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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Extraction of lead ions from aqueous solution by co-stabilization mechanisms of magnetic Fe2O3 particles and nonionic surfactants in emulsion liquid membrane
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Extraction of lead ions from aqueous solution by co-stabilization mechanisms of magnetic Fe2O3 particles and nonionic surfactants in emulsion liquid membrane

机译:乳液液膜中磁性Fe2O3颗粒的共稳定机制与水溶液中铅离子提取

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摘要

A study of the impact of nonionic surfactants (span 80) on the emulsification of kerosene in the presence of magnetic alpha-Fe2O3 particles and the stability of the formed emulsions was carried out. Generally, emulsion liquid membrane (ELM) contains Bis-2-ethylhexyl phosphoric acid (D2EHPA) as a carrier, H2SO4 as an internal phase, kerosene as organic phase stabilized by an emulsifier, and co-emulsifier, which have been utilized to investigate its ability in the extraction of lead (Pb) from aqueous solutions. Further, the influence of experimental parameters affecting ELM stability and its extraction efficiencies such as emulsification time, homogenizer speed, surfactant concentration, Fe2O3-span 80 ratio, H2SO4 concentration, and the volume ratio of oil to internal phase (O/I), was examined. Additionally, investigation of the pH of feed solution, extractant concentration, agitating speed, the ratio of emulsion to the external phase (EM/E), initial lead (Pb) concentration, and contact time were carried out. The results confirmed the existence of co-stabilization strategy, which leads to the stability of the emulsion and improvement in the extraction efficiency of lead ions (Pb) to 97.2% after 8.0 min of mixing time under best-operating conditions with 0.3% membrane breakage.
机译:进行了非离子表面活性剂(跨度80)对磁性α-Fe 2 O 3颗粒乳化物乳化的影响及形成的乳液的稳定性。通常,乳液液体膜(ELM)含有双-2-乙基己基磷酸(D2ehPA)作为载体,H 2 SO 4作为内部相,作为通过乳化剂稳定的有机相的煤油,并且共乳化剂已被用于研究其从水溶液中提取铅(Pb)的能力。此外,实验参数影响ELM稳定性的影响及其提取效率,例如乳化时间,均化器速度,表面活性剂浓度,Fe2O3跨度80比,H 2 SO 4浓度和油的体积比(O / I)是检查。另外,对进料溶液的pH,提取物浓度,搅拌速度,乳液与外部相(EM / E)的比率进行研究进行,进行初始铅(Pb)浓度和接触时间。结果证实存在共稳定策略,这导致乳液的稳定性和提高铅离子(Pb)的提取效率在最佳操作条件下在8.0分钟内搅拌时间后的铅离子(Pb)至97.2%。 。

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