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A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy

The present work is the first to study co-biosorption of Pb(II) and Sb(III) by a novel bacterium and its application strategy. The biosorption characteristics of Pb(II) and Sb(III) ions from aqueous solution using B. subtilis were investigated. Optimum pH, biomass dosage, contact time and temperatur...

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Detalles Bibliográficos
Autores principales: Cai, Yue, Li, Xiaoping, Liu, Dongying, Xu, Changlin, Ai, Yuwei, Sun, Xuemeng, Zhang, Meng, Gao, Yu, Zhang, Yuchao, Yang, Tao, Wang, Jingzhi, Wang, Lijun, Li, Xiaoyun, Yu, Hongtao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5923744/
https://www.ncbi.nlm.nih.gov/pubmed/29642529
http://dx.doi.org/10.3390/ijerph15040702
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author Cai, Yue
Li, Xiaoping
Liu, Dongying
Xu, Changlin
Ai, Yuwei
Sun, Xuemeng
Zhang, Meng
Gao, Yu
Zhang, Yuchao
Yang, Tao
Wang, Jingzhi
Wang, Lijun
Li, Xiaoyun
Yu, Hongtao
author_facet Cai, Yue
Li, Xiaoping
Liu, Dongying
Xu, Changlin
Ai, Yuwei
Sun, Xuemeng
Zhang, Meng
Gao, Yu
Zhang, Yuchao
Yang, Tao
Wang, Jingzhi
Wang, Lijun
Li, Xiaoyun
Yu, Hongtao
author_sort Cai, Yue
collection PubMed
description The present work is the first to study co-biosorption of Pb(II) and Sb(III) by a novel bacterium and its application strategy. The biosorption characteristics of Pb(II) and Sb(III) ions from aqueous solution using B. subtilis were investigated. Optimum pH, biomass dosage, contact time and temperature were determined to be 5.00, 6.00 mg/L, 45 min and 35 °C, respectively. Langmuir, Freundlich, Temkin and Dubinin-Radushkevich (D-R) models were applied to describe the biosorption isotherm of the metal ions by B. subtilis. Results showed that Langmuir model fitted the equilibrium data of Pb(II) better than others, while biosorption of Sb(III) obeyed the Freundlich model well. The biosorption capacity of B. subtilis biomass for Pb(II) and Sb(III) ions was found to be 17.34 ± 0.14 and 2.32 ± 0.30 mg/g, respectively. Kinetic data showed the biosorption process of Pb(II) and Sb(III) ions both followed the pseudo-second-order kinetic model, with R(2) ranging from 0.974 to 0.999 for Pb(II) and from 0.967 to 0.979 for Sb(III). The calculated thermodynamic parameters, negative ∆G and positive ∆H and ∆S values, indicated the biosorption of Pb(II) and Sb(III) ions onto B. subtilis biomass in water was feasible, endothermic, and spontaneous. Bacterial bioleaching experiment revealed B. subtilis can increase the mobility of Pb(II) and Sb(III) in polluted soil when pH was close to 6 at low temperature. Consequently, B. subtilis, as a cheap and original bacterial material, could be a promising biomass to remove Pb or isolate Sb from industrial wastewater and to assist phytoremediation of Pb and Sb from weak acid or near neutral pH polluted soils at low temperature.
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spelling pubmed-59237442018-05-03 A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy Cai, Yue Li, Xiaoping Liu, Dongying Xu, Changlin Ai, Yuwei Sun, Xuemeng Zhang, Meng Gao, Yu Zhang, Yuchao Yang, Tao Wang, Jingzhi Wang, Lijun Li, Xiaoyun Yu, Hongtao Int J Environ Res Public Health Article The present work is the first to study co-biosorption of Pb(II) and Sb(III) by a novel bacterium and its application strategy. The biosorption characteristics of Pb(II) and Sb(III) ions from aqueous solution using B. subtilis were investigated. Optimum pH, biomass dosage, contact time and temperature were determined to be 5.00, 6.00 mg/L, 45 min and 35 °C, respectively. Langmuir, Freundlich, Temkin and Dubinin-Radushkevich (D-R) models were applied to describe the biosorption isotherm of the metal ions by B. subtilis. Results showed that Langmuir model fitted the equilibrium data of Pb(II) better than others, while biosorption of Sb(III) obeyed the Freundlich model well. The biosorption capacity of B. subtilis biomass for Pb(II) and Sb(III) ions was found to be 17.34 ± 0.14 and 2.32 ± 0.30 mg/g, respectively. Kinetic data showed the biosorption process of Pb(II) and Sb(III) ions both followed the pseudo-second-order kinetic model, with R(2) ranging from 0.974 to 0.999 for Pb(II) and from 0.967 to 0.979 for Sb(III). The calculated thermodynamic parameters, negative ∆G and positive ∆H and ∆S values, indicated the biosorption of Pb(II) and Sb(III) ions onto B. subtilis biomass in water was feasible, endothermic, and spontaneous. Bacterial bioleaching experiment revealed B. subtilis can increase the mobility of Pb(II) and Sb(III) in polluted soil when pH was close to 6 at low temperature. Consequently, B. subtilis, as a cheap and original bacterial material, could be a promising biomass to remove Pb or isolate Sb from industrial wastewater and to assist phytoremediation of Pb and Sb from weak acid or near neutral pH polluted soils at low temperature. MDPI 2018-04-09 2018-04 /pmc/articles/PMC5923744/ /pubmed/29642529 http://dx.doi.org/10.3390/ijerph15040702 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cai, Yue
Li, Xiaoping
Liu, Dongying
Xu, Changlin
Ai, Yuwei
Sun, Xuemeng
Zhang, Meng
Gao, Yu
Zhang, Yuchao
Yang, Tao
Wang, Jingzhi
Wang, Lijun
Li, Xiaoyun
Yu, Hongtao
A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
title A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
title_full A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
title_fullStr A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
title_full_unstemmed A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
title_short A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
title_sort novel pb-resistant bacillus subtilis bacterium isolate for co-biosorption of hazardous sb(iii) and pb(ii): thermodynamics and application strategy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5923744/
https://www.ncbi.nlm.nih.gov/pubmed/29642529
http://dx.doi.org/10.3390/ijerph15040702
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