Sorption of metal ions from aqueous solution to spruce bark

被引:0
作者
Pingping Su
Kim Granholm
Andrey Pranovich
Leo Harju
Bjarne Holmbom
Ari Ivaska
机构
[1] Åbo Akademi University,Laboratory of Analytical Chemistry, Process Chemistry Centre
[2] Åbo Akademi University,Laboratory of Wood and Paper Chemistry, Process Chemistry Centre
来源
Wood Science and Technology | 2013年 / 47卷
关键词
Bark; Pectin; Sorption Experiment; Protonation Constant; Wood Particle;
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摘要
The concentrations and protonation constants of the functional groups like carboxyl and phenolic hydroxyl groups in spruce bark were determined by a potentiometric acid–base titration method. The non-cellulosic carbohydrates in spruce bark were also characterized by acid methanolysis and GC, including determination of the uronic acid units, which are the key units involved in metal sorption. Sorption of metal ions to bark takes place by ion exchange, mainly by complexation to these functional groups. The sorption equilibrium time, studied by using a batch method, was approximately 5 min. The metal sorption capacity of spruce bark and the affinity order of metal ions were studied with four different metal ion mixtures using a column chromatographic method. Because a method of competition was used, concentration of metal ions adsorbed to bark depends on the metal ions present in the mixtures studied. In the sorption experiments with same metal ion mixtures, inner bark of spruce exhibited higher sorption capacity than outer bark. By combination of the results from several experiments, the following affinity order was obtained Fe3+ ≫ Pb2+ ≫ Cu2+ ≫ Cd2+ > Zn2+ > Ni2+ > Ba2+ > Ca2+ > Sr2+ > Mn2+ > Mg2+ ≫ K+ ~ Na+ ~ Li+. Bark has a great potential as an effective and inexpensive sorbent for removal of metal ions from, e.g., waste water.
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页码:1083 / 1097
页数:14
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  • [1] Argun ME(2009)Removal of Cd(II), Pb(II), Cu(II) and Ni(II) from water using modified pine bark Desalination 249 519-527
  • [2] Dursun S(1992)Studies of the degradation and protection of wood surfaces Wood Sci Technol 26 151-163
  • [3] Karatas M(2009)Study on desorption of Mn, Fe, and Mg from TMP and evaluation of the complexing strength of different chelating agents using side reaction coefficients Holzforschung 63 785-790
  • [4] Evans PD(2009)Biosorption of Pb(II) ions from aqueous solution by pine bark ( Chem Eng J 153 62-69
  • [5] Michell AJ(2002) Ten.) Nucl Instrum Methods Phys Res B 189 303-309
  • [6] Schmalzl KJ(2011)Environmental monitoring of trace elements in bark of Scots pine by thick-target PIXE Bioresources 6 2161-2287
  • [7] Granholm K(2012)Cellulosic substrates for removal of pollutants from aqueous systems: a review. 1. Metals Nord Pulp Pap Res J 27 6-17
  • [8] Su P(2012)Extraction and chemical characterization of Norway spruce inner and outer bark Ind Crops Prod 36 395-400
  • [9] Harju L(2010)Chemical characterization of barks from Wood Sci Technol 44 283-299
  • [10] Ivaska A(2010) and Chem Eng J 157 357-365