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首页> 外文期刊>Environmental Technology >Recovery of Cryptosporidium and Giardia organisms from surface water by counter-flow refining microfiltration
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Recovery of Cryptosporidium and Giardia organisms from surface water by counter-flow refining microfiltration

机译:通过逆流精制微滤从地表水中回收隐孢子虫和贾第鞭毛虫生物

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摘要

As waterborne parasitic cryptospondiosis and giardiasis outbreaks continue globally, monitoring of Cryptosporidiumparvum and Giardia lamblia in surface water continues to be challenging. Lack of non-clogging and high-efficiency methods for recovery of C. parvum oocysts and G. lamblia cysts in environmental water strongly limits the sensitivity of detection methods for these protozoan organisms. In this work, the Counter-Flow Micro-Refinery (CFMR) system was developed by employing the novel counter-flow microfiltration principle to enrich (oo)cysts for subsequent analytical purposes. The CFMR system was constructed with multiple counter-flow concentration units that were arranged into two refining levels. By use of different numbers of units, the CFMR offered an adjustable concentration ratio allowing the concentration of 10 L and 100L to hundreds of mL with no recirculation processing. With spiked samples, recovery of 81.3% oocysts and 86.2% cysts at a variance of <7% was achieved for concentrations as low as 0.5-100 organisms L~(-1). The recovery efficiency showed consistent for a wide range of water turbidities as well as different sample volumes. No significant clogging has been observed in the experiments. Moreover, the refining filter was able to enrich and separate oocysts and cysts in water, simultaneously. This work verifies a feasible solution for recovering C. parvum oocysts and G. lamblia cysts in large-volume surface waters. The refining system has potential to be a high-efficiency monitoring tool when combined with proper analytical detection methods.
机译:随着全球范围内水源性寄生性脊椎病和贾第鞭毛虫病的爆发,监测地表水中的隐孢子虫和贾第鞭毛虫仍然具有挑战性。在环境水中缺乏无阻塞和高效的方法来回收小球藻卵囊和兰氏囊肿,这严重限制了对这些原生动物生物的检测方法的敏感性。在这项工作中,逆流微精炼厂(CFMR)系统是通过采用新型逆流微滤原理来富集(oo)囊肿用于后续分析目的而开发的。 CFMR系统由多个逆流浓缩装置构成,这些装置被分为两个精炼层。通过使用不同数量的单位,CFMR提供了可调节的浓度比,从而无需再循环处理即可将10 L和100 L的浓度浓缩至数百mL。在低浓度的L〜(-1)细菌中,加标样品的回收率可达到81.3%的卵囊和86.2%的囊肿,变异率小于7%。对于广泛的水浊度以及不同的样品量,其回收率均显示出一致的结果。在实验中未观察到明显的堵塞。此外,精制过滤器能够同时富集和分离水中的卵囊和囊肿。这项工作验证了一种可行的解决方案,用于回收大体积地表水中的小球藻卵囊和兰氏囊肿。当与适当的分析检测方法结合使用时,精炼系统有可能成为一种高效的监测工具。

著录项

  • 来源
    《Environmental Technology》 |2013年第20期|2541-2551|共11页
  • 作者单位

    Department of Micro and Nano Systems Technology, Faculty of Technology and Maritime Sciences, Vestfold University College, Tonsberg, Norway;

    Department of Micro and Nano Systems Technology, Faculty of Technology and Maritime Sciences, Vestfold University College, Tonsberg, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    counter-flow filtration; particle separation; surface water; recovery; protozoa;

    机译:逆流过滤;颗粒分离地表水;复苏;原生动物;

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