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The Elimination of Cadmium(II) from Aqueous Environment by Supported Liquid Membrane Method Using the Basic Carrier

机译:使用基础载体的支持液膜法从水环境中去除镉(II)

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摘要

The transport of cadmium ions through a supported liquid mem brane containing triethanolamine (TEA) as a mobile carrier has been studied. The effects of Cd(II) concentration, HC1 in feed and carrier concentration in membrane have been studied. Cd(II) concentration increase in feed leads to an increase in flux from 2.1x10~(-7) to 8.4x10~(-7) mol cm~(-2) sec~(-1) within Cd(II) ions concentration range (2.7x10~(-4) M- 16.3X10~(-4) M) at 2.0 M HC1 in the feed and 3.0 M triethanolamine in the membrane. Increase in H~+ ion concentration from 0.5 M to 3.0 M results in an increase in Cd(II) ions flux but a decrease is observed beyond 2.0 M HC1 concentration in feed. Increase in carrier concentration in the liquid inside the membrane enhances the flux with its maxima at 3.0 M carrier. Further increase in the concentration of TEA leads to a decrease in transport due to increase in viscosity of membrane liquid. The optimum conditions for Cd(II) ions transport are, 2.0 M HC1 in feed, 3.0 M TEA in membrane and 0.1 M NaOH as strip solution. Similar transport characteristics have been observed for Cd-EDTA complexed anions across TEA-cyclo-hexanone based SLM, thus indicating a cadmium anion transport coupled with protons and chloride or EDTA co-ions.
机译:已经研究了镉离子通过包含三乙醇胺(TEA)作为移动载体的负载型液态膜的传输。研究了Cd(II)浓度,饲料中HCl和膜中载体浓度的影响。进料中Cd(II)浓度的增加导致Cd(II)离子浓度范围内的通量从2.1x10〜(-7)mol 8.4〜10〜(-7)mol cm〜(-2)sec〜(-1)增加进料中的2.0 M HCl和膜中的3.0 M三乙醇胺的范围(2.7x10〜(-4)M- 16.3X10〜(-4)M)。 H〜+离子浓度从0.5 M增加到3.0 M导致Cd(II)离子通量增加,但是进料中超过2.0 M HCl浓度会降低。膜内液体中载流子浓度的增加以其在3.0 M载流子处的最大值提高了通量。由于膜液粘度的增加,TEA浓度的进一步增加导致运输的减少。 Cd(II)离子运输的最佳条件是进料中2.0 M HCl,膜中3.0 M TEA和汽提溶液0.1 M NaOH。对于Cd-EDTA络合的阴离子,在基于TEA-环己酮的SLM上观察到相似的传输特性,因此表明镉阴离子的传输与质子,氯离子或EDTA的共离子结合。

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