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首页> 外文期刊>Water, Air, and Soil Pollution >Use of Hydrodynamic Cavitation for Algae Removal: Effect on the Inactivation of Microalgae Belonging to Genus Scenedesmus
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Use of Hydrodynamic Cavitation for Algae Removal: Effect on the Inactivation of Microalgae Belonging to Genus Scenedesmus

机译:水力空化用于除藻的应用:对属于藻类的微藻灭活的影响

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Excessive algae growth has generated conflicts on the use of water supplies; therefore, the focus on new technologies to remove algae from water bodies is demanding. The aim of the present study was to assess the effect of hydrodynamic cavitation on the inactivation of microalgae belonging to genus Scenedesmus. A laboratory-scale experimental apparatus was built in order to accomplish this goal; it consisted of a Venturi device designed to generate the cavitation phenomenon. Suspended microalgae samples were treated for 60 minutes under different cavitation intensities (cavitation number-Cv-ranging from 0.17 to 0.27). Results evidenced that microalgae decay over time can be modeled through first-order kinetics. The maximum removal efficiency (85%) was recorded at the highest cavitation intensity (Cv = 0.17). The removal efficiency decreased as the cavitation number increased. Hydrodynamic cavitation was effective in inactivating Scenedesmus; it produced irreversible damages to cell morphology such as flotation spines removal, cell wall lesions, cytoplasm extravasation, and cavity formation. Assumingly, hydrodynamic cavitation has great potential to treat eutrophic water bodies. Furthermore, it represents a sustainable removal technique, since it does not produce secondary pollution.
机译:藻类的过度生长已经在水的使用上产生了冲突。因此,要求将重点放在从水体中去除藻类的新技术上。本研究的目的是评估水力空化对Scendesmus属微藻灭活的影响。为了实现这一目标,建立了实验室规模的实验设备。它由设计为产生气蚀现象的文丘里装置组成。悬浮的微藻样品在不同的空化强度下处理60分钟(空化数Cv在0.17至0.27之间)。结果表明,微藻类随时间的衰减可以通过一阶动力学建模。在最高的气蚀强度(Cv = 0.17)时记录到最大去除效率(85%)。随着气蚀次数的增加,去除效率降低。水力空化能有效地灭活景天;它对细胞形态产生不可逆转的损害,例如去除棘突,细胞壁病变,细胞质外渗和形成空腔。据推测,水力空化在治疗富营养化水体方面具有巨大潜力。此外,由于它不会产生二次污染,因此代表了一种可持续的清除技术。

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