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Recovery of Anionic Surfactant Through Acidification/Ultrafiltration in a Micellar-Enhanced Ultrafiltration Process for Cobalt Removal

机译:在胶束增强的超滤过程中,通过酸化/超滤回收阴离子表面活性剂,以去除钴。

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In this article, removal of cobalt ions from synthetic liquid wastes aimed at surfactant and water reuse was carried out using a micellar-enhanced ultrafiltration (MEUF) process, adding an anionic surfactant (sodium dodecyl sulfate or SDS), with a lab-scale ceramic ultrafiltration membrane. In the first part of the study, ultrafiltration was studied to define the removal yields of cobalt from initial solutions. During these experiments, the effect of membrane size (1-210 kDa) and surfactant concentration (0-4-10 mM) was studied. Results showed a positive effect of surfactant on removal efficiency; maximum yields (90%), with an initial cobalt concentration of 9.7 mg/L, were obtained by using the highest level of surfactant. After ultrafiltration, separation of metal and recovery of surfactant was carried out by acidification with sulfuric acid followed by another step of ultrafiltration. Results of the second series of experiments showed that separation yields for cobalt 96% could be obtained after acidification to a pH=1. Regarding SDS recovery, as a consequence of acidification, the pore size of the membrane was enlarged so that SDS micelles could pass through the membrane, resulting in lower yields with respect to metal rejection. In this article, hence, the technical feasibility of MEUF combined with acidification to remove heavy metals and recover surfactant was demonstrated. This last step is important to reduce the high operative costs due to the use of surfactant.
机译:在本文中,使用胶束增强型超滤(MEUF)工艺从合成液体废料中去除了表面活性剂和水再利用中的钴离子,并加入了阴离子表面活性剂(十二烷基硫酸钠或SDS)以及实验室规模的陶瓷超滤膜。在研究的第一部分中,对超滤进行了研究,以定义从初始溶液中去除钴的产率。在这些实验中,研究了膜尺寸(1-210 kDa)和表面活性剂浓度(0-4-10 mM)的影响。结果表明表面活性剂对去除效率有积极影响;通过使用最高含量的表面活性剂可获得最大收率(> 90%),钴的初始浓度为9.7 mg / L。超滤后,通过用硫酸酸化,然后进行超滤的另一步骤,进行金属的分离和表面活性剂的回收。第二系列实验的结果表明,酸化至pH = 1后,钴的分离收率> 96%。关于SDS的回收,由于酸化的结果,膜的孔径增大,使得SDS胶束可以穿过膜,导致金属截留率降低。因此,在本文中,论证了MEUF与酸化结合以去除重金属和回收表面活性剂的技术可行性。最后一步对于减少由于使用表面活性剂而导致的高昂的运营成本非常重要。

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