首页> 外文期刊>Journal of Chemistry >Separation Studies of Pd(II) from Acidic Chloride Solutions of Pt(IV), Ni(II) and Rh(III) by Using 4-Aroyl-3-Phenyl-5-Isoxazolones
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Separation Studies of Pd(II) from Acidic Chloride Solutions of Pt(IV), Ni(II) and Rh(III) by Using 4-Aroyl-3-Phenyl-5-Isoxazolones

机译:使用4-芳酰-3-苯基-5异恶唑酮,Pt(IV),Ni(II)和RH(III)酸氯化物溶液的Pd(II)分离研究

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This study examined the effect influence of various factors on the extraction of Pd(II) to develop a new liquid-liquid extraction mechanism for the selective separation of palladium(II) from its acidic chloride solutions using 4-aroyl-3-phenyl-5-isoxazolones (HA), such as 3-phenyl-4-(4-fluorobenzoyl)-5- isoxazolone (HFBPI), 3-phenyl-4-benzoyl-5-isoxazolone (HPBI) and 3-phenyl-4- (4-toluoyl)-5-isoxazolone (HTPI). The extraction strength of Pd(II) with HA were in the following order: HFBPI > HPBI > HTPI, which is opposite to that observed with their pKavalues. HPBI was used to separate Pd(II) from Pt(IV), Ni(II) and Rh(III) metal ions and calculated their separation factors (S.F.) were followed in the order: Pd/Ni (40±0.4) > Pd/Pt (25±0.2) > Pd/Rh (15±0.3 > Rh/Ni (2.7±0.3) > Pt/Ni ≈ Rh/Pt (1.7±0.2). The loading and striping of Pd(II) (1.12×10-4mol L-1) were also examined using 1.0×10-3mol L-1HPBI in CHCl3and 1.0 mol L-1HCl, respectively. The results demonstrated that the maximum (97.5%) extraction and desorption (89%) of metal required at least 3.0 cycles. The developed method was applied successfully to the separation of palladium from synthetic water samples.
机译:该研究检测了各种因素对Pd(II)提取的影响影响,所述液液萃取机制,采用4-芳酰-3-苯基-5,从其酸性氯化物溶液中选择性分离钯(II) -oxoxolones(Ha),如3-苯基-4-(4-氟苯甲酰基)-5-异恶唑啉(HFBPI),3-苯基-4-苯甲酰基-5-异恶唑啉(HPBI)和3-苯基-4-(4 -toluoyl)-5-异恶唑酮(HTPI)。 HA的Pd(II)的提取强度按以下顺序:HFBPI> HPBI> HTPI,与其pKavalues观察到的HTPI相反。 HPBI用于将Pd(II)分离Pt(IV),Ni(II)和RH(III)金属离子,并按顺序计算它们的分离因子(SF):Pd / Ni(40±0.4)> PD / Pt(25±0.2)> Pd / RH(15±0.3> Rh / Ni(2.7±0.3)> Pt /Ni≈Rh/ Pt(1.7±0.2)。Pd(II)的装载和条带(1.12×还分别在CHCL3和1.0mol L-1HCl中使用1.0×10-3mol L-1HPBI检查10-4mol L-1。结果表明,所需的最大(97.5%)提取和解吸(89%)金属至少3.0个循环。成功应用于从合成水样中成功应用于钯的分离。

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