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2019 | 24 | 36 - 48

Article title

THE INFLUENCE OF CHITOSAN CONTENT IN HYDROGEL BEADS ON THE SORPTION EFFECTIVENESS OF REACTIVE BLACK 5 DYE

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EN

Abstracts

EN
The influence of chitosan content in hydrogel beads on the sorption effectiveness of Reactive Black 5 (RB5) dye from aqueous solutions is presented in the following work. The dry mass of chitosan in the tested hydrogel chitosan sorbents was from 2 to 10%. The influence of pH (4–11) on the sorption effectiveness of RB5 on chitosan hydrogels as well as the sorption capacity of the tested chitosan sorbents in relation to RB5 were studied. The optimal pH of RB5 sorption was determined along with the pH at the potential at zero point charge (pHPZC) of the tested sorbents. The maximum sorption capacity of the tested sorbents, depending on the amount of chitosan dry mass in the hydrogel beads, was determined. The obtained data was fit to Langmuir 1, Langmuir 2, and Freundlich models.

Keywords

Contributors

  • Department of Environmental Engineering, University of Warmia and Mazury in Olsztyn
  • Department of Environmental Engineering, University of Warmia and Mazury in Olsztyn
  • Faculty of Chemical Engineering and Environmental Protection, Gheorghe Asachi Technical University of Iași
  • Faculty of Chemical Engineering and Environmental Protection, Gheorghe Asachi Technical University of Iași

References

  • [1] Genc A, Oguz A, (2010) Sorption of acid dyes from aqueous solution by using non-ground ash and slag. Desalination. 264: 78-83. doi.org/10.1016/j.desal.2010.07.007
  • [2] Rai HS, Bhattacharyya MS, Singh J, Bansal TK, Vats P, Banerje UC; (2005) Removal of Dyes from the Effluent of Textile and Dyestuff Manufacturing Industry. Crit. Rev. Env. Sci. Tec. 35, 219-238. doi.org/10.1080/10643380590917932
  • [3] Revanker MS, Lele SS; (2007) Synthetic dyes decolorization by white rot fungus, Ganoderma sp. Bioresource Technology 98(4), 775-780. doi.org/10.1016/j.biortech.2006.03.020
  • [4] Machado F M, Bergmann C P, Fernandes T H, Lima E C, Royer B, Calvete T, Fagan S B; (2011) Adsorption of Reactive Red M-2BE dye from water solutions by multi-walled carbon nanotubes and activated carbon. Journal of hazardous materials, 192(3), 1122-1131. doi.org/10.1016/j.jhazmat.2011.06.020
  • [5] Wang L, Li J; (2013) Adsorption of CI Reactive Red 228 dye from aqueous solution by modified cellulose from flax shive: Kinetics, equilibrium, and thermodynamics. Industrial Crops and Products 42, 153-158. doi.org/10.1016/j.indcrop.2012.05.031
  • [6] Robinson T, McMullan G, Marchant R, Nigam P; (2001) Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative. Bioresource Technology 77, 247-255; doi.org/10.1016/S0960-8524(00)00080-8
  • [7] Husain Q; (2006) Potential applications of the oxidoreductive enzymes in the decolorization and detoxification of textile and other synthetic dyes from polluted water: a review. Crit. Rev. Biotechnol. 26: 201–221. doi.org/10.1080 /07388550600969936
  • [8] Gupta VK, Suhas AB; (2009) Application of low-cost adsorbents for dye removal – A review. J. Environ. Manage. 90, 2312-2342. doi.org/10.1016/j.jenvman. 2008.11.017
  • [9] Word Dyes & Organic Pigments – Industry Study with Forecasts for 2013 & 2018, Freedonia Group INC, 2009 Cleveland, USA.
  • [10] Tan KB, Vakili M, Horri BA, Poh P E, Abdullah AZ, Salamatinia B; (2015).Adsorption of dyes by nanomaterials: Recent developments and adsorptionmechanisms. Separation and Purification Technology, 150, 229–242. doi.org/10.1016/j.seppur.2015.07.009
  • [11] Jain AK, Gupta VK, Suhas AB; (2003) Utilization of industrial waste products as adsorbents for the removal of dyes. J. Hazard. Mater. 101: 31-42; Ho Y.S., McKay G. Sorption of dyes and copper ions onto biosorbents. Process. Biochem. 38,1047-1061. doi.org/10.1016/S0304-3894(03)00146-8
  • [12] Ho YS, McKay G; (2003). Sorption of dyes and copper ions onto biosorbents. Process. Biochem. 38:1047-106 doi.org/10.1016/S0032-9592(02)00239-X
  • [13] Ali I, Asim M, Khan TA; (2012) Low cost adsorbents for the removal oforganic pollutants from wastewater. Journal of Environmental Management, 113, 170–183. doi.org/10.1016/j.jenvman.2012.08.028
  • [14] Vakili M, Rafatullah M, Salamatinia B, Abdullah A Z, Ibrahim M H, Tan K B; (2014) Application of chitosan and its derivatives as adsorbents for dyeremoval from water and wastewater: A review. Carbohydrate Polymers, 113,115–130. doi.org/10.1016/j.carbpol.2014.07.007
  • [15] Je J, Kim S; (2006) Antimicrobial action of novel chitin derivative. Biochimica et Biophysica Acta 1760, 104 – 109; DOI: 10.1016/j.bbagen.2005.09.012].
  • [16] Akkaya G, Uzun I, Güzel F, (2007) Kinetics of the adsorption of Reactive dyes by chitin. Dyes and Pigments 73: 168-177 doi.org/10.1016/j.dyepig.2005.11.005
  • [17] Dolphen R, Sakkayawong N, Thiravetyan P, Nakbanpate W; (2007) Adsorption of Reactive Red 141 from waste water onto modified chitin. Journal of Hazardous Materials 145, 250-255 doi.org/10.1016/j.jhazmat.2006.11.026
  • [18] Begum HA, Mondal AK, Muslim T, (2012) Adsorptive Removal of Reactive Black 5 from Aqueos Solution Rusing Chitin prepared from Shrimp Shells, Bangladesh Pharmaceutical Journal 15 (2), 145-152 doi.org/10.3329/bpj.v15i2.12580
  • [19] Annadurai G, Ling LY, Lee JF; (2008). Adsorption of reactive dye from an aqueous solution by chitosan: isotherm, kinetic and thermodynamic analysis. Journal of Hazardous Materials, 152, 337-346 doi.org/10.1016/ j.jhazmat.2007.07.002
  • [20] Dolphen R, Sakkayawong N, Thiravetyan P, Nakbanpate W, (2007) Adsorption of Reactive Red 141 from waste water onto modified chitin. Journal of Hazardous Materials 145: 250-255 doi.org/10.1016/j.jhazmat.2006.11.026
  • [21] Begum HA, Mondal AK, Muslim T, (2012) Adsorptive Removal of Reactive Black 5 from Aqueos Solution Rusing Chitin prepared from Shrimp Shells, Bangladesh Pharmaceutical Journal 15 (2): 145-152 doi.org/10.3329/bpj.v15i2.12580
  • [22] Jóźwiak T, Filipkowska U, Szymczyk P, Mielcarek A; (2016) Sorption of nutrients (orthophosphate, nitrate III and V) in an equimolar mixture of P–PO4, N–NO2 and N–NO3 using chitosan. Arabian Journal of Chemistry. https://doi.org/10.1016/ j.arabjc.2016.04.008.
  • [23] Jóźwiak T, Filipkowska U, Szymczyk P, Kuczajowska-Zadrożna M, Mielcarek A, Zyśk M; (2016) The influence of chitosan deacetylation degree on reactive black 5 sorption efficiency from aqueous solutions. Progress on Chemistry and Application of Chitin and its Derivatives, 21, 83-92. DOI: 10.15259/PCACD.21.08
  • [24] Vakili M, Rafatullah M, Ibrahim MH Abdullah AZ, Salamatinia B, Gholami Z; (2016) Preparation of Chitosan Beads for the Adsorption of Reactive Blue 4 from Aqueous Solutions, Iranica Journal of Energy and Environment 7 (2): 124-128 doi: 10.5829/idosi.ijee.2016.07.02.06

Document Type

article

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YADDA identifier

bwmeta1.element.psjd-699d394a-410b-43b0-89c0-79b332fd4867
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