References

  1. I. Chorus, J. Bartram, Toxic Cyanobacteria in Water: A guide to their public health consequences, monitoring and management, E&FN Spon, London, 1999.
  2. D.M. San, R.V. Azanza, C.L. Villanoy, G.S. Jacinto, Eutrophic waters, algal bloom and fish kill in fish farming areas in Bolinao, Pangasinan, Philippines, Mar. Pollut. Bull., 57 (2008) 295–301.
  3. F. Cobo, Methods to control cyanobacteria blooms in inland waters, Limmetica, 34 (2015) 247–268.
  4. S.K. Choi, J.Y. Lee, D.Y. Kwon, K.J. Cho, Settling characteristics of problem algae in the water treatment process, Water Sci. Technol., 53 (2006) 113–119.
  5. F. Passos, E. Uggetti, H. Carrere, I. Ferrer, Pretreatment of microalgae to improve biogas production: A review, Biores. Technol., 172 (2014) 403–412.
  6. M. Lürling, D. Meng, E. Faassen, Effects of hydrogen peroxide and ultrasound on biomass reduction and toxin release in the cyanobacterium, Microcystis aeruginosa, Toxins, 6 (2014) 3260–3280.
  7. E.M. Joyce, X. Wu, T.J. Mason, Effect of ultrasonic frequency and power on algae suspensions, J. Environ. Sci. Heal. A., 45 (2010) 863–866.
  8. H.W. Hao, Y.F. Chen, M.S. Wu, J.W. Tang, Q.Y. Wu, Studies on the inhibition of cyanobacteria’s growth
    by low-power and high-frequency ultrasound, Acta Bioph. Sin., 19 (2003) 101–104.
  9. P. Rajasekhar, L. Fan, T. Nguyen, F.A. Roddick, A review of the use of sonication to control cyanobacterial blooms, Water Res., 46 (2012) 4319–4329.
  10. T.J. Lee, K. Nakano, M. Matsumura, A new method for the rapid evaluation of gas vacuoles regeneration and viability of cyanobacteria by flow cytometry, Biotechnol. Lett., 22 (2000) 1833–1838.
  11. J.W. Tang, Q.Y. Wu, H.W. Hao, Y. Chen, M. Wu, Effect of 1.7 MHz ultrasound on a gas-vacuolate cyanobacterium and a gas-vacuole negative cyanobacterium, Colloid Surface B. 36 (2004) 115–121.
  12. T.J. Lee, K. Nakano, M. Matsumare, Ultrasonic irradiation for blue-green algae bloom control, Environ. Technol., 22 (2001) 383–390.
  13. G. Zhang, P. Zhang, H. Liu, B. Wang, Ultrasonic damages on cyanobacterial photosynthesis, Ultrason. Sonochem., 13 (2006) 501–505.
  14. X. Wu, E.M. Joyce, T.J. Mason, Evaluation of the mechanisms of the effect of ultrasound on Microcystis aeruginosa at different ultrasonic frequencies, Water Res., 46 (2012) 2851–2858.
  15. L. Wan, L.L. Shao, L.U. Kai-Hong, J.Y. Zhu, W. Yang, Effect of ultrasond wave on the ultrastructure and physiological characterisitcs of blue-green algae (Microcystis aeruginosa), Acta Hydrob. Sin., 38 (2014) 516–524.
  16. J. Tang, Q. Wu, H. Hao, Y. Chen, M. Wu, Growth inhibition of the cyanobacterium Spirulina (Arthrospira) platensis by 1.7 MHz ultrasonic irradiation, J. Appl. Phycol., 15 (2003) 37–43.
  17. D. Purcell, Control of algal growth in reservoirs with ultrasound, Cranfield University, 2009.
  18. X. Wu, E.M. Joyce, T.J. Mason, The effects of ultrasound on cyanobacteria, Harmful Algae, 10 (2011) 738–743.
  19. Y.J. Qiu, F. Rong, F. Yang, J.P. Li, H. Long, W. Wu, Ultrasound frequency impacts on the removal of indigenous blue-green algae taken from Lake Taihu, Adv. Mater. Res., 383–390 (2011) 3758–3762.
  20. P. Rajasekhar, L. Fan, T. Nguyen, F.A. Roddick, Impact of sonication at 20 kHz on Microcystis aeruginosa, Anabaena circinalis and Chlorella sp., Water Res., 46 (2012) 1473–1481.
  21. J. Li, D. Ou, L. Zheng, N. Gan, L. Song, Applicability of the fluorescein diacetate assay for metabolic activity measurement of Microcystis aeruginosa (Chroococcales, Cyanobacteria), Phycol. Res., 59 (2011) 200–207.
  22. A. Jamers, M. Lenjou, P. Deraedt, D. Van Bockstaele, R. Blust, W. de Coen, Flow cytometric analysis of the cadmium-exposed green alga Chlamydomonas reinhardtii (Chlorophyceae), Eur. J. Phycol., 44 (2009) 541–550.
  23. Y. Hong, H. Hu, F. Li, Physiological and biochemical effects of allelochemical ethyl 2-methyl acetoacetate (EMA) on cyanobacterium Microcystis aeruginosa, Ecotox. Environ. Safe., 71 (2008) 527–534.
  24. X. Liao, X. Wang, K. Zhao, M. Zhou, Photocatalytic inhibition of cyanobacterial growth using silver-doped TiO2 under UV-C light, J. Wuhan Univ. Technol., 24 (2009) 402–408.
  25. H. Sakai, K. Oguma, H. Katayama, S. Ohgaki, Effects of low- or medium-pressure ultraviolet lamp irradiation on Microcystis aeruginosa and Anabaena variabilis, Water Res., 41 (2007) 11–18.
  26. F.J. Jochem, Probing the physiological state of phytoplankton at the single-cell level, Workshop on Aquatic Flow Cytometry - Achievements and Prospects, Busum, Germany, 1998, pp.183–195.
  27. OECD, Sixteenth addendum to the OECD guidelines for the testing of chemicals, 2006.
  28. W. Li, S. Lu-Lu, L. Kai-Hong, Z. Jin-Yong, Y. Wen, Effect of ultrasond wave on the ultrastructure and physiological characterisitcs of blue-green algae (Microcystis aeruginosa), Acta Hydrob. Sin., 38 (2014) 516–524.
  29. T.J. Mason, A.J. Cobley, J.E. Graves, D. Morgan, New evidence for the inverse dependence of mechanical and chemical effects on the frequency of ultrasound, Ultrason. Sonochem., 18 (2011) 226–230.
  30. L.R. Zhao, W.S. Zhi, G. Zhiying, Z. Zhengdong, Studies on the spectroscopic properties and energy transfer of phycobilisomethylakoid of synechococcus leopoliensis 625, Acta Hydrob. Sin., 15 (1991) 368–371.
  31. K. Kasamo, F. Kagita, H. Yamanishi, T. Sakaki, Low temperature-induced changes in the thermotropic properties and fatty acid composition of the plasma membrane and tonoplast of cultured rice (Oryza sativa L.) cells, Plant Cell Physiol., 33 (1992) 609–616.
  32. T. Yi, Suppression Performance on Typical Algae Growth under UV-C Irradiation and Its Mechanism, Tsinghua University. 2010.
  33. F. Pescheck, K.T. Lohbeck, M.Y. Roleda, W. Bilger, UVB-induced DNA and photosystem II damage in two intertidal green macroalgae: Distinct survival strategies in UV-screening and non-screening Chlorophyta, J. Photochem. Photobiol. B., 132 (2014) 85–93.
  34. WHO, Guidelines for Safe Recreational Water Environments, 2006.