Cellulose/carbon Composites and their Applications in Water Treatment - a Review

被引:135
作者
Dong, Yu-Dan [1 ,3 ]
Zhang, Heng [1 ,3 ]
Zhong, Gan-Ji [2 ]
Yao, Gang [3 ,4 ]
Lai, Bo [1 ,3 ]
机构
[1] Sichuan Univ, Coll Architecture & Environm, State Key Lab Hydraul & Mt River Engn, Chengdu 610065, Peoples R China
[2] Sichuan Univ, State Key Lab Polymer Mat Engn, Coll Polymer Sci & Engn, Chengdu 610065, Peoples R China
[3] Sichuan Univ, Sino German Ctr Water & Hlth Res, Chengdu 610065, Peoples R China
[4] Rhein Westfal TH Aachen, Inst Environm Engn, Aachen, Germany
基金
中国国家自然科学基金;
关键词
Cellulose; Composites; Graphene; Carbon nanotubes; Water treatment; WALLED CARBON NANOTUBES; MICROBIAL FUEL-CELLS; GRAPHENE OXIDE; ACTIVATED CARBON; HEAVY-METALS; WASTE-WATER; PHOTOCATALYTIC DEGRADATION; CARBOXYMETHYL CELLULOSE; ANTIFOULING PERFORMANCE; ADSORPTION BEHAVIOR;
D O I
10.1016/j.cej.2020.126980
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Cellulose, as the most abundant natural polymer material on the earth, has attracted worldwide attention due to its characteristics of reproducibility, universality, low cost, biocompatibility and biodegradability. Cellulose based materials have potential value in supercapacitors, environment and biomedicine. The combination of cellulose and carbon materials can further adjust the microstructure of the composite such as porosity (76-98.8%) and specific surface area (5.07-47.3 m(2)/g), and enhance the properties of the composite such as the adsorption rate (47-100%) and the degradation rate of pollutants (60-100%), the Young's modulus (1.14-16.6 GPa) and the tensile strength (23.1-277.5 MPa). Besides, composites have the advantages of high electronic transmission efficiency and good reusability, which broaden their applications in water treatment. This review summarizes the molding methods of multi-dimensional cellulose materials, as well as the development status, preparation and modification methods of composites formed by carbon materials such as graphene, carbon nanotubes, activated carbon and nanodiamonds with cellulose, analyzes the research progress and existing problems of the composites in water treatment fields such as adsorption, catalysis, membrane separation and microbial fuel cells, and finally, we make some perspectives for the future researches and applications.
引用
收藏
页数:24
相关论文
共 169 条
[1]   Utilisation of natural cellulose fibres in wastewater treatment [J].
Abd Rahman, Nur Syazwani ;
Yhaya, Mohd Firdaus ;
Azahari, Baharin ;
Ismail, Wan Ruslan .
CELLULOSE, 2018, 25 (09) :4887-4903
[2]   An effective removal of organic dyes using surface functionalized cellulose acetate/graphene oxide composite nanofibers [J].
Aboamera, Nada M. ;
Mohamed, Alaa ;
Salama, Ahmed ;
Osman, T. A. ;
Khattab, A. .
CELLULOSE, 2018, 25 (07) :4155-4166
[3]   N/S doped highly porous magnetic carbon aerogel derived from sugarcane bagasse cellulose for the removal of bisphenol-A [J].
Ahamad, Tansir ;
Naushad, Mu ;
Ruksana ;
Alhabarah, Ameen N. ;
Alshehri, Saad M. .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2019, 132 :1031-1038
[4]   Rice Husk and Its Ash as Low-Cost Adsorbents in Water and Wastewater Treatment [J].
Ahmaruzzaman, M. ;
Gupta, Vinod K. .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2011, 50 (24) :13589-13613
[5]   Advances in water treatment by adsorption technology [J].
Ali, Imran ;
Gupta, V. K. .
NATURE PROTOCOLS, 2006, 1 (06) :2661-2667
[6]   Removal of Copper(II) and Zinc(II) Ions in Water on a Newly Synthesized Polyhydroquinone/Graphene Nanocomposite Material: Kinetics, Thermodynamics and Mechanism [J].
Ali, Imran ;
Burakov, Alexandr E. ;
Melezhik, Alexandr, V ;
Babkin, Alexandr, V ;
Burakova, Irina, V ;
Neskomornaya, Elena A. ;
Galunin, Evgeny, V ;
Tkachev, Alexey G. ;
Kuznetsov, Denis, V .
CHEMISTRYSELECT, 2019, 4 (43) :12708-12718
[7]   High-Speed and High-Capacity Removal of Methyl Orange and Malachite Green in Water Using Newly Developed Mesoporous Carbon: Kinetic and Isotherm Studies [J].
Ali, Imran ;
Burakova, Irina ;
Galunin, Evgeny ;
Burakov, Alexandr ;
Mkrtchyan, Elina ;
Melezhik, Alexandr ;
Kurnosov, Dmitry ;
Tkachev, Alexey ;
Grachev, Vladimir .
ACS OMEGA, 2019, 4 (21) :19293-19306
[8]   Facile and eco-friendly synthesis of functionalized iron nanoparticles for cyanazine removal in water [J].
Ali, Imran ;
Alharbi, Omar M. L. ;
Alothman, Zeid A. ;
Alwarthan, Abdulrahman .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2018, 171 :606-613
[9]   Rapid removal of organic micropollutants from water by a porous β-cyclodextrin polymer [J].
Alsbaiee, Alaaeddin ;
Smith, Brian J. ;
Xiao, Leilei ;
Ling, Yuhan ;
Helbling, Damian E. ;
Dichtel, William R. .
NATURE, 2016, 529 (7585) :190-U146
[10]   Removal of basic dye Auramine-O by ZnS:Cu nanoparticles loaded on activated carbon: optimization of parameters using response surface methodology with central composite design [J].
Asfaram, Arash ;
Ghaedi, Mehrorang ;
Agarwal, Shilpi ;
Tyagi, Inderjeet ;
Gupta, Vinod Kumar .
RSC ADVANCES, 2015, 5 (24) :18438-18450