Daglish James, Blacker A John, de Boer Gregory, Russell Stephen J, Tausif Muhammad, Hose David R J, Parsons Anna R, Crampton Alex, Kapur Nikil
School of Mechanical Engineering, University of Leeds, Leeds LS2 9JT, United Kingdom.
School of Chemistry, University of Leeds, Leeds LS2 9JT, United Kingdom.
Org Process Res Dev. 2024 May 6;28(5):1979-1989. doi: 10.1021/acs.oprd.4c00012. eCollection 2024 May 17.
Presented here is the design and performance of a coalescing liquid-liquid filter, based on low-cost and readily available meltblown nonwoven substrates for separation of immiscible phases. The performance of the coalescer was determined across three broad classes of fluid mixtures: (i) immiscible organic/aqueous systems, (ii) a surfactant laden organic/aqueous system with modification of the type of emulsion and interfacial surface tension through the addition of sodium chloride, and (iii) a water-acetone/toluene system. The first two classes demonstrated good performance of the equipment in effecting separation, including the separation of a complex emulsion system for which a membrane separator, operating through transport of a preferentially wetting fluid through the membrane, failed entirely. The third system was used to demonstrate the performance of the separator within a multistage liquid-liquid counterflow extraction system. The performance, robust nature, and scalability of coalescing filters should mean that this approach is routinely considered for liquid-liquid separations and extractions within the fine chemical and pharmaceutical industry.
本文介绍了一种聚结式液-液过滤器的设计与性能,该过滤器基于低成本且易于获得的熔喷非织造基材,用于分离不混溶相。在三大类流体混合物中测定了聚结器的性能:(i)不混溶的有机/水体系;(ii)通过添加氯化钠改变乳液类型和界面表面张力的含表面活性剂的有机/水体系;(iii)水-丙酮/甲苯体系。前两类证明了该设备在实现分离方面的良好性能,包括分离一种复杂的乳液体系,而通过优先润湿流体透过膜进行操作的膜分离器对该体系完全无法分离。第三个体系用于展示分离器在多级液-液逆流萃取系统中的性能。聚结过滤器的性能、坚固性和可扩展性意味着在精细化工和制药行业的液-液分离和萃取中应常规考虑这种方法。