Recovery of rare-earth metal neodymium from aqueous solutions by poly-γ-glutamic acid and its sodium salt as biosorbents: Effects of solution pH on neodymium recovery mechanisms

被引:25
作者
Hisada, Misaki [1 ]
Kawase, Yoshinori [1 ]
机构
[1] Toyo Univ, Res Ctr Biochem & Environm Engn, Dept Appl Chem, 2100 Kujirai, Kawagoe, Saitama 613401, Japan
关键词
Rare-earth metal Nd recovery; Poly-gamma-glutamic acid; Biosorption; Precipitation; Coexisting cations; HEAVY-METALS; ADSORPTION; BIOSORPTION; BIOMASS; SLUDGE; BIOPOLYMER; BEHAVIOR; ELEMENTS; SORPTION; REMOVAL;
D O I
10.1016/j.jre.2018.01.001
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
For recovery of metals from low-concentration sources, biosorption is one of promising technologies and poly-gamma-glutamic acid (gamma-PGA) has been known as a potential biosorbent for recovery of heavy metals from aqueous solutions. Effects of solution pH on recovery of rare-earth metal Nd are systematically examined to clarify mechanisms of Nd recovery by y-PGA and its sodium salt (gamma-PGANa). The recovery efficiency of Nd by gamma-PGA increases from 2.4 to 19.6% as pH increases from 2 to 4. Subsequently the Nd recovery efficiencies for y-PGA and gamma-PGANa remain almost constant in the range of pH from 4 to 7. For pH > 7 the increase in Nd recovery is significant and 100% recovery of Nd is achieved at pH 9. The pH dependency on Nd recovery by gamma-PGANa is similar to that by y-PGA. Contributions of adsorption and precipitation/coagulation to Nd recovery process are quantified. Whereas the adsorption dominates Nd recovery at lower pH (<similar to 4), the precipitation/coagulation controls Nd recovery process for pH > 7. At higher pH, purple gel precipitates are observed. The maximum adsorption capacities for y-PGA and gamma-PGANa are 215 mg-Nd(g-gamma-PGA) at pH 4 and 305 mg-Nd/(g-gamma-PGANa) at pH 3, respectively. From the spectra of FT-IR and XPS, the biosorption of Nd onto y-PGA and gamma-PGANa via electrostatic interaction with carboxylate anions at pH 3 is verified. The Nd complexation with amide and carboxylate anion groups on y-PGA and gamma-PGANa may also contribute to the Nd recovery. The biosorption isotherms for Nd recovery by y-PGA and gamma-PGANa can be satisfactorily fitted by the Langmuir model. The thermodynamic studies suggest that the biosorptions of Nd by y-PGA and gamma-PGANa are endothermic. The utilization of gamma-PGA and gamma-PGANa as potential and eco-friendly biosorbents for the highly effective recovery of Nd from aqueous solution is confirmed. (C) 2018 Chinese Society of Rare Earths. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:528 / 536
页数:9
相关论文
共 38 条
[11]   γ-polyglutamic acid produced by Bacillus subtilis (natto):: Structural characteristics, chemical properties and biological functionalities [J].
Ho, Guan-Huei ;
Ho, Tong-Ing ;
Hsieh, Kuo-Huang ;
Su, Yuan-Chi ;
Lin, Pi-Yao ;
Yang, Jeng ;
Yang, Kun-Hsiang ;
Yang, Shih-Ching .
JOURNAL OF THE CHINESE CHEMICAL SOCIETY, 2006, 53 (06) :1363-1384
[12]   Adsorption of toxic mercury(II) by an extracellular biopolymer poly(γ-glutamic acid) [J].
Inbaraj, B. Stephen ;
Wang, J. S. ;
Lu, J. F. ;
Siao, F. Y. ;
Chen, B. H. .
BIORESOURCE TECHNOLOGY, 2009, 100 (01) :200-207
[13]   Biosorption of neodymium on Chlorella vulgaris in aqueous solution obtained from hard disk drive magnets [J].
Kucuker, Mehmet Ali ;
Wieczorek, Nils ;
Kuchta, Kerstin ;
Copty, Nadim K. .
PLOS ONE, 2017, 12 (04)
[14]  
Kumari A., 2016, HYDROMETALLURGY, V165, P2, DOI [10.1016/j.hydromet.2016.01.035, DOI 10.1016/J.HYDROMET.2016.01.035, 10.1016/j.hydromet.2016.01.003]
[15]   Physico-chemical treatment techniques for wastewater laden with heavy metals [J].
Kurniawan, TA ;
Chan, GYS ;
Lo, WH ;
Babel, S .
CHEMICAL ENGINEERING JOURNAL, 2006, 118 (1-2) :83-98
[16]   Synthesis of chitosan-based polymeric surfactants and their adsorption properties for heavy metals and fatty acids [J].
Lee, MY ;
Hong, KJ ;
Kajiuchi, T ;
Yang, JW .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2005, 36 (03) :152-158
[17]   Studies on potential applications of biomass for the separation of heavy metals from water and wastewater [J].
Lesmana, Sisca O. ;
Febriana, Novie ;
Soetaredjo, Felycia E. ;
Sunarso, Jaka ;
Ismadji, Suryadi .
BIOCHEMICAL ENGINEERING JOURNAL, 2009, 44 (01) :19-41
[18]   Luminescent behavior of CdTe quantum dots: Neodymium(III) complex-capped nanoparticles [J].
Miranda, Margarida S. ;
Algarra, Manuel ;
Jimenez-Jimenez, Jose ;
Rodriguez-Castellon, Enrique ;
Campos, Bruno B. ;
Esteves da Silva, Joaquim C. G. .
JOURNAL OF LUMINESCENCE, 2013, 134 :408-413
[19]   Elaboration of Impregnated Composite for Sorption of Europium and Neodymium Ions from Aqueous Solutions [J].
Naser, A. A. ;
El-Deen, G. E. Sharaf ;
Bhran, Ahmed A. ;
Metwally, S. S. ;
El-Kamash, A. M. .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2015, 32 :264-272
[20]   Heavy metal adsorbents prepared from the modification of cellulose: A review [J].
O'Connell, David William ;
Birkinshaw, Colin ;
O'Dwyer, Thomas Francis .
BIORESOURCE TECHNOLOGY, 2008, 99 (15) :6709-6724