Details

Title

Waste Plant Material as a Potential Adsorbent of a Selected Azo Dye

Journal title

Chemical and Process Engineering

Yearbook

2017

Volume

vol. 38

Issue

No 2

Authors

Keywords

sunflower husk ; Direct Orange 26 ; adsorption equilibrium ; adsorption kinetics ; adsorption dynamics

Divisions of PAS

Nauki Techniczne

Coverage

283-294

Publisher

Polish Academy of Sciences Committee of Chemical and Process Engineering

Date

2017.06.30

Type

Artykuły / Articles

Identifier

DOI: 10.1515/cpe-2017-0021 ; ISSN 2300-1925 (Chemical and Process Engineering)

Source

Chemical and Process Engineering; 2017; vol. 38; No 2; 283-294

References

Volesky (2007), Biosorption and me, Res, 41, doi.org/10.1016/j.watres.2007.05.062 ; Tomczak (2014), Sorption equilibrium of azo dyes Direct Orange and Reactive Blue onto a cheap plant sorbent, Ecol Chem Eng, 26, 21, doi.org/10.2478/eces-2014-0032 ; Priya (2014), Removal of colour from crystal violet dye using low cost adsorbents, Int J Chem Tech Res, 6, 4346. ; Lambrecht (2015), Adsorption of the dye reactive blue g in retorted shale, Chem Eng, 269, doi.org/10.1590/0104-6632.20150321s00001715 ; Kotrba (2011), ) Microbial biosorption of metals Springer Media, Science Business, doi.org/10.1007/978-94-007-0443-5 ; Nassar (1991), Comparative cost of colour removal from textile effluents using natural adsorbents, Chem Technol Biotechnol, 50, 257, doi.org/10.1002/jctb.280500210 ; Yasmen (2010), Utilization of Thomas model to predict the breakthrough curves for adsorption and ion exchange, Eng, 16, 6206. ; Mustafa (2010), Utilization of Thomas model to predict the breakthrough curves for adsorption and ion exchange, Eng, 4, 6206. ; Oguntimein (2014), The potential use of acid treated dried sunflower seed hull as a biosorbent for the removal of textile effluent dye from aqueous solution, Res Inventy Int J Eng Sci, 4, 21. ; Sud (2008), Agricultural waste material as potential adsorbent for sequestering heavy metal ions from aqueous solutions - A review, Biores Technol, 99, doi.org/10.1016/j.biortech.2007.11.064 ; Sateu (2011), Agricultural waste corn cob as a sorbent for removing reactive dye Orange Equilibrium and kinetic study, Cellulose Chem Technol, 16, 413. ; Allen (2003), Decolourisation of water / wastewater using adsorption, Univ Chem Technol Metallurgy, 175. ; Tomczak (2013), Water purification from heavy metal ions in a packed column, Sci Technol, 48, doi.org/10.1080/01496395.2013.805224 ; Borges (2016), A method for dye extraction using an aqueous two - phase system : Effect of co - occurrence of contaminants in textile industry wastewater, Environ Manage, 183, doi.org/10.1016/j.jenvman.2016.08.056 ; Sočo (2016), Comparison of adsorption of Cd ( II ) and Pb ( II ) ions on pure and chemically modified fly ashes, Chem Proc Eng, 37, 215, doi.org/10.1515/cpe-2016-0018 ; Xu (2013), guo Bing - cai Mathematically modeling fixed - bed adsorption in aqueous systems, Appl Phys Eng, 14, 155, doi.org/10.1631/jzus.A1300029 ; Ho (2004), Pseudo - isotherms for the sorption of cadmium ion onto tree fern, Proc Biochem, 39, doi.org/10.1016/S0032-9592(03)00184-5 ; Crini (2006), Non - conventional low - cost adsorbents for dye removal : a review, Bioresour Technol, 1061, doi.org/10.1016/j.biortech.2005.05.001 ; Oguntimein (2016), Textile dye removal using dried sun flower seed hull a new low cost biosorbent : equilibrium , kinetics and thermodynamic studies, Adv Res Text Eng, 1, 1008. ; Mahendra (2015), Application of the Thomas model for cesium ion exchange on AMP - PAN In : Shirish Sonawan Pyde Setty ) Chemical and Bioprocess Trends and Developments CRC press Taylor and Francis Group, Engineering Chapter, 18, doi.org/10.13140/2.1.3833.8561 ; Tomczak (2015), Adsorption dynamics studies of azo dyes removal by biosorbent, Wat Treat, 2669, doi.org/10.1080/19443994.2014.939490 ; Ghribi (2011), Modeling of fixed bed adsorption : Application to the adsorption of an organic dye, Textile, 1, doi.org/10.3923/ajt.2011.161.171 ; Soldatkina (2009), Adsorption of cationic dyes from aqueous solutions on sunflower husk, Chem Technol, 31, doi.org/10.3103/S1063455X09040055 ; Avdicevic (2017), Effect of operating conditions on the performances of multichannel ceramic UF membranes for textile mercerization wastewater treatment, Environ Technol, 38, doi.org/10.1080/09593330.2016.1186225 ; Witek (2012), Analysis of temperature - dependent biosorption of Cu ions on sunflower hulls : Kinetics , equilibrium and mechanism of the process, Chem Eng J, 192, doi.org/10.1016/j.cej.2012.03.075 ; Srinivasan (2010), Oil removal from water using biomaterials, Biores Technol, 101, doi.org/10.1016/j.biortech.2010.03.079 ; Kocadagistan (2016), Batch and column removal of the dye blue R over pumice, Treat, 3, doi.org/10.1080/19443994.2016.1184186 ; Ho (2006), Second - order kinetic model for the sorption of cadmium onto tree fern : A comparison of linear and non - linear methods, Res, 40, doi.org/10.1016/j.watres.2005.10.040 ; Babu (2005), Modelling and simulation of fixed bed adsorption column : effect of velocity variation, Eng Techn, 1, doi.org/10.1016/30923-4748(05)00044-05 ; Garba (2016), Adsorptive removal of phenol from aqueous solution on a modified palm shell - based carbon : fixed - bed adsorption studies, Treat, 57, doi.org/10.1080/19443994.2016.1184187 ; Hameed (2009), Batch adsorption of methylene blue from aqueous solution by garlic peel , an agricultural waste biomass, Hazard Mat, 164, doi.org/10.1016/j.jhazmat.2008.08.084

Editorial Board

Editorial Board

Ali Mesbah, UC Berkeley, USA ORCID logo0000-0002-1700-0600

Anna Gancarczyk, Institute of Chemical Engineering, Polish Academy of Sciences, Poland ORCID logo0000-0002-2847-8992

Anna Trusek, Wrocław University of Science and Technology, Poland ORCID logo0000-0002-3886-7166

Bettina Muster-Slawitsch, AAE Intec, Austria ORCID logo0000-0002-5944-0831

Daria Camilla Boffito, Polytechnique Montreal, Canada ORCID logo0000-0002-5252-5752

Donata Konopacka-Łyskawa, Gdańsk University of Technology, Poland ORCID logo0000-0002-2924-7360

Dorota Antos, Rzeszów University of Technology, Poland ORCID logo0000-0001-8246-5052

Evgeny Rebrov, University of Warwick, UK ORCID logo0000-0001-6056-9520

Georgios Stefanidis, National Technical University of Athens, Greece ORCID logo0000-0002-4347-1350

Ireneusz Grubecki, Bydgoszcz Univeristy of Science and Technology, Poland ORCID logo0000-0001-5378-3115

Johan Tinge, Fibrant B.V., The Netherlands ORCID logo0000-0003-1776-9580

Katarzyna Bizon, Cracow University of Technology, Poland ORCID logo0000-0001-7600-4452

Katarzyna Szymańska, Silesian University of Technology, Poland ORCID logo0000-0002-1653-9540

Marcin Bizukojć, Łódź University of Technology, Poland ORCID logo0000-0003-1641-9917

Marek Ochowiak, Poznań University of Technology, Poland ORCID logo0000-0003-1543-9967

Mirko Skiborowski, Hamburg University of Technology, Germany ORCID logo0000-0001-9694-963X

Nikola Nikacevic, University of Belgrade, Serbia ORCID logo0000-0003-1135-5336

Rafał Rakoczy, West Pomeranian University of Technology, Poland ORCID logo0000-0002-5770-926X

Richard Lakerveld, Hong Kong University of Science and Technology, Hong Kong ORCID logo0000-0001-7444-2678

Tom van Gerven, KU Leuven, Belgium ORCID logo0000-0003-2051-5696

Tomasz Sosnowski, Warsaw University of Technology, Poland ORCID logo0000-0002-6775-3766



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