toxicity and intermediates. Chemical Engineering Journal, 353, 626-634.
Yu, X. Y., Bao, Z. C. & Barker, J. R. (2004). Free radical reactions involving Cl•, Cl2-•, and SO4-• in the 248 nm photolysis of aqueous solutions containing S2O82- and Cl. The Journal of Physical Chemistry A, 108, 295-308.
Yu, Y. H., Ma, J. & Hou, Y. J. (2006). Degradation of 2, 4-dichlorophenoxyacetic acid in water by ozone-hydrogen peroxide process. Journal of Enuironmend Scietlces, 18, 1043-1049.
Yue, P. L. (1993). Modelling of kinetics and reactor for water purification by photo-oxidation. Chemical Engineering Science, 48(1), 1-11.
Zangeneh, H., Zinatizadeh, A. A. L. & Feizy, M. (2014). A comparative study on the performance of different advanced oxidation processes (UV/O3/H2O2) treating linear alkyl benzene (LAB) production plant’s wastewater. Journal of Industrial and Engineering Chemistry, 20, 1453-1461.
Zhao, Y., Yuan, X., Li, X., Jiang, L., & Wang, H. (2021). Burgeoning prospects of biochar and its composite in persulfate-advanced oxidation process. Journal of Hazardous Materials, 409, 124893.
Zhou, X., Liu, D., Zhang, Y., Chen, J., Chu, H. & Qian, Y. (2018). Degradation mechanism and kinetic modeling for UV/peroxydisulfate treatment of penicillin antibiotics. Chemical Engineering Journal, 341, 93-101.
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