Enhancing adsorption capacity of toxic malachite green dye through chemically modified breadnut peel: equilibrium, thermodynamics, kinetics and regeneration studies

被引:108
作者
Chieng, Hei Ing [1 ]
Lim, Linda B. L. [1 ]
Priyantha, Namal [2 ,3 ]
机构
[1] Univ Brunei Darussalam, Dept Chem, Fac Sci, Gadong, Brunei
[2] Univ Peradeniya, Dept Chem, Fac Sci, Peradeniya, Sri Lanka
[3] Univ Peradeniya, Postgrad Inst Studies, Peradeniya, Sri Lanka
关键词
kinetics; breadnut skin; equilibrium isotherms; regeneration; malachite green; HEAVY-METAL ADSORPTION; LOW-COST ADSORBENTS; AQUEOUS-SOLUTION; JACKFRUIT PEEL; RICE HUSKS; BASIC DYE; REMOVAL; ISOTHERM; SORPTION; WATER;
D O I
10.1080/09593330.2014.938124
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Breadnut skin, in both its unmodified (KS) and base-modified (BM-KS) forms, was investigated for its potential use as a low-cost adsorbent for the removal of toxic dye, malachite green (MG). Characterization of the adsorbents was carried out using scanning electron microscope, X-ray fluorescence and Fourier transform infra-red spectroscopy. Batch adsorption experiments, carried out under optimized conditions, for the adsorption of MG were fitted using five isotherm models (Langmuir, Freundlich, Dubinin-Radushkevich, Temkin and Sips) and six error functions to determine the best-fit model. The adsorption capacity was greatly enhanced when breadnut skin was chemically modified with NaOH, leading to an adsorption capacity of 353.0mgg(-1), that was far superior to most reported adsorbents for the removal of MG. Thermodynamics studies indicated that the adsorption of MG was spontaneous on KS and BM-KS, and the reactions were endothermic and exothermic, respectively. Kinetics studies showed that both followed the pseudo-second order. Regeneration experiments on BM-KS indicated that its adsorption capacity was still maintained at>90% even after five cycles. It can be concluded that NaOH-modified breadfruit skin has great potential to be utilized in real-life application as a low-cost adsorbent for the removal of MG in wastewater treatment.
引用
收藏
页码:86 / 97
页数:12
相关论文
共 60 条
[1]   Kinetics modelling of Cu(II) biosorption on to coconut shell and Moringa oleifera seeds from tropical regions [J].
Acheampong, Mike A. ;
Pereira, Joana P. C. ;
Meulepas, Roel J. W. ;
Lens, Piet N. L. .
ENVIRONMENTAL TECHNOLOGY, 2012, 33 (04) :409-417
[2]   Quantitative and confirmatory analyses of malachite green and leucomalachite green residues in fish and shrimp [J].
Andersen, WC ;
Turnipseed, SB ;
Roybal, JE .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2006, 54 (13) :4517-4523
[3]   Low-cost adsorbents for heavy metals uptake from contaminated water: a review [J].
Babel, S ;
Kurniawan, TA .
JOURNAL OF HAZARDOUS MATERIALS, 2003, 97 (1-3) :219-243
[4]   Applicability of the various adsorption models of three dyes adsorption onto activated carbon prepared waste apricot [J].
Basar, Canan Akmil .
JOURNAL OF HAZARDOUS MATERIALS, 2006, 135 (1-3) :232-241
[5]   The use of native and protonated grapefruit biomass (Citrus paradisi L.) for cadmium(II) biosorption: equilibrium and kinetic modelling [J].
Bayo, Javier ;
Esteban, Gines ;
Castillo, Julian .
ENVIRONMENTAL TECHNOLOGY, 2012, 33 (07) :761-772
[6]   A review of the use of red mud as adsorbent for the removal of toxic pollutants from water and wastewater [J].
Bhatnagar, Amit ;
Vilar, Vitor J. P. ;
Botelho, Cidalia M. S. ;
Boaventura, Rui A. R. .
ENVIRONMENTAL TECHNOLOGY, 2011, 32 (03) :231-249
[7]  
Chieng H.I., 2013, Int. J. Earth Sci. Eng., V6, P791
[8]  
Chieng HI, 2014, DESALIN WATER TREAT, DOI [10.1080/19443994.19442014.19919609, DOI 10.1080/19443994.19442014.19919609]
[9]  
Chieng HI, 2014, ENVIRON EARTH SCI, DOI [10.1007/s12665-12014-13135-12667, DOI 10.1007/S12665-12014-13135-12667]
[10]   Fish (Labeo rohita) Scales as Potential Low-Cost Biosorbent for Removal of Malachite Green from Aqueous Solutions [J].
Chowdhury, Shamik ;
Das Saha, Papita ;
Ghosh, Ujjal .
BIOREMEDIATION JOURNAL, 2012, 16 (04) :235-242