Laboratory Scale Unit for Photocatalytic Removal of Organic Micropollutants from Water and Wastewater. Methyl Orange Degradation

被引:30
|
作者
Petrella, Andrea [1 ]
Petrella, Mario [1 ]
Boghetich, Giancarlo [1 ]
Mastrorilli, Piero [1 ]
Petruzzelli, Valentina [1 ]
Ranieri, Ezio [1 ]
Petruzzelli, Domenico [1 ]
机构
[1] Politecn Bari, Dipartimento Ingn Civile Ambientale Terr Edile &, I-70125 Bari, Italy
关键词
AZO-DYES; TIO2; EFFICIENCY; KINETICS; ZNO; RED; MECHANISMS; ADSORPTION; OXIDATION; VIOLET;
D O I
10.1021/ie3027026
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
An innovative laboratory scale unit was used to carry out UV photoinduced catalytic degradation of methyl orange. For this purpose, the experimental system was made of a bottom and an upper reservoir (similar to 120 L each) which were connected by an inclined channel through which water was recirculated. TiO2 (Anatase) was deposited (similar to 10(-2) mg/cm(2)) at the bottom of the connecting channel while the Methyl Orange solution was exposed to the UVB radiation (lambda approximate to 300 nm) during its recirculation through the connecting channel. The unit was first characterized from both the hydrodynamic and the hydraulic points of view. Photodegradation kinetics were followed by UV-vis absorption measurements of the residual methyl orange solution concentration along time, and the synergic effect of the catalyst and the intensity of the UV radiation in promoting degradation of the substrate was demonstrated. The abatement efficiency of the UV/TiO2 system toward methyl orange was evaluated in the concentration range 0.3-8.5 mg/L. Kinetic patterns were described by first (or pseudofirst) order theoretical models up to the concentration of 0.7 mg/L, whereas at higher concentrations kinetic trends were better described by zero-order models independently from the substrate concentration in the liquid-phase. The proposed solution, after an upscale field investigation, may represent a valuable alternative to the methods conventionally used for the abatement of textile dyes from wastewater, that is, water clarification, reverse osmosis, activated carbon sorption, and biosorption.
引用
收藏
页码:2201 / 2208
页数:8
相关论文
共 50 条
  • [31] Removal of organic micropollutants using advanced membrane-based water and wastewater treatment: A review
    Khanzada, Noman Khalid
    Farid, Muhammad Usman
    Kharraz, Jehad A.
    Choi, Jungwon
    Tang, Chuyang Y.
    Nghiem, Long D.
    Jang, Am
    An, Alicia Kyoungjin
    JOURNAL OF MEMBRANE SCIENCE, 2020, 598
  • [32] β-Cyclodextrin-Polyacrylamide Hydrogel for Removal of Organic Micropollutants from Water
    Song, Xia
    Mensah, Nana Nyarko
    Wen, Yuting
    Zhu, Jingling
    Zhang, Zhongxing
    Tan, Wui Siew
    Chen, Xinwei
    Li, Jun
    MOLECULES, 2021, 26 (16):
  • [33] Rapid removal of organic micropollutants from water by a porous β-cyclodextrin polymer
    Alsbaiee, Alaaeddin
    Smith, Brian J.
    Xiao, Leilei
    Ling, Yuhan
    Helbling, Damian E.
    Dichtel, William R.
    NATURE, 2016, 529 (7585) : 190 - U146
  • [34] Removal efficiency of organic micropollutants in successive wastewater treatment steps in a full-scale wastewater treatment plant: Bench-scale application of tertiary treatment processes to improve removal of organic micropollutants persisting after secondary treatment
    Choi, Sangki
    Yoom, Hoonsik
    Son, Heejong
    Seo, Changdong
    Kim, Kyunga
    Lee, Yunho
    Kim, Young Mo
    CHEMOSPHERE, 2022, 288
  • [35] Polyfluorinated Organic Micropollutants Removal from Water by Ion Exchange and Adsorption
    Conte, Lino
    Falletti, Luigi
    Zaggia, Alessandro
    Milan, Marco
    ICHEAP12: 12TH INTERNATIONAL CONFERENCE ON CHEMICAL & PROCESS ENGINEERING, 2015, 43 : 2257 - 2262
  • [36] Photocatalytic degradation of methyl orange in water by samarium-doped TiO2
    Shi, Jianwen
    Zheng, Jingtang
    Hu, Yan
    Zhao, Yucui
    ENVIRONMENTAL ENGINEERING SCIENCE, 2008, 25 (04) : 489 - 496
  • [37] Constructed wetlands for the removal of organic micropollutants from wastewater: Current status, progress, and challenges
    Kushwaha A.
    Goswami L.
    Kim B.S.
    Lee S.S.
    Pandey S.K.
    Kim K.-H.
    Chemosphere, 2024, 360
  • [38] Removal of emerging organic micropollutants from real hospital wastewater by modified ultrafiltration membranes
    Kose-Mutlu, Borte
    Ilyasoglu, Gulmire
    Ardic, Rabia
    Demirbilekli, Muhammed Ahmet
    Koyuncu, Ismail
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 357
  • [39] Cold atmospheric plasma technology for removal of organic micropollutants from wastewater-a review
    Kumar, Amit
    Skoro, Nikola
    Gernjak, Wolfgang
    Puac, Nevena
    EUROPEAN PHYSICAL JOURNAL D, 2021, 75 (11):
  • [40] Adsorption/precipitation prototype agent for simultaneous removal of phosphorus and organic micropollutants from wastewater
    Reif, Daniela
    Weisz, Liad
    Kobsik, Kara
    Schaar, Heidemarie
    Saracevic, Ernis
    Krampe, Jorg
    Kreuzinger, Norbert
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2023, 11 (03):