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Evaluation of ultraviolet disinfection of microalgae by growth modeling: application to ballast water treatment

机译:生长模型对微藻紫外线消毒的评价:在压载水处理中的应用

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Ultraviolet disinfection is a frequent option for eliminating viable organisms in ballast water to fulfill international and national regulations. The objective of this work is to evaluate the reduction of microalgae able to reproduce after UV irradiation, based on their growth features. A monoculture of microalgae Tisochrysis lutea was irradiated with different ultraviolet doses (UV-C 254 nm) by a flow-through reactor. A replicate of each treated sample was held in the dark for 5 days simulating a treatment during the ballasting; another replicate was incubated directly under the light, corresponding to the treatment application during de-ballasting. Periodic measurements of cell density were taken in order to obtain the corresponding growth curves. Irradiated samples depicted a regrowth following a logistic curve in concordance with the applied UV dose. By modeling these curves, it is possible to obtain the initial concentration of organisms able to reproduce for each applied UV dose, thus obtaining the dose-survival profiles, needed to determine the disinfection kinetics. These dose-survival profiles enable detection of a synergic effect between the ultraviolet irradiation and a subsequent dark period; in this sense, the UV dose applied during the ballasting operation and subsequent dark storage exerts a strong influence on microalgae survival. The proposed methodology, based on growth modeling, established a framework for comparing the UV disinfection by different devices and technologies on target organisms. This procedure may also assist the understanding of the evolution of treated organisms in more complex assemblages such as those that exist in natural ballast water.
机译:紫外线消毒是消除压载水中的活生物以满足国际和国家法规的常见选择。这项工作的目的是基于微藻的生长特征,评估其在紫外线照射后能够繁殖的能力。通过流通式反应器以不同的紫外线剂量(UV-C 254 nm)照射微藻黄褐线虫的单培养物。在压载过程中模拟处理,将每个处理过的样品在黑暗中放置5天。另一个复制品直接在灯光下孵育,这与去压载过程中的处理应用相对应。定期测量细胞密度以获得相应的生长曲线。辐照的样品描绘了与所施加的紫外线剂量一致的符合逻辑曲线的再生长。通过对这些曲线进行建模,可以获得对于每个施加的紫外线剂量能够繁殖的生物体的初始浓度,从而获得确定消毒动力学所需的剂量生存曲线。这些剂量-存活曲线可检测紫外线照射与随后的黑暗期之间的协同作用;从这个意义上讲,在压载操作和随后的黑暗存储过程中施加的紫外线剂量对微藻生存有很大影响。所提出的方法基于生长模型,建立了一个框架,用于比较不同设备和技术对目标生物进行的紫外线消毒。该程序还可以帮助理解更复杂的组合(例如天然压舱水中存在的组合)中经过处理的生物的进化。

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