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Removal of chromium(III) from aqueous solutions using an advanced extraction technique (AET)

机译:使用先进的萃取技术(AET)从水溶液中去除铬(III)

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The removal of chromium(III) from aqueous solution using an advanced extraction technique (AET) such as emulsion liquid membrane (ELM) was investigated. Tri-butyl phosphate (TBP) and tri-n-octylphosphine oxide (TOPO) as carriers, commercial kerosene as an organic solvent, sorbitan monooleate (Span 80) as hydrophobic surfactant agent, sodium hydroxide, and sulfuric acid or ammonium persulfate as a stripping phase were used. The influence of the carrier concentration (5-30% w/w), surfactant (2-8% w/w), and external phase (5-50mg/L), contact time, internal phase type (H2SO4, (NH4)S2O8 or NaOH), stirring speed (100-1200rpm), W/O emulsion/external aqueous phase volume ratio (0.05-1) and the diluent type (hexane, heptane, and kerosene) on the extraction process was investigated. The obtained results showed that, at the optimum condition, practically all the chromium(III) ions were removed from the feed solution during the first 25min of operational time. The best TBP/TOPO ratio in the organic phase that conducted to very good removal efficiency (99%) and excellent emulsion stability was 90/10% (w/w). The use of ultrasound irradiations in the emulsification step enhanced the emulsion stability. The US-ELM process appears to be a suitable alternative to develop a method for heavy metal ions removal from aqueous solution, and has been identified to give highest heavy metals recovery.
机译:研究了使用先进的萃取技术(AET),例如乳状液膜(ELM)从水溶液中去除铬(III)。磷酸三丁酯(TBP)和三正辛基膦氧化物(TOPO)作为载体,商业煤油作为有机溶剂,脱水山梨糖醇单油酸酯(Span 80)作为疏水性表面活性剂,氢氧化钠,硫酸或过硫酸铵作为汽提剂相。载流子浓度(5-30%w / w),表面活性剂(2-8%w / w)和外相(5-50mg / L),接触时间,内相类型(H2SO4,(NH4)研究了S2O8或NaOH),搅拌速度(100-1200rpm),W / O乳剂/外部水相体积比(0.05-1)和萃取过程中的稀释剂类型(己烷,庚烷和煤油)。获得的结果表明,在最佳条件下,在操作的前25分钟内,几乎所有的铬(III)离子都从进料溶液中除去。有机相中的最佳TBP / TOPO比达到了非常好的去除效率(99%)和极好的乳液稳定性,为90/10%(w / w)。在乳化步骤中使用超声辐射增强了乳剂的稳定性。 US-ELM工艺似乎是开发从水溶液中去除重金属离子的方法的合适替代方法,并且已被确定可提供最高的重金属回收率。

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