Functionalized chitosan adsorbents allow recovery of palladium and platinum from acidic aqueous solutions

被引:97
作者
Mincke, Stein [1 ]
Asere, Tsegaye Grima [2 ,3 ]
Verheye, Ivar [1 ]
Folens, Karel [1 ]
Vanden Bussche, Flore [1 ,4 ]
Lapeire, Linsey [5 ]
Verbeken, Kim [5 ]
Van Der Voort, Pascal [4 ]
Tessema, Dejene A. [2 ]
Fufa, Fekadu [3 ]
Du Laing, Gijs [1 ]
Stevens, Christian, V [1 ]
机构
[1] Univ Ghent, Dept Green Chem & Technol, Campus Coupure,Coupure Links 653, B-9000 Ghent, Belgium
[2] Welkite Univ, Dept Chem, Gubrei Wabe Bridge 5, Welkite, Ethiopia
[3] Jimma Univ, Dept Chem, Coll Nat Sci, POB 378, Jimma, Ethiopia
[4] Univ Ghent, Dept Chem, Krijgslaan 281 S3, B-9000 Ghent, Belgium
[5] Univ Ghent, Dept Mat Text & Chem Engn, Technol Pk Zwijnaarde 46, B-9052 Zwijnaarde, Belgium
关键词
8-HYDROXYQUINOLINE DERIVATIVE EXTRACTANTS; GROUP METALS SEPARATION; CROSS-LINKING; ADSORPTION; SORPTION; CHITIN; IONS; PD(II); REMOVAL; WASTE;
D O I
10.1039/c9gc00166b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Platinum (Pt) and palladium (Pd) are precious metals considered critical in our society and are needed in a variety of sustainable technologies. Their scarcity urges the increase of recycling from secondary waste streams through new and efficient recovery techniques. Adsorption is an established recovery method for liquid streams, where chitosan shows promising results as a low-cost adsorbent, derived from biomass. This biopolymer is able to capture metals, but suffers from a low stability under acidic conditions and poor adsorbing properties. In this study, three new chitosan derivatives were synthesized and employed for Pd(II) and Pt(IV) recovery from acidic solutions. Specific and simple modifications were selected based on their known affinities for these metal ions and taking into account the principles of green chemistry. The prepared derivatives consist of 1,10-phenanthroline-2,9-dicarbaldehyde cross-linked chitosan (Ch-PDC), [2,2'-bipyridine]-5,5'-dicarbaldehyde cross-linked chitosan (Ch-BPDC) and glutaraldehyde cross-linked chitosan grafted with 8-hydroxyquinoline-2-carbaldehyde (Ch-GA-HQC). For all derivatives, the adsorption occurred fast and equilibrium reached within 30 min. The Langmuir isotherms revealed a maximum adsorption capacity for Pd(II) and Pt(IV) of respectively 262.6 mg g(-1) and 119.5 mg g(-1) for Ch-PDC, 154.7 mg g(-1) and 98.3 mg g(-1) for Ch-BPDC and 340.3 mg g(-1) and 203.9 mg g(-1) for Ch-GA-HQC. Such adsorption capacities are considerably higher compared to the biosorbents reported in the literature. Excellent physical properties in homo-and heterogeneous systems and high regeneration performances demonstrate that chitosan-based adsorbents are very promising for Pd(II) and Pt(IV) recovery from acidic solutions.
引用
收藏
页码:2295 / 2306
页数:12
相关论文
共 74 条
  • [21] Sulfur derivatives of chitosan for palladium sorption
    Guibal, E
    Sweeney, NV
    Vincent, T
    Tobin, JM
    [J]. REACTIVE & FUNCTIONAL POLYMERS, 2002, 50 (02) : 149 - 163
  • [22] Competitive sorption of platinum and palladium on chitosan derivatives
    Guibal, E
    Sweeney, NV
    Zikan, MC
    Vincent, T
    Tobin, JM
    [J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2001, 28 (05) : 401 - 408
  • [23] Thermogravimetric analysis of chitosan
    Hong, Peng-Zhi
    Li, Si-Dong
    Ou, Chun-Yan
    Li, Cheng-Peng
    Yang, Lei
    Zhang, Chao-Hua
    [J]. JOURNAL OF APPLIED POLYMER SCIENCE, 2007, 105 (02) : 547 - 551
  • [24] Heterogeneous cross-linking of chitosan gel beads: Kinetics, modeling, and influence on cadmium ion adsorption capacity
    Hsien, TY
    Rorrer, GL
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1997, 36 (09) : 3631 - 3638
  • [25] Hunt AJ, 2013, RSC GREEN CHEM SER, V22, P1, DOI 10.1039/9781849737340-00001
  • [26] Chitin and Chitosan: Structure, Properties and Applications in Biomedical Engineering
    Islam, S.
    Bhuiyan, M. A. Rahman
    Islam, M. N.
    [J]. JOURNAL OF POLYMERS AND THE ENVIRONMENT, 2017, 25 (03) : 854 - 866
  • [27] Studies directed to understanding the structure of chitosan-metal complexes: Investigations of mono- and disaccharide models with platinum(II) group metals
    Johannesen, Sine A.
    Petersen, Bent O.
    Duus, Jens O.
    Skrydstrup, Troels
    [J]. INORGANIC CHEMISTRY, 2007, 46 (10) : 4326 - 4335
  • [28] Effective and selective recovery of gold and palladium ions from metal wastewater using a sulfothermophilic red alga, Galdieria sulphuraria
    Ju, Xiaohui
    Igarashi, Kensuke
    Miyashita, Shin-ichi
    Mitsuhashi, Hiroaki
    Inagaki, Kazumi
    Fujii, Shin-ichiro
    Sawada, Hitomi
    Kuwabara, Tomohiko
    Minoda, Ayumi
    [J]. BIORESOURCE TECHNOLOGY, 2016, 211 : 759 - 764
  • [29] Influence of the Degree of Chitosan Sulfoethylation on the Sorption of Palladium(II) Chloride Complexes from Multicomponent Solutions
    Kapitanova, E. I.
    Ibragimova, A. A.
    Petrova, Yu. S.
    Pestov, A. V.
    Neudachina, L. K.
    [J]. RUSSIAN JOURNAL OF APPLIED CHEMISTRY, 2018, 91 (02) : 297 - 303
  • [30] Production of chitin and chitosan from the exoskeleton of adult two-spotted field crickets (Gryllus bimaculatus)
    Kim, Min-Woo
    Song, Yong-Su
    Han, Yeon Soo
    Jo, Yong Hun
    Choi, Myung Hyo
    Park, Young-Kyu
    Kang, Seung Ho
    Kim, Sun-Am
    Choi, Changyong
    Jung, Woo-Jin
    [J]. ENTOMOLOGICAL RESEARCH, 2017, 47 (05) : 279 - 285