Preparation of magnetic activated carbon-chitosan nanocomposite for crystal violet adsorption

被引:19
作者
Cavusoglu, Ferda Civan [1 ]
Akan, Seher [1 ]
Ari, Ezgi Aleyna [1 ]
Cetinkaya, Ezgi [1 ]
Colak, Elif [1 ]
Dastan, Gamze Nur [1 ]
Deniz, Semina [1 ]
Erdem, Damla [1 ]
Koksal, Melda [1 ]
Korkmaz, Sevgi [1 ]
Onsekiz, Nursena [1 ]
Orucoglu, Betul [1 ]
Ozkaya, Didem [1 ]
Uslu, Hamdi Bugra [1 ]
Unal, Caglanur [1 ]
Yildiz, Ogulcan [1 ]
Ozkara-Aydinoglu, Seyma [1 ]
Bayazit, Sahika Sena [1 ]
机构
[1] Beykent Univ, Engn & Architecture Fac, Chem Engn Dept, TR-34396 Istanbul, Turkey
关键词
Crystal Violet; Adsorption; Activated Carbon; Magnetite; Chitosan; EFFICIENT REMOVAL; DYE; NANOPARTICLES; KINETICS; COMPOSITES; ADSORBENT; HYDROGEL; MODELS; LEAD;
D O I
10.1007/s11814-019-0377-9
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Magnetic, cheap and versatile adsorbents were developed for crystal violet (CV) adsorption in this study. These adsorbents are magnetic activated carbon (AC-Fe3O4) and chitosan grafted magnetic activated carbon (Chitosan-AC-Fe3O4). Fe3O4 and chitosan were also used for adsorption. X-ray diffraction (XRD), scanning electron microscopy (SEM), vibrating sample magnetometer (VSM), zeta potential analysis and Fourier transform infrared spectroscopy (FTIR) methods were used for characterization of adsorbents. Adsorption parameters for CV were investigated. Raw chitosan and Fe3O4 were also used for CV adsorption to compare the results of composites. The chosen adsorption parameters are amount of adsorbent, contact time, initial CV concentration, and temperature. The equilibrium period was observed to be very short for chitosan and Fe3O4 nanoparticles. The adsorption efficiencies of these adsorbents are very low. AC-Fe3O4 and AC-Fe3O4-Chitosan nanoparticles reached equilibrium at 80 min. The all adsorbent-CV systems followed pseudo second-order kinetic model. AC-Fe3O4 and AC-Fe3O4-Chitosan composites suited non-linear Freundlich isotherm for all temperatures (298, 308 and 318 K). Regeneration of adsorbents was also investigated. 1 M of acetic acid and 0.1 M of NaOH solutions were tested. Acetic acid solution desorbed CV better than NaOH solution at 6 hours.
引用
收藏
页码:1915 / 1921
页数:7
相关论文
共 30 条
  • [1] Bordbar A. K., 2014, BIOTECHNOL RES INT, V2014, P6, DOI DOI 10.1155/2014/705068
  • [2] Adsorption of Crystal Violet from aqueous solution onto NaOH-modified rice husk
    Chakraborty, Sagnik
    Chowdhury, Shamik
    Das Saha, Papita
    [J]. CARBOHYDRATE POLYMERS, 2011, 86 (04) : 1533 - 1541
  • [3] Efficient removal of antibiotics by a novel magnetic adsorbent: Magnetic activated carbon/chitosan (MACC) nanocomposite
    Danahoglu, Selen Tugba
    Bayazit, Sahika Sena
    Kuyumcu, Ozge Kerkez
    Salam, Mohamed Abdel
    [J]. JOURNAL OF MOLECULAR LIQUIDS, 2017, 240 : 589 - 596
  • [4] Pentenoic Acid-Stabilized Magnetic Nanoparticles for Nanomedicine Applications
    Darwish, Mohamed S. A.
    Stibor, Ivan
    [J]. JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2016, 37 (12) : 1793 - 1798
  • [5] Removal of crystal violet dye by adsorption using bentonite - alginate composite
    Fabryanty, Rizka
    Valencia, Chrissila
    Soetaredjo, Felycia Edi
    Putro, Jindrayani Nyoo
    Santoso, Shella Permatasari
    Kurniawan, Alfin
    Ju, Yi-Hsu
    Ismadji, Suryadi
    [J]. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2017, 5 (06): : 5677 - 5687
  • [6] Insights into the modeling of adsorption isotherm systems
    Foo, K. Y.
    Hameed, B. H.
    [J]. CHEMICAL ENGINEERING JOURNAL, 2010, 156 (01) : 2 - 10
  • [7] Freundlich H, 1906, Z PHYS CHEM-STOCH VE, V57, P385
  • [8] Pseudo-second order model for sorption processes
    Ho, YS
    McKay, G
    [J]. PROCESS BIOCHEMISTRY, 1999, 34 (05) : 451 - 465
  • [9] Hossienzadeh K, 2019, KOREAN J CHEM ENG, V36, P1360
  • [10] High saturation magnetization Fe3O4 nanoparticles prepared by one-step reduction method in autoclave
    Hu, Ping
    Kang, Lu
    Chang, Tian
    Yang, Fan
    Wang, Hua
    Zhang, Yang
    Yang, Jun
    Wang, Kuai-she
    Du, Jinjing
    Yang, Zhanlin
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2017, 728 : 88 - 92