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首页> 外文期刊>The Korean journal of chemical engineering >Separation of As(III) and As(V) by hollow fiber supported liquid membrane based on the mass transfer theory
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Separation of As(III) and As(V) by hollow fiber supported liquid membrane based on the mass transfer theory

机译:基于传质理论的中空纤维负载液膜分离As(III)和As(V)

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Separation of As(III) and As(V) ions from sulphate media by hollow fiber supported liquid membrane has been examined. Cyanex 923 was diluted in toluene and used as an extractant. Water was used as a stripping solution. The extractability of As(V) was higher than As(III). When the concentration of sulphuric acid in feed solution and Cyanex 923 in liquid membrane increased, more arsenic ions were extracted into liquid membrane and recovered into the stripping solution. The mathematical model was focused on the extraction side of the liquid membrane system. The mass transfer coefficients of the aqueous phase (k_i) and organic phase (k_m) are 7.15 × 10~(-3) and 3.45 × 10~(-2) cm/s for As(III), and 1.07 × 10~2 and 1.79 × 10~(-2) cm/s for As(V). Therefore, the rate-controlling step for As(III) and As(V) in liquid membrane process is the mass transfer in the aqueous film between the feed solution and liquid membrane. The calculated mass transfer coefficients aaree with the exnerimental results.
机译:已经研究了中空纤维负载液膜从硫酸盐介质中分离As(III)和As(V)离子的过程。将Cyanex 923稀释在甲苯中并用作萃取剂。水用作汽提溶液。 As(V)的萃取率高于As(III)。当进料溶液中的硫酸浓度和液膜中的Cyanex 923浓度增加时,更多的砷离子被萃取到液膜中并被回收到汽提液中。数学模型集中在液膜系统的萃取侧。对于As(III),水相(k_i)和有机相(k_m)的传质系数分别为7.15×10〜(-3)和3.45×10〜(-2)cm / s,以及1.07×10〜2 As(V)为1.79×10〜(-2)cm / s因此,液膜法中As(III)和As(V)的速率控制步骤是进料溶液和液膜之间在水膜中的质量转移。计算的传质系数与实验结果一致。

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