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FILTRATION OF BACTERIA AND YEAST BY ULTRASOUND-ENHANCED SEDIMENTATION

机译:通过超声增强沉降过滤细菌和酵母

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摘要

Continuous flow filtration of suspensions of eukaryotic cells by ultrasonic standing wave enhanced sedimentation has recently been reported. The filtration efficiency for Escherichia coli in such a filter has been characterized at frequencies of 1 and 3 MHz in the present work and compared with results for Saccharomyces cerevisiae. The yeast can be filtered at greater than 99% efficiency at a flow rate of 5 ml min(-1) at either frequency. The filtration efficiency of the smaller E. coli at 3 MHz is in excess of 80% at concentrations in the region of 10(10) ml(-1) but decreased at lower concentrations. However, E. coli in a mixed suspension with yeast were, because of inter-particle interactions, removed with the filtrate at an efficiency ranging from 80 to 50% over the eight orders of bacterial concentrations tested (down to 10(3) ml(-1)) at 3 MHz. Quantitative considerations show that poor filtration of pure suspensions of the smaller cells at the lower frequency arises because, at reasonable flow rates, the residence time is not sufficient for the cells to reach the pressure nodal cell concentration regions. The filtration efficiencies of both cell types are comparable at 3 MHz. It is suggested that the more comparable efficiencies arise because concentration regions are narrower at the high frequency and Stokes drag by the filter bulk flow inhibits sedimentation of the concentrated cells.
机译:最近报道了通过超声波驻波增强沉降的连续流过真核细胞悬浮液。在这种过滤器中的大肠杆菌的过滤效率已经表征在本作中的1和3MHz的频率,并与酿酒酵母的结果进行比较。酵母可以以5mL min(-1)的流速以大于99%的效率过滤。 3MHz的较小大肠杆菌的过滤效率在10(10)毫升(-1)区域的浓度下超过80%,但在较低浓度下降低。然而,由于颗粒间相互作用,用酵母的混合悬浮液中的大肠杆菌以80至50%的效率除去80-50%,在测试的八个次数(下降至10(3)mL( -1))在3 MHz。定量考虑表明,在较低频率下较小细胞的纯悬浮液过滤出来,因为在合理的流速下,停留时间不足以使细胞到达压力节节细胞浓度区域。两种细胞类型的过滤效率在3MHz上相当。建议出现更可比的效率,因为浓度区域在高频处较窄,并且滤波器堆积的滴度抑制浓缩细胞的沉降。

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