Nechifor Gheorghe, Păncescu Florentina Mihaela, Albu Paul Constantin, Grosu Alexandra Raluca, Oprea Ovidiu, Tanczos Szidonia-Katalin, Bungău Constantin, Grosu Vlad-Alexandru, Ioan Mihail-Răzvan, Nechifor Aurelia Cristina
Analytical Chemistry and Environmental Engineering Department, University Politehnica of Bucharest, 1-7 Polizu St., 011061 Bucharest, Romania.
Radioisotopes and Radiation Metrology Department (DRMR), "Horia Hulubei" National Institute for R&D in Physics and Nuclear Engineering (IFIN-HH), 30 Reactorului St., 023465 Măgurele, Romania.
Membranes (Basel). 2021 Nov 27;11(12):936. doi: 10.3390/membranes11120936.
This paper presents a transport and recovery of silver ions through bulk liquid membranes based on -decanol using as carriers 10-undecylenic acid and 10-undecylenyl alcohol. The transport of silver ions across membranes has been studied in the presence of two types of magnetic oxide nanoparticles obtained by the electrochemical method with iron electrodes in the electrolyte with and without silver ions, which act as promoters of turbulence in the membrane. Separation of silver ions by bulk liquid membranes using 10-undecylenic acid and 10-undecylenyl alcohol as carriers were performed by comparison with lead ions. The configuration of the separation module has been specially designed for the chosen separation process. Convective-generating magnetic nanoparticles were characterized in terms of the morphological and structural points of view: scanning electron microscopy (SEM), high-resolution SEM (HR-SEM), energy dispersive spectroscopy analysis (EDAX), Fourier Transform InfraRed (FTIR) spectroscopy, thermal gravimetric analysis (TGA), differential scanning calorimetry and magnetization. The process performance (flux and selectivity) was tested were tested for silver ion transport and separation through -decanol liquid membranes with selected carriers. Under the conditions of the optimized experimental results (pH = 7 of the source phase, pH = 1 of the receiving phase, flow rate of 30 mL/min for the source phase and 9 mL/min for the receiving phase, 150 rot/min agitation of magnetic nanoparticles) separation efficiencies of silver ions of over 90% were obtained for the transport of undecenoic acid and about 80% for undecylenyl alcohol.
本文介绍了基于癸醇的支撑液膜对银离子的传输与回收,使用10-十一碳烯酸和10-十一碳烯醇作为载体。在有两种通过电化学方法用铁电极在含或不含银离子的电解质中获得的磁性氧化物纳米颗粒存在的情况下,研究了银离子跨膜的传输,这些纳米颗粒在膜中起到湍流促进剂的作用。通过与铅离子比较,进行了使用10-十一碳烯酸和10-十一碳烯醇作为载体的支撑液膜对银离子的分离。分离模块的配置是专门为所选分离过程设计的。从形态和结构角度对产生对流的磁性纳米颗粒进行了表征:扫描电子显微镜(SEM)、高分辨率SEM(HR-SEM)、能量色散光谱分析(EDAX)、傅里叶变换红外(FTIR)光谱、热重分析(TGA)、差示扫描量热法和磁化。测试了通过含选定载体的癸醇液膜对银离子传输和分离的过程性能(通量和选择性)。在优化实验结果的条件下(源相pH = 7,接收相pH = 1,源相流速30 mL/min,接收相流速9 mL/min,磁性纳米颗粒搅拌速度150转/分钟),对于十一碳烯酸传输,银离子的分离效率超过90%,对于十一碳烯醇约为80%。