607
Views
33
CrossRef citations to date
0
Altmetric
Original Articles

Ofloxacin Adsorption on Chitosan/Biochar Composite: Kinetics, Isotherms, and Effects of Solution Chemistry

, , &
Pages 287-297 | Received 01 Dec 2017, Accepted 07 Apr 2018, Published online: 03 May 2018

References

  • Y. Zhang, S. A. Boyd, B. J. Teppen, J. M. Tiedje, and H. Li. “Organic acids enhance bioavailability of tetracycline in water to Escherichia coli for uptake and expression of antibiotic resistance,” Water research 65, (2014): 98–106.
  • Y. Picó and V. Andreu. “Fluoroquinolones in soil—risks and challenges,” Analytical and Bioanalytical Chemistry 387, (2007): 1287–99.
  • Z. He, S. Zang, Y. Liu, Y. He, and H. Lei. “A multi-walled carbon nanotubes-poly (L-lysine) modified enantioselective immunosensor for ofloxacin by using multi-enzyme-labeled gold nanoflower as signal enhancer,” Biosensors and Bioelectronics 73, (2015): 85–92.
  • M. Klavarioti, D. Mantzavinos, and D. Kassinos. “Removal of residual pharmaceuticals from aqueous systems by advanced oxidation processes,” Environment International 35, (2009): 402–17.
  • Q. Kong, X. He, L. Shu, and M. Miao. “Ofloxacin adsorption by activated carbon derived from luffa sponge: Kinetic, isotherm, and thermodynamic analyses,” Process Safety and Environmental Protection 112, (2017): 254–64.
  • Amorim, C. L., I. S. Moreira, A. S. Maia, M. E. Tiritan, and P. M. L. Castro. “Biodegradation of ofloxacin, norfloxacin, and ciprofloxacin as single and mixed substrates by Labrysportucalensis F11,” Applied Microbiology and Biotechnology 98, (2014): 3181–90.
  • M. Kaur, S. K. Mehta, and S. K. Kansal. “Visible light driven photocatalytic degradation of ofloxacin and malachite green dye using cadmium sulphide nanoparticles,” Journal of Environmental Chemical Engineering (2017). doi:10.1016/j.jece.2017.04.006.
  • M. Li, Y. Liu, G. Zeng, S. Liu, X. Hu, D. Shu, L. Jiang, X. Tan, X. Cai, and Z. Yan. “Tetracycline absorbed onto nitrilotriacetic acid-functionalized magnetic graphene oxide: Influencing factors and uptake mechanism,” Journal of Colloid and Interface Science 485, (2017): 269–79.
  • Z. Dai, J. Meng, N. Muhammad, X. Liu, H. Wang, Y. He, P. C. Brookes, and J. Xu. “The potential feasibility for soil improvement, based on the properties of biocharspyrolyzed from different feedstocks,” Journal of Soils and Sediments 13, (2013): 989–1000.
  • Roberts, K. G., B. A. Gloy, S. Joseph, N. R. Scott, and J. Lehmann. “Life cycle assessment of biochar systems: Estimating the energetic, economic, and climate change potential,” Environmental Science & Technology 44, (2009): 827–33.
  • P. Peng, Y. H. Lang, and X. M. Wang. “Adsorption behavior and mechanism of pentachlorophenol on reed biochars: pH effect, pyrolysis temperature, hydrochloric acid treatment and isotherms,” Ecological Engineering 90, (2016): 225–33.
  • D. Mohan, A. Sarswat, Y. S. Ok, and C. U. P. Jr. “Organic and inorganic contaminants removal from water with biochar, a renewable, low cost and sustainable adsorbent–a critical review,” Bioresource Technology 160, (2014): 191–202.
  • A. A. Kadam and D. S. Lee. “Glutaraldehyde cross-linked magnetic chitosan nanocomposites: Reduction precipitation synthesis, characterization, and application for removal of hazardous textile dyes,” Bioresource Technology 193, (2015): 563–67.
  • A. Chen, C. Shang, J. Shao, Y. Lin, S. Luo, J. Zhang, H. Huang, M. Lei, and Q. Zeng. “Carbon disulfide-modified magnetic ion-imprinted chitosan-Fe (III): A novel adsorbent for simultaneous removal of tetracycline and cadmium,” Carbohydrate polymers 155, (2017): 19–27.
  • Oladoja, N. A., R. O. A. Adelagun, A. L. Ahmad, E. I. Unuabonah, and H. A. Bello. “Preparation of magnetic, macro-reticulated cross-linked chitosan for tetracycline removal from aquatic systems,” Colloids and Surfaces B: Biointerfaces 117, (2014): 51–59.
  • S. Jia, Z. Yang, W. Yang, T. Zhang, S. Zhang, X. Yang, Y. Dong, J. Wu, and Y. Wang. “Removal of Cu (II) and tetracycline using an aromatic rings-functionalized chitosan-based flocculant: Enhanced interaction between the flocculant and the antibiotic,” Chemical Engineering Journal 283, (2016): 495–503.
  • D. Huang, Z. Tang, Z. Peng, C. Lai, G. Zeng, C. Zhang, P. Xu, M. Cheng, J. Wan, and R. Wang. “Fabrication of water-compatible molecularly imprinted polymer based on β-cyclodextrin modified magnetic chitosan and its application for selective removal of bisphenol A from aqueous solution,” Journal of the Taiwan Institute of Chemical Engineers 77, (2017): 113–21.
  • A. Venault, L. Vachoud, C. Pochat, D. Bouyer, and C. Faur. “Elaboration of chitosan/activated carbon composites for the removal of organic micropollutants from waters,” Environmental Technology 29, (2008): 1285–96.
  • F. Wang, B. Yang, H. Wang, Q. Song, F. Tan, and Y. Cao. “Removal of ciprofloxacin from aqueous solution by a magnetic chitosan grafted graphene oxide composite,” Journal of Molecular Liquids 222, (2016): 188–94.
  • Tirtom, V. N., A. Dinçer, S. Becerik, T. Aydemir, and A. Çelik. “Comparative adsorption of Ni (II) and Cd (II) ions on epichlorohydrincrosslinked chitosan–clay composite beads in aqueous solution,” Chemical Engineering Journal 197, (2012): 379–386.
  • S. Liu, B. Huang, L. Chai, Y. Liu, G. Zeng, X. Wang, W. Zeng, M. Shang, J. Deng, and Z. Zhou. “Enhancement of As adsorption from aqueous solution by a magnetic chitosan/biochar composite,” RSC Advances 7, (2017): 10891–10900.
  • B. Huang, Y. Liu, B. Li, S. Liu, G. Zeng, Z. Zeng, X. Wang, Q. Ning, B. Zheng, and C. Yang. “Effect of Cu (II) ions on the enhancement of tetracycline adsorption by Fe3O4@SiO2-Chitosan/graphene oxide nanocomposite,” Carbohydrate Polymers 157, (2017): 576–85.
  • Q. Song, B. Yang, H. Wang, S. Xu, and Y. Cao. “Effective Removal of Copper (II) and Cadmium (II) by Adsorbent Prepared from Chitosan-modified Magnetic Biochar,” Journal of Residuals Science & Technology 13, (2016): 197–205.
  • T. Li, Y. Liu, Q. Peng, X. Hu, T. Liao, H. Wang, and M. Lu. “Removal of lead (II) from aqueous solution with ethylenediamine-modified yeast biomass coated with magnetic chitosan microparticles: Kinetic and equilibrium modeling,” Chemical Engineering Journal 214, (2013): 189–97.
  • A. Mohseni-Bandpi, B. Kakavandi, R. R. Kalantary, A. Azari, and A. Keramati. “Development of a novel magnetite–chitosan composite for the removal of fluoride from drinking water: Adsorption modeling and optimization,” Rsc Advances 5, (2015): 73279–89.
  • Fernandes, L. L., C. X. Resende, D. S. Tavares, G. A. Soares, L. O. Castro, and J. M. Granjeiro. “Cytocompatibility of chitosan and collagen-chitosan scaffolds for tissue engineering,” Polimeros 21, (2011): 1–6.
  • C. Shen, Y. Wang, J. Xu, and G. Luo. “Chitosan supported on porous glass beads as a new green adsorbent for heavy metal recovery,” Chemical Engineering Journal 229, (2013): 217–24.
  • K. Anupam, S. Dutta, C. Bhattacharjee, and S. Datta. “Adsorptive removal of chromium (VI) from aqueous solution over powdered activated carbon: Optimisation through response surface methodology,” Chemical Engineering Journal 173, (2011): 135–43.
  • A. Chen, G. Zeng, G. Chen, X. Hu, M. Yan, S. Guan, C. Shang, L. Lu, Z. Zou, and G. Xie. “Novel thiourea-modified magnetic ion-imprinted chitosan/TiO2 composite for simultaneous removal of cadmium and 2, 4-dichlorophenol,” Chemical Engineering Journal 191, (2012): 85–94.
  • H. Fu, X. Li, J. Wang, P. Lin, C. Chen, X. Zhang, and I. H. (Mel) Suffet. “Activated carbon adsorption of quinolone antibiotics in water: Performance, mechanism, and modeling,” Journal of Environmental Sciences 56, (2017): 145–52.
  • W. Yang, Y. Lu, F. Zheng, X. Xue, N. Li, and D. Liu. “Adsorption behavior and mechanisms of norfloxacin onto porous resins and carbon nanotube,” Chemical Engineering Journal 179, (2012): 112–118.
  • Y. Wang, J. Lu, J. Wu, Q. Liu, H. Zhang, and S. Jin. “Adsorptive removal of fluoroquinolone antibiotics using bamboo biochar,” Sustainability 7, (2015): 12947–12957.
  • X. Guo, H. Dong, C. Yang, Q. Zhang, C. Liao, F. Zha, and L. Gao. “Application of goethite modified biochar for tylosin removal from aqueous solution,” Colloids and Surfaces A: Physicochemical and Engineering Aspects 502, (2016): 81–88.
  • J. Liu, Q. Zhou, J. Chen, L. Zhang, and N. Chang. “Phosphate adsorption on hydroxyl–iron–lanthanum doped activated carbon fiber,” Chemical Engineering Journal 215, (2013): 859–67.
  • S. Pandey and S. B. Mishra. “Organic–inorganic hybrid of chitosan/organoclaybionanocomposites for hexavalent chromium uptake,” Journal of Colloid and Interface Science 361, (2011): 509–20.
  • Y. Li, Z. Wang, X. Xie, J. Zhu, R. Li, and T. Qin. “Removal of Norfloxacin from aqueous solution by clay-biochar composite prepared from potato stem and natural attapulgite,” Colloids and Surfaces A: Physicochemical and Engineering Aspects 514, (2017): 126–36.
  • S. Yi, B. Gao, Y. Sun, J. Wu, X. Shi, B. Wu, and X. Hu. “Removal of levofloxacin from aqueous solution using rice-husk and wood-chip biochars,” Chemosphere 150, (2016): 694–701.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.