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Effects of ultrasound on Microcystis aeruginosa cell destruction and release of intracellular organic matter

机译:超声对微囊气铜绿假单胞菌破坏及细胞内有机物释放的影响

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摘要

Harmful algal blooms negatively impact ecosystems and threaten drinking water sources. One potential method to effectively counteract algal blooms is ultrasonication. However, ultrasonication can easily lead to the release of intracellular organic matter (IOM). The purpose of this study was to investigate the relationship between the destruction of algal cells and IOM release at different ultrasound frequencies. Microcystis aeruginosa cells were ultrasonicated at 20 kHz with an intensity of 0.038 W/mL, 740 kHz with an intensity of 0.113 W/mL, and 1120 kHz with an intensity of 0.108 W/mL. The IOM release was detected by fluorescence spectroscopy in addition to the more commonly used haemocytometry and optical density. After ultrasonication for 15 min, the removal rate of algal cells reached 10.5% at 20 kHz, 9.46% at 740 kHz, and 35.4% at 1120 kHz. The 20 kHz and 740 kHz ultrasound caused local damage to algal cells and then disrupted them, whereas the 1120 kHz ultrasound directly disrupted most algal cells. The extracellular organic matter (EOM), which was increased by ultrasonication, mainly consisted of protein-like compounds, chlorophyll, and a small amount of humic-like substances. Gas vacuoles had been destructed before the cells were broken, as indicated by the decrease of cell size and the wrinkles on the cell surface. Moreover, the removal of algae cells while upholding integrity is more conducive to the safety of the water environment.
机译:有害的藻类绽放对生态系统产生负面影响并威胁饮用水来源。有效抵消藻类盛开的一种潜在方法是超声波。然而,超声易于导致细胞内有机物质(IOM)的释放。本研究的目的是研究不同超声频率的藻类细胞和IOM释放之间的关系。将微囊体铜绿假单胞菌细胞以20kHz超声化,强度为0.038W / mL,740kHz,强度为0.113W / mL,强度为0.108W / ml。除了更常见的血管症和光学密度之外,通过荧光光谱检测IOM释放。超声处理15分钟后,藻类细胞的去除率在20kHz的20 kHz下达到10.5%,740 kHz为9.46%,1120 kHz为35.4%。 20 kHz和740 kHz超声引起栖藻细胞的局部损伤,然后破坏它们,而1120 kHz超声直接破坏大多数藻类细胞。通过超声波增加的细胞外有机物(EOM)主要由蛋白质化合物,叶绿素和少量腐殖质的物质组成。在细胞破裂之前已经破坏了气体液泡,如细胞尺寸的降低和细胞表面上的皱纹所示。此外,除了坚持完整性的同时去除藻类细胞,更有利于水环境的安全性。

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