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Preventive inhibition mechanism of algae by ultrasound based on analysis of physiological characteristics

机译:基于生理特性分析的超声波对藻类的抑制作用机理

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摘要

Blooms of cyanobacteria cause ecological imbalance, killing a large number of water plants, fish and other aquatic organisms. In addition to easily cause algae toxin emission, the traditional processing method has drawbacks of short period of time and high energy consumption. Ultrasonic technology, as the environmental and effective method, is put forward to control the algae biomass. However, most studies based on inhibitory effect of ultrasound irradiation on algae were conducted at the algae photosynthesis system, the physiological activity of other indicators was not in-depth studied, and most of which were the short-term effects with unknown timeliness. The objective of this paper was to explore the suitable ultrasonic parameters to remove algae and the influence of ultrasonic frequency and power on physiological activity both from physiological activity and biomass control of algae cells. The results showed that the physiological and metabolic activities of algae were lower and the number of intact cells decreased after ultrasonic radiation. The proportion of damaged cells was proportional to the ultrasonic power density. DNA fragments were not detected after ultrasonic irradiation and DNA chain structure remained complete. The effects of ultrasonic parameters on algae density were also studied. When the power density was 0.02 W/mL, the effect of treatment under ultrasonic frequency of 40 kHz was better than that of 20 kHz and 100 kHz. It is suggested to use ultrasonic treatment with the frequency of 40 kHz and power density of 0.0245 W/mL to treat the blue-green algae.
机译:蓝细菌的繁殖会引起生态失衡,杀死大量水生植物,鱼类和其他水生生物。传统的加工方法除了容易引起藻类毒素的排放外,还有时间短,能耗高的缺点。提出了超声波技术作为控制藻类生物量的一种环境有效的方法。然而,大多数基于超声辐射对藻类抑制作用的研究都是在藻类光合作用系统上进行的,其他指标的生理活性并未得到深入研究,其中大多数是短期的,且时效性未知。本文的目的是探索从藻类细胞的生理活性和生物量控制中去除藻类的合适超声参数以及超声频率和功率对生理活性的影响。结果表明,超声波照射后藻类的生理和代谢活性降低,完整细胞数量减少。受损细胞的比例与超声功率密度成正比。超声照射后未检测到DNA片段,DNA链结构保持完整。还研究了超声参数对藻类密度的影响。当功率密度为0.02 W / mL时,在40 kHz超声频率下的处理效果优于20 kHz和100 kHz。建议使用频率为40 kHz且功率密度为0.0245 W / mL的超声波处理蓝绿藻。

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