Functionalized chitosan based nano-filter membranes for pH-controlled separation of amino acids

被引:8
|
作者
Chakrabarty, Tina [1 ]
Thakur, Amit K. [1 ]
Shahi, Vinod K. [1 ]
机构
[1] CSIR, Cent Salt & Marine Chem Res Inst, Electromembrane Proc Div, Bhavnagar 364002, Gujarat, India
关键词
Electro-driven separations; Charged nanofilter membranes; Amino acids; Chronopotentiometry; Iso-electric point; QUATERNIZED CHITOSAN; SELECTIVE SEPARATION; COMPOSITE MEMBRANES; ELECTRODIALYSIS; DEHYDRATION; EXTRACTION; TRANSPORT; MIXTURES; EDUF;
D O I
10.1016/j.seppur.2013.01.054
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
pH-controlled separation of AAs was achieved by electro-membrane cell (EMC) with three compartments (central, comp. 1 and comp. 2). EMC is based on the principles of electrodialysis (ED) using indigenous cation-exchange and anion-exchange nanofilter (C-NF and A-NF, respectively). Water permeabilities (1.1-1.5 mh(-1) bar(-1)) and molecular cut-off (MWCO) values (400-500 Da) for C-NF and A-NF, were suggested their nanofilter (NF) nature. Electrochemical properties of these membranes confirmed their suitability for EMC. Chronopotentiometric studies revealed the electro-transport of positively charged lysine (LYS+) and negatively charged glutamic acid (GLU(-)) across C-NF and A-NF, respectively, at pH: 6.1 under applied voltage. While glycine at its pI (pH: 6.1) remained immobile. Thus, separation of AAs (ternary mixture) by iso-electric point (pI) focusing of one component was proposed. Under optimized experimental conditions (i.e. at 4.0 V constant applied voltage, pH: 6.1 for 0.05 M equi-molar LYS-GLU-GLY mixture), about 4.0 kW h kg(-1) of AA separated energy consumption, 82% current efficiency and 90% product recovery showed the economic and technical feasibility of EMC for industrial exploitation. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:57 / 64
页数:8
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