Treatment of Contaminated Groundwater via Arsenate Removal Using Chitosan-Coated Bentonite

被引:22
作者
Yee, Jurng-Jae [1 ]
Justo Arida, Carlo Vic [2 ]
Futalan, Cybelle Morales [3 ]
Daniel Garrido de Luna, Mark [4 ]
Wan, Meng-Wei [5 ]
机构
[1] Dong A Univ, Dept Architectural Engn, Busan 49315, South Korea
[2] Environm Management Bur, Dept Environm & Nat Resources, Quezon City 1100, Philippines
[3] Dong A Univ, Natl Res Ctr Disaster Free & Safe Ocean City, Busan 49315, South Korea
[4] Univ Philippines Diliman, Dept Chem Engn, Quezon City 1101, Philippines
[5] Chia Nan Univ Pharm & Sci, Dept Environm Resources Management, Tainan 71710, Taiwan
基金
新加坡国家研究基金会;
关键词
activation energy; arsenic; bentonite; chitosan; groundwater; thermodynamics; CROSS-LINKED CHITOSAN; AQUEOUS-SOLUTION; DRINKING-WATER; EFFICIENT ADSORBENT; HEAVY-METALS; IRON-OXIDE; ADSORPTION; IONS; SORPTION; KAOLINITE;
D O I
10.3390/molecules24132464
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the present research, treatment of contaminated groundwater via adsorption of As(V) with an initial concentration of 50.99 mu g/L using chitosan-coated bentonite (CCB) was investigated. The effect of adsorbent mass (0.001 to 2.0 g), temperature (298 to 328 K), and contact time (1 to 180 min) on the removal efficiency was examined. Adsorption data was evaluated using isotherm models such as Langmuir, Freundlich, and Dubinin-Radushkevich. Isotherm study showed that the Langmuir (R-2 > 0.9899; chi(2) <= 0.91; RMSE <= 4.87) model best correlates with the experimental data. Kinetics studies revealed that pseudo-second order equation adequately describes the experimental data (R-2 >= 0.9951; chi(2) <= 0.8.33; RMSE <= 4.31) where equilibrium was attained after 60 min. Thermodynamics study shows that the As(V) adsorption is non-spontaneous (Delta G(0) >= 0) and endothermic (Delta H-0 = 8.31 J/mol) that would result in an increase in randomness (Delta S-0 = 29.10 kJ/mol center dot K) within the CCB-solution interface. FT-IR analysis reveals that hydroxyl and amino groups are involved in the adsorption of As(V) from groundwater. Results of the present research serve as a tool to determine whether CCB is an environmentally safe and cost effective material that could be utilized in a permeable reactive barrier system for the remediation of As(V) from contaminated groundwater.
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页数:16
相关论文
共 86 条
[1]   Novel Metal-Organic Framework (MOF) Based Composite Material for the Sequestration of U(VI) and Th(IV) Metal Ions from Aqueous Environment [J].
Alqadami, Ayoub Abdullah ;
Naushad, Mu. ;
Alothman, Zeid Abdullah ;
Ghfar, Ayman A. .
ACS APPLIED MATERIALS & INTERFACES, 2017, 9 (41) :36026-36037
[2]  
Altundogan HS, 2000, WASTE MANAGE, V20, P761
[3]  
[Anonymous], TRACE METALS OTHER C
[4]   Influence of iron content, surface area and charge distribution in the arsenic removal by activated carbons [J].
Arcibar-Orozco, Javier A. ;
Josue, Delgado-Balbuena ;
Rios-Hurtado, Jorge C. ;
Rene Rangel-Mendez, J. .
CHEMICAL ENGINEERING JOURNAL, 2014, 249 :201-209
[5]   Optimization of As(V) removal using chitosan-coated bentonite from groundwater using Box-Behnken design: effects of adsorbent mass, flow rate, and initial concentration [J].
Arida, Carlo Vic J. ;
de Luna, Mark Daniel G. ;
Morales Futalan, Cybelle ;
Wan, Meng-Wei .
DESALINATION AND WATER TREATMENT, 2016, 57 (40) :18739-18747
[6]   Kinetic and thermodynamic aspects of adsorption of arsenic onto granular ferric hydroxide (GFH) [J].
Banerjee, Kashi ;
Amy, Gary L. ;
Prevost, Michele ;
Nour, Shokoufeh ;
Jekel, Martin ;
Gallagher, Paul M. ;
Blumenschein, Charles D. .
WATER RESEARCH, 2008, 42 (13) :3371-3378
[7]   The influence of pH, co-existing ions, ionic strength, and temperature on the adsorption and reduction of hexavalent chromium by undissolved humic acid [J].
Barnie, Samuel ;
Zhang, Jia ;
Wang, Hui ;
Yin, Huilin ;
Chen, Honghan .
CHEMOSPHERE, 2018, 212 :209-218
[8]   Removal of reactive yellow 145 by adsorption onto treated watermelon seeds: Kinetic and isotherm studies [J].
Benkaddour, S. ;
Slimani, R. ;
Hiyane, H. ;
El Ouahabi, I. ;
Hachoumi, I. ;
El Antri, S. ;
Lazar, S. .
SUSTAINABLE CHEMISTRY AND PHARMACY, 2018, 10 :16-21
[9]   Application of chitosan in removal of molybdate ions from contaminated water and groundwater [J].
Bertoni, Fernando A. ;
Gonzalez, Juan C. ;
Garcia, Silvia I. ;
Sala, Luis F. ;
Bellu, Sebastian E. .
CARBOHYDRATE POLYMERS, 2018, 180 :55-62
[10]   Removal of arsenic(III) and arsenic(V) from aqueous medium using chitosan-coated biosorbent [J].
Boddu, Veera M. ;
Abburi, Krishnaiah ;
Talbott, Jonathan L. ;
Smith, Edgar D. ;
Haasch, Richard .
WATER RESEARCH, 2008, 42 (03) :633-642