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Effect of the length of dark storage following ultraviolet irradiation of Tetraselmis suecica and its implications for ballast water management

机译:紫外线对Tetraselmis suecica的暗藏时间的影响及其对压载水管理的意义

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摘要

Meeting the recent biological standards established by the Ballast Water Management Convention requires the application of ballast water treatment systems; ultraviolet irradiation is a frequently used option. However, organisms can repair the damage caused by ultraviolet irradiation primarily with photo-repair mechanisms that are dependent on the availability of light. The objective of this study is to quantify the impact of dark storage following ultraviolet irradiation on the viability of the microalgae Tetraselmis suecica. Results showed that one day of dark storage after ultraviolet irradiation enhanced the inactivation rate by 50% with respect to the absence of dark storage and increased up to the 84% with five days of dark storage. These results are consistent with photorepair, mostly in the first two days, prevented in the dark. The dose required to inactivate a determined ratio of organisms was correlated with the length of the dark post-treatment according to an inverse proportional function. This correlation may help to optimize the operation of ultraviolet ballast water treatment systems. Further, the results show that growth assays can detect organisms that are capable of repair after treatment with UV.
机译:满足《压载水管理公约》确立的最新生物学标准,需要应用压载水处理系统;紫外线照射是一种常用的选择。然而,有机体可以主要通过依赖于光的可用性的光修复机制来修复紫外线辐射造成的损害。这项研究的目的是量化紫外线辐照后黑暗贮存对微藻Tetraselmis suecica生存力的影响。结果表明,相对于不存在黑暗存储,紫外线照射后黑暗存储的灭活率使灭活率提高了50%,而在黑暗存储5天时,灭活率提高了84%。这些结果与光修复相符,主要是在前两天在黑暗中防止。根据反比例函数,使确定比例的生物失活所需的剂量与黑暗后处理的长度相关。这种相关性可以帮助优化紫外线压载水处理系统的运行。此外,结果表明,生长试验可以检测到在用紫外线处理后能够修复的生物。

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