Abdelkader Benderrag, Imene Benabela, Lahouaria Annag, Boumediene Haddou, Mostefa Kameche, Ulrich Maschke
Laboratoire de Physico-Chimie des Matériaux, Catalyse et Environnement (LPCM-CE), Université des Sciences et de la Technologie d'Oran Mohamed Boudiaf (USTOMB), Oran, Algerie.
University of Oran 1, Es-Senia, Algerie.
Environ Technol. 2025 Apr;46(9):1348-1368. doi: 10.1080/09593330.2024.2386865. Epub 2024 Aug 26.
This study evaluated the reliability of the emulsified liquid membrane (ELM) extraction technique for recovering and separating metals, focusing on Nickel (Ni(II)) and Samarium (Sm(III)), both used in electrochemical devices. Key contributions include determining optimal conditions for creating a stable water-in-oil (W/O) emulsion. The optimal conditions were found to be a 5-minute emulsification time, 4 wt.% Span 80 surfactant concentration, a 1.6 volume ratio of the internal phase to the organic phase, 1 M H2SO4 concentration for the internal phase, a 40/160 volume ratio of the emulsion to the external phase, and kerosene as the diluent. Factors affecting the separation of Ni(II) and Sm(III) included the concentrations of the internal aqueous phase, surfactant, and extractant. Under these conditions, an equimolar mixture of Ni(II) and Sm(III) was extracted within 15 min. The study emphasized the importance of phase volume ratio and surfactant concentration for emulsion stability and extraction efficiency. The response surface method (RSM) and Box-Behnken design were used to optimize influential factors, with a modified quadratic model predicting extraction yields of 83.81% for Sm(III) and 15% for Ni(II). The study demonstrates that effective separation of Ni(II) and Sm(III) ions is achievable using this technique, providing valuable insights into efficient and selective metal ion extraction, contributing to the broader field of metal recovery and recycling technologies.
本研究评估了乳化液膜(ELM)萃取技术用于回收和分离金属的可靠性,重点关注用于电化学装置的镍(Ni(II))和钐(Sm(III))。主要贡献包括确定制备稳定油包水(W/O)乳液的最佳条件。发现最佳条件为:乳化时间5分钟、Span 80表面活性剂浓度4 wt.%、内相与有机相的体积比为1.6、内相H2SO4浓度为1 M、乳液与外相的体积比为40/160以及以煤油作为稀释剂。影响Ni(II)和Sm(III)分离的因素包括内水相、表面活性剂和萃取剂的浓度。在这些条件下,Ni(II)和Sm(III)的等摩尔混合物在15分钟内被萃取。该研究强调了相比和表面活性剂浓度对乳液稳定性和萃取效率的重要性。采用响应面法(RSM)和Box-Behnken设计对影响因素进行优化,修正的二次模型预测Sm(III)的萃取率为83.81%,Ni(II)的萃取率为15%。该研究表明,使用该技术可有效分离Ni(II)和Sm(III)离子,为高效、选择性金属离子萃取提供了有价值的见解,有助于金属回收和再循环技术这一更广泛领域的发展。