首页> 外文会议>Pulsed Power Conference (PPC), 2011 IEEE >A comparison of the efficacy of pulsed UV light and pulsed plasma gas-discharge systems for the novel inactivation of Cryptosporidium spp. and other clinically relevant microorganisms in drinking water
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A comparison of the efficacy of pulsed UV light and pulsed plasma gas-discharge systems for the novel inactivation of Cryptosporidium spp. and other clinically relevant microorganisms in drinking water

机译:脉冲紫外线和脉冲等离子体气体放电系统对新型隐孢子虫灭活效果的比较。和饮用水中其他与临床相关的微生物

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This frontier study investigated the timely development of pulsed ultraviolet light (PUV) and pulsed-plasma gas-discharge (PPGD) technologies for the destruction of harmful Cryptosporidium oocysts and other problematical microorganisms in water. This constitutes the first study to report on the use of these pulsed power electrotechnologies (PPET) for the destruction of chlorine resistant Cryptosporidium oocysts, which have caused waterborne illness outbreaks worldwide. By accumulating energy over relatively long time periods, and by dissipating this energy in ultrashort pulses, the energy remains constant thus offering a radically new approach to energy delivery that have been shown to be orders of magnitude more efficient compared to using conventional decontamination approaches. Critical inter-related factors affecting the effective and repeatable decontamination performance of PUV and PPGD were identified during this study. The PUV approach proved superior to the PPGD system for treating similar artificially spiked samples in water, which is a positive finding considering the fact that commensurate toxicological investigations carried out in this study revealed that PPGD-treated water produced unwanted toxic end-points. This innovative, technology-driven, project generated critical data that will narrow the gap between the underpinning science/engineering and operational use in future scaled-up water treatment plant studies. It will add considerably to critical data facilitating microbiological predictive modeling and will also impact positively on public health by safeguarding water quality and supplies.
机译:这项前沿研究调查了及时开发脉冲紫外线(PUV)和脉冲等离子体气体放电(PPGD)技术以破坏水中有害隐孢子虫卵囊和其他有问题的微生物的情况。这是首次报道使用这些脉冲功率电子技术(PPET)破坏耐氯隐孢子虫卵囊的研究,该隐孢子虫卵囊引起了世界范围内水传播疾病的爆发。通过在相对较长的时间段内积累能量,并通过在超短脉冲中耗散能量,该能量保持恒定,从而提供了一种全新的能量传输方法,与使用传统的去污方法相比,该方法已被证明效率更高。在这项研究中确定了影响PUV和PPGD的有效和可重复去污性能的关键相互关联的因素。事实证明,PUV方法优于PPGD系统,可处理水中类似的人工加标样品,考虑到该研究中进行的相应毒理学研究表明PPGD处理过的水会产生有害的毒性终点,因此这是一个积极发现。这个创新的,技术驱动的项目生成了关键数据,这些数据将缩小未来扩大规模的水处理厂研究的基础科学/工程和运营用途之间的差距。它将大大增加关键数据,促进微生物预测建模,还将通过保障水质和供水对公共卫生产生积极影响。

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