The double heterostructure photocatalyst MoS2@ZIF-67/TiO2: Triumphant modification of TiO2 and efficient removal of Karenia mikimotoi

被引:10
|
作者
Wei, Yushan [1 ]
Chen, Junfeng [1 ]
Wang, Mengjiao [1 ]
Zhang, Xinyi [1 ]
Xu, Yuling [1 ]
Wei, Qingying [1 ]
Lan, Feng [1 ]
Gao, Peike [1 ]
Liu, Yanyan [1 ]
Wang, Renjun [1 ]
机构
[1] Qufu Normal Univ, Sch Life Sci, Qufu 273165, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
MoS2; Karenia mikimotoi; ZIF-67; TiO2; Photocatalyst; HARMFUL ALGAL BLOOMS; TIO2-BASED PHOTOCATALYSTS; MICROCYSTIS-AERUGINOSA; INACTIVATION; NANOCOMPOSITE; NANOPARTICLES; PERFORMANCE; MECHANISM;
D O I
10.1016/j.cej.2023.147954
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Water eutrophication led to the occurrence of harmful algal blooms (HABs) with the increase of urban sewage and industrial wastewater. As a periodic ecological disaster, it caused serious harm to the ecological environment (including the destruction of the food chain and the death of animals, etc.) and human health. Karenia mikimotoi (K. mikimotoi) was a kind of common algae that caused red tides, and it could produce harmful toxins. Therefore, a composite photocatalyst MoS2@ZIF-67/TiO2 (MZ/T) for the inactivation of K. mikimotoi was synthesized by a simple and easy-to-operate hydrothermal synthesis method. The MoS2@ZIF-67 nanoflowers were attached by the grainy TiO2. The composite photocatalyst MZ/T showed excellent photocatalytic performance, and the inactivation efficiency of MZ/T was up to 97.2 % in 4 h and 99.45 % in 12 h. The composite photocatalyst MZ/T could inactivate algal cells by destroying cell membrane structure, reducing chlorophyll content, soluble protein content. This study would provide a novel photocatalyst for water treatment of HABs.
引用
收藏
页数:12
相关论文
共 50 条
  • [11] TiO2, MoS2, and TiO2/MoS2 Heterostructures for Use in Organic Dyes Degradation
    Wang, Congcong
    Zhan, Yi
    Wang, Zhiyong
    CHEMISTRYSELECT, 2018, 3 (06): : 1713 - 1718
  • [12] Fabrication of TiO2 thick film for photocatalyst from commercial TiO2 powder
    Asteti, S. Fuji
    Syarif, D. Gustaman
    NEUTRON AND X-RAY SCATTERING IN MATERIALS SCIENCE AND BIOLOGY, 2008, 989 : 143 - +
  • [13] Characteristics of CO Removal Process Using TiO2 Photocatalyst
    Kim, Jin-Kil
    Lee, Sang-Moon
    Hong, Sung-Chang
    Lee, Eui-Dong
    Kang, Yong
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2013, 51 (01): : 116 - 120
  • [14] TiO2 thin film photocatalyst
    Yu, JG
    RARE METALS, 2004, 23 (04) : 289 - 295
  • [15] MODIFICATION OF PIGMENT TIO2
    POCHEKOVSKII, RA
    LENEV, LM
    ANTIPOV, IV
    GOFMAN, LM
    INORGANIC MATERIALS, 1977, 13 (04) : 548 - 550
  • [16] TiO2 photocatalyst for environmental purification
    Masaki, Yasuhiro
    Masuda, Seiichi
    Ishida, Kazumi
    Sumitomo Metals, 1999, 50 (04): : 26 - 32
  • [17] TiO2 thin film photocatalyst
    YU JiaguoState Key Laboratory of Advanced Technology for Materials Synthesis and Processing
    RareMetals, 2004, (04) : 289 - 295
  • [18] Origin of Cycle Performance in the Ag2O/TiO2 Heterostructure Photocatalyst
    Chen, Yuang
    Lin, Lina
    Xu, Wangqiong
    Liu, Chao
    Yu, Chengzhong
    Cheng, Yan
    Qi, Ruijuan
    Huang, Rong
    LANGMUIR, 2023, 39 (42) : 14904 - 14911
  • [19] In situ modification of cobalt on MXene/TiO2 as composite photocatalyst for efficient nitrogen fixation
    Gao, Wanguo
    Li, Xiaoman
    Luo, Shijian
    Luo, Zhenglong
    Zhang, Xu
    Huang, Rong
    Luo, Min
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2021, 585 : 20 - 29
  • [20] CuO/TiO2 nanocomposite photocatalyst for efficient MO degradation
    A'srai, A. I. M.
    Razali, M. H.
    Amin, K. A. M.
    Osman, U. M.
    DIGEST JOURNAL OF NANOMATERIALS AND BIOSTRUCTURES, 2023, 18 (03) : 1105 - 1124