Derivation of Ultrasonic Irradiation Condition to Inhibit the Growth of Microcystis Aeruginosa

So Ye Jang, J. Joo, E. Kang, Hyeon Woo Go, Jeong-Min Park, Moo Il Jeong, Dong Ho Lee
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Abstract

Objectives : The optimal ultrasonic irradiation conditions were derived through laboratory-scale experiments to evaluate growth inhibition effect of Microcystis aeruginosa (M. aeruginosa), which is the main specie of Cyanobacterial Harmful Algal Blooms (CyanoHABs) in Republic of Korea.Methods : The experiment was conducted by changing ultrasonic frequency, intensity, and initial cell concentration to observe the growth inhibition effect of M. aerginosa. The experiment was performed using shielded acrylic reactor [20 cm (W) × 20 cm (L) × 30 cm (H)]. Experiments were conducted using large volume (7.2 L) of water samples with high concentrations of M. aeruginosa, and the ultrasonic irradiation time was fixed at 3 hours.Results and Discussion : In all experiments, pictorial view of M. aeruginosa samples, chlorophyll-a (Chl-a) and cell number of M. aerginosa were observed. As a result of ultrasonic irradiation on M. aeruginosa, the decrease in both Chl-a concentration and cell number of M. aeruginosa was monitored after sonication compared to the decrease during sonication. In addition, the rebound growth was confirmed after certain period of growth inhibition of M. aeruginosa. The optimal ultrasonic irradiation conditions for the growth inhibition of M. aeruginosa were obtained at the lower frequency and the higher intensity. Whereas algal growth inhibition was observed with high concentration (4.5 × 106 cells mL-1) of M. aeruginosa, algal growth inhibition was not monitored with low concentration (1.1 × 106 cells mL-1) of M. aeruginosa.Conclusion : Through this study, the algal growth inhibition by ultrasonic was effective. Although the growth inhibition effect persisted for a certain period of time, subsequent regrowth was observed. Therefore, periodic ultrasonic irradiation is necessary for long-term growth inhibition of algal in field applications.
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抑制铜绿微囊藻生长的超声照射条件的推导
目的:通过实验室规模实验,确定最佳超声辐照条件,以评价铜绿微囊藻(M.aeruginosa)对韩国蓝藻有害藻群(CyanoHABs)的生长抑制作用,和初始细胞浓度来观察铜绿假单胞菌的生长抑制作用。实验使用屏蔽丙烯酸反应器[20cm(W)×20cm(L)×30cm(H)]进行。使用具有高浓度铜绿假单胞菌的大体积(7.2L)水样进行实验,并且超声照射时间固定为3小时。结果与讨论:在所有实验中,均观察到铜绿假单胞菌样品的图像、叶绿素a(Chl-a)和铜绿假单胞杆菌的细胞数。作为对铜绿假单胞菌进行超声照射的结果,与超声处理期间的下降相比,超声处理后监测到铜绿假单胞杆菌的Chl-a浓度和细胞数量的下降。此外,在铜绿假单胞菌生长抑制一定时间后,证实了反弹生长。在较低的频率和较高的强度下获得了抑制铜绿假单胞菌生长的最佳超声辐照条件。高浓度(4.5×106个细胞mL-1)的铜绿假单胞菌对藻类生长有抑制作用,而低浓度(1.1×106个单元mL-1)铜绿假单胞杆菌对藻类生长没有监测到抑制作用。结论:通过本研究,超声波抑制藻类生长是有效的。尽管生长抑制作用持续了一段时间,但随后观察到了再生。因此,在现场应用中,周期性的超声波辐射对于藻类的长期生长抑制是必要的。
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发文量
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审稿时长
8 weeks
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