首页> 外文期刊>Journal of Microbiological Methods >The use of hollow fiber dialysis filters operated in axial flow mode for recovery of microorganisms in large volume water samples with high loadings of particulate matter
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The use of hollow fiber dialysis filters operated in axial flow mode for recovery of microorganisms in large volume water samples with high loadings of particulate matter

机译:中空纤维透析过滤器在轴向流动模式下操作,用于在大量水样中回收微生物,具有高负荷的颗粒物质

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Ultrafiltration concentration of microorganisms in large volume water samples containing high levels of particulate matter was evaluated in a proof of concept study. The organisms tested were Bacillus atrophaeus subspecies globigii spores and MS2 bacteriophage. To produce the large volume samples, fresh water sediment of a known particle size was added to 51 l of tap water. Five different concentrations of particulate matter were studied: 0, 50, 100, 150 and 750 mg solids/l. The concentration procedure used a dialysis filter as the ultrafilter configured for axial flow, either with or without recirculation. The target number of organisms spiked was 1 x 10(5) of either spores or bacteriophage per 51 l. After concentration, the filters were dissected to retrieve the fibers which were then washed using surfactant solution which was then analyzed for the target organisms. Two washes of the filter fibers were carried out sequentially. For axial flow with recirculation, the first wash produced statistically greater recovery of B. globigii spores (26-40% of spike) compared to the second wash (8-13% of spike). Total recovery (the sum of the recoveries for the first and second washes) ranged from 35 to 53%. Recovery increased as the solids level increased from 0 to 150 mg solids/l. Recovery at the 100 and 150 mg solids/L loadings was statistically higher at the P .05 level than recovery at 0 mg/L solids. At 150 mg solids/L, axial flow without recirculation (dead end) yielded lower recovery than axial flow with recirculation, however the difference was not significant at the P .05 level. Recovery of B. globigii at 750 mg solids/L averaged 38% using dead end axial flow. The average recovery of MS2 bacteriophage was 45% at a solids concentration of 150 mg/L using axial flow with recirculation. PhiX174 and Phi8 were also studied, however these bacteriophage appeared to be inactivated in the matrix of concentrated wash water. One hundred liters of water containing 750 mg solids/L was concentrated using dead end axial flow, and only minimal problems with filter clogging were observed. Results described herein suggest axial flow ultrafiltration is an effective concentration method for microorganisms in water containing high levels of particulate matter.
机译:在概念研究证明中评估了含有高水平颗粒物质的大量水样中微生物的超滤浓度。经过测试的生物是芽孢杆菌患者亚种球杆孢子和MS2噬菌体。为了产生大体积样品,将已知的粒度的淡水沉积物加入到51μl自来水中。研究了五种不同浓度的颗粒物质:0,50,100,150和750mg固体/ L。浓缩过程使用透析过滤器作为配置用于轴向流动的超滤器,无论是在还是没有再循环。尖刺的靶数的孢子或每51升的孢子或噬菌体的1×10(5)。浓缩后,不沉积过滤器以检索使用表面活性剂溶液洗涤的纤维,然后分析靶生物。依次进行两种过滤纤维的洗涤纤维。对于再循环的轴向流动,与第二次洗涤(8-13%的尖峰)相比,第一洗涤物产生统计上更大的B.球蛋白孢子(26-40%的尖峰)。全恢复(第一和第二次洗涤的回收率)的总额范围为35至53%。随着固体水平从0增加到150mg固体/ L,回收率增加。在100和150mg固体/ L负载下恢复在P&LT LT; .05水平比0mg / L固体恢复。在150mg固体/ L中,没有再循环(死端)的轴向流量比具有再循环的轴向流量较低,但在P&LT LT; .05级别。恢复B. Globigii在750 mg固体/ L使用死端轴向流量平均为38%。使用轴向流量,MS2噬菌体的平均回收率为150mg / L的固体浓度为150mg / l。还研究了PHIX174和PHI8,然而这些噬菌体似乎在浓浓洗涤水的基质中灭活。使用死端轴向流动浓缩含有750mg固体/ L的100升水,并且观察到过滤器堵塞的最小问题。本文所述的结果表明轴向流动超滤是含有高水平颗粒物质的水中微生物的有效浓度方法。

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