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A multilayer concentric filter device to diminish clogging for separation of particles and microalgae based on size

机译:一种多层同心过滤装置,可根据尺寸减少堵塞,以分离颗粒和微藻

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摘要

Microalgae species have great economic importance; they are a source of medicines, health foods, animal feeds, industrial pigments, cosmetic additives and biodiesel. Specific microalgae species collected from the environment must be isolated for examination and further application, but their varied size and culture conditions make their isolation using conventional methods, such as filtration, streaking plate and flow cytometric sorting, labour-intensive and costly. A separation device based on size is one of the most rapid, simple and inexpensive methods to separate microalgae, but this approach encounters major disadvantages of clogging and multiple filtration steps when the size of microalgae varies over a wide range. In this work, we propose a multilayer concentric filter device with varied pore size and is driven by a centrifugation force. The device, which includes multiple filter layers, was employed to separate a heterogeneous population of microparticles into several subpopulations by filtration in one step. A cross-flow to attenuate prospective clogging was generated by altering the rate of rotation instantly through the relative motion between the fluid and the filter according to the structural design of the device. Mixed microparticles of varied size were tested to demonstrate that clogging was significantly suppressed due to a highly efficient separation. Microalgae in a heterogeneous population collected from an environmental soil collection were separated and enriched into four subpopulations according to size in a one step filtration process. A microalgae sample contaminated with bacteria and insect eggs was also tested to prove the decontamination capability of the device.
机译:微藻物种具有重要的经济意义;它们是药品,保健食品,动物饲料,工业颜料,化妆品添加剂和生物柴油的来源。必须分离从环境中收集的特定微藻物种,以进行检查和进一步应用,但是它们的大小和培养条件不同,因此需要使用常规方法(例如过滤,划线板和流式细胞仪分选)进行分离,这需要劳动强度大且成本高。基于尺寸的分离装置是分离微藻的最快速,简单和廉价的方法之一,但是当微藻的尺寸在很大范围内变化时,这种方法会遇到堵塞和多次过滤步骤的主要缺点。在这项工作中,我们提出了一种具有可变孔径且受离心力驱动的多层同心过滤装置。该装置包括多个过滤层,用于通过一步过滤将异质微粒群体分离为几个亚群。根据设备的结构设计,通过改变流体和过滤器之间的相对运动,可以立即改变旋转速度,从而产生减小预期堵塞的错流。测试了各种尺寸的混合微粒,以证明由于高效分离,堵塞得到了显着抑制。从环境土壤收集物中收集的异质种群中的微藻在第一步过滤过程中根据大小被分离并富集为四个亚群。还测试了被细菌和昆虫卵污染的微藻样品,以证明该设备的去污能力。

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