Kinetic Study of Mercury(II) Transport through a Bulk Liquid Membrane Using Cyanex 301 as Carrier

A kinetic study of Hg(II) ions transport through a bulk liquid membrane (BLM) was investigated. The commercially available liquid bis(2,4,4‐trimethyl(pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. The influences of the carrier concentration in the liquid membrane, HNO3 c...

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Veröffentlicht in:Journal of the Chinese Chemical Society (Taipei) 2013-05, Vol.60 (5), p.559-566
Hauptverfasser: Madaeni, S. S., Islami, N.
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description A kinetic study of Hg(II) ions transport through a bulk liquid membrane (BLM) was investigated. The commercially available liquid bis(2,4,4‐trimethyl(pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. The influences of the carrier concentration in the liquid membrane, HNO3 concentration in the feed phase, type of organic solvent, composition of the receiving phase, and stirring speed on mass transfer were studied. Various solvents including CH2Cl2, CHCl3, C2H4Cl2 and CCl4 were used as organic membrane. Among the solvents, CHCl3 provided the superior results. The kinetic parameters (k1, k2, Rmmax, tmax, Jdmax, and Jamax) were calculated for the interface reaction assuming two consecutive, irreversible first‐order reactions. The analysis of Hg(II) accumulation in liquid membrane and the rate‐controlling step under different experimental conditions were elucidated. The experiments demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane. A kinetic study of Hg(II) ions transport through a bulk liquid membrane was investigated. The commercially available liquid bis (2,4,4‐trimethyl (pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. The results demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane.
doi_str_mv 10.1002/jccs.201200377
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The experiments demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane. A kinetic study of Hg(II) ions transport through a bulk liquid membrane was investigated. The commercially available liquid bis (2,4,4‐trimethyl (pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. The results demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane.</description><identifier>ISSN: 0009-4536</identifier><identifier>EISSN: 2192-6549</identifier><identifier>DOI: 10.1002/jccs.201200377</identifier><language>eng</language><publisher>Weinheim: WILEY-VCH Verlag</publisher><subject>Bulk liquid membrane ; Cyanex 301 ; Hg transport ; Transport kinetics</subject><ispartof>Journal of the Chinese Chemical Society (Taipei), 2013-05, Vol.60 (5), p.559-566</ispartof><rights>Copyright © 2013 The Chemical Society Located in Taipei &amp; Wiley‐VCH Verlag GmbH &amp; Co. 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The kinetic parameters (k1, k2, Rmmax, tmax, Jdmax, and Jamax) were calculated for the interface reaction assuming two consecutive, irreversible first‐order reactions. The analysis of Hg(II) accumulation in liquid membrane and the rate‐controlling step under different experimental conditions were elucidated. The experiments demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane. A kinetic study of Hg(II) ions transport through a bulk liquid membrane was investigated. The commercially available liquid bis (2,4,4‐trimethyl (pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. 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The commercially available liquid bis(2,4,4‐trimethyl(pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. The influences of the carrier concentration in the liquid membrane, HNO3 concentration in the feed phase, type of organic solvent, composition of the receiving phase, and stirring speed on mass transfer were studied. Various solvents including CH2Cl2, CHCl3, C2H4Cl2 and CCl4 were used as organic membrane. Among the solvents, CHCl3 provided the superior results. The kinetic parameters (k1, k2, Rmmax, tmax, Jdmax, and Jamax) were calculated for the interface reaction assuming two consecutive, irreversible first‐order reactions. The analysis of Hg(II) accumulation in liquid membrane and the rate‐controlling step under different experimental conditions were elucidated. The experiments demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane. A kinetic study of Hg(II) ions transport through a bulk liquid membrane was investigated. The commercially available liquid bis (2,4,4‐trimethyl (pentyl) dithiophosphinic acid) (Cyanex 301) was employed as mobile carrier. The results demonstrated that Cyanex 301 is an appropriate carrier for Hg(II) transport through liquid membrane.</abstract><cop>Weinheim</cop><pub>WILEY-VCH Verlag</pub><doi>10.1002/jccs.201200377</doi><tpages>8</tpages></addata></record>
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subjects Bulk liquid membrane
Cyanex 301
Hg transport
Transport kinetics
title Kinetic Study of Mercury(II) Transport through a Bulk Liquid Membrane Using Cyanex 301 as Carrier
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