Low-frequency mechanical energy in the environment for energy production and piezocatalytic degradation of organic pollutants in water: A review

被引:28
作者
Chen, Xiaxia [1 ]
Wang, Jingxue [1 ]
Wang, Zichen [1 ]
Xu, Hongwei [1 ]
Liu, Chao [1 ]
Huo, Bingjie [1 ]
Meng, Fanqing [1 ]
Wang, Yinglong [1 ]
Sun, Chaoyue [2 ]
机构
[1] Qingdao Univ Sci & Technol, Coll Chem Engn, Qingdao 266042, Peoples R China
[2] Shandong Vocat Coll Sci & Technol, Dept Biol & Chem Engn, Weifang 261021, Peoples R China
基金
中国国家自然科学基金;
关键词
Piezocatalysis; Organic pollutant; Hydromechanical energy; Nanogenerator; Water treatment; HIGH EFFICIENT DEGRADATION; WASTE-WATER; PIEZOELECTRIC NANOGENERATORS; REMOVAL; PHOTOCATALYSIS; TOXICITY; ELECTRO; MOS2; GENERATION; NANOFIBERS;
D O I
10.1016/j.jwpe.2023.104312
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Piezocatalysis can effectively use mechanical energy (water flow, noise, vibration, etc.) in the environment to achieve the degradation of organic pollutants, has the advantages of independent light energy, can be carried out anytime and anywhere, and has great potential for large-scale applications. Therefore, the piezoelectric effect, the main types of piezoelectric materials and the two basic principles of piezocatalysis are introduced in this review. Then, the driving force of piezocatalysis is summarized, and the advantages, research status and development direction of hydromechanical energy in piezocatalysis are introduced. Low-frequency mechanical energy in the environment, such as wind, tide and river flow, has the advantages of strong sustainability, wide distribution and high renewability. These characteristics make low-frequency mechanical energy a sustainable form of energy, which has been deeply studied in recent years in the fields of piezoelectric nanogenerators, sensors and wastewater treatment. Therefore, given the above advantages of low-frequency mechanical energy, this review summarizes the application of piezoelectric materials in energy production and the research progress of hydromechanical energy in wastewater treatment, which provides theoretical and methodological guidance for more efficient use of environmental low-frequency mechanical energy in the future.
引用
收藏
页数:18
相关论文
共 166 条
[1]   Metal-organic frameworks as adsorbents for sequestering organic pollutants from wastewater [J].
Adegoke, Kayode Adesina ;
Agboola, Oluwatobi Samuel ;
Ogunmodede, John ;
Araoye, Abimbola Oluyomi ;
Bello, Olugbenga Solomon .
MATERIALS CHEMISTRY AND PHYSICS, 2020, 253
[2]   Visible light-conducting polymer nanocomposites as efficient photocatalysts for the treatment of organic pollutants in wastewater [J].
Ahmad, Nafees ;
Anae, Jerry ;
Khan, Mohammad Zain ;
Sabir, Suhail ;
Yang, Xiao Jin ;
Thakur, Vijay Kumar ;
Campo, Pablo ;
Coulon, Frederic .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2021, 295
[3]   Photocatalytic microbial removal and degradation of organic contaminants of water using PES fibers [J].
Al-Ghafri, Buthayna ;
Bora, Tanujjal ;
Sathe, Priyanka ;
Dobrestov, Sergey ;
Al-Abri, Mohammed .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 233 :136-142
[4]   Piezoelectric nanogenerator based on ZnO nanorods [J].
Al-Ruqeishi, Majid S. ;
Mohiuddin, Tariq ;
Al-Habsi, Butheina ;
Al-Ruqeishi, Fatma ;
Al-Fahdi, Ahmed ;
Al-Khusaibi, Ahmed .
ARABIAN JOURNAL OF CHEMISTRY, 2019, 12 (08) :5173-5179
[5]   Electrochemical oxidation of organic pollutants for wastewater treatment [J].
Alberto Martinez-Huitle, Carlos ;
Panizza, Marco .
CURRENT OPINION IN ELECTROCHEMISTRY, 2018, 11 :62-71
[6]   Efficient purification of wastewater by applying mechanical force and BaCO3/TiO2 and BaTiO3/TiO2 piezocatalysts [J].
Amiri, Omid ;
Ahmed, Haval Aziz ;
Abdan, Abdulla Ahmed ;
Mahmood, Peshawa H. ;
Salavati-Niasari, Masoud .
RSC ADVANCES, 2021, 11 (59) :37138-37149
[7]   A comprehensive review on current technologies for removal of endocrine disrupting chemicals from wastewaters [J].
Azizi, Dariush ;
Arif, Ayman ;
Blair, David ;
Dionne, Justine ;
Filion, Yves ;
Ouarda, Yassine ;
Pazmino, Ana Gisell ;
Pulicharla, Rama ;
Rilstone, Victoria ;
Tiwari, Bhagyashree ;
Vignale, Leah ;
Brar, Satinder Kaur ;
Champagne, Pascale ;
Drogui, Patrick ;
Langlois, Valerie S. ;
Blais, Jean-Francois .
ENVIRONMENTAL RESEARCH, 2022, 207
[8]   Re-usable self-poled piezoelectric/piezocatalytic films with exceptional energy harvesting and water remediation capability [J].
Bagchi, Biswajoy ;
Hoque, Nur Amin ;
Janowicz, Norbert ;
Das, Sukhen ;
Tiwari, Manish K. .
NANO ENERGY, 2020, 78
[9]   Mechanical energy harvesting and self-powered electronic applications of textile-based piezoelectric nanogenerators: A systematic review [J].
Bairagi, Satyaranjan ;
Shahid-ul-Islam ;
Shahadat, Mohammad ;
Mulvihill, Daniel M. ;
Ali, Wazed .
NANO ENERGY, 2023, 111
[10]   Synthesis and characterization of the removal of organic pollutants in effluents [J].
Bakayoko, Moussa ;
Kalakodio, Loissi ;
Kalagodio, Adiara ;
Abo, Bodjui Olivier ;
Muhoza, Jean Pierre ;
Ismaila, El Moctar .
REVIEWS ON ENVIRONMENTAL HEALTH, 2018, 33 (02) :135-146