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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 51, 2016 - Issue 6
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ARTICLES

Microcystin release and Microcystis cell damage mechanism by alum treatment with long-term and large dose as in-lake treatment

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Pages 455-462 | Received 07 Jul 2015, Published online: 11 Feb 2016

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Jisun Han, Bong-Seok Jeon, Katsunori Mizuno, Kenji Yoshida & Ho-Dong Park. (2018) Influences of small-scale oscillations on growth inhibition and ultrastructural changes of Microcystis cells. Journal of Environmental Science and Health, Part A 53:13, pages 1161-1166.
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Articles from other publishers (6)

Ian Struewing, Nathan Sienkiewicz, Chiqian Zhang, Nicholas Dugan & Jingrang Lu. (2022) Effective Early Treatment of Microcystis Exponential Growth and Microcystin Production with Hydrogen Peroxide and Hydroxyapatite. Toxins 15:1, pages 3.
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Li Kang, Maíra Mucci & Miquel Lürling. (2022) Compounds to mitigate cyanobacterial blooms affect growth and toxicity of Microcystis aeruginosa. Harmful Algae 118, pages 102311.
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Assaf Sukenik & Aaron Kaplan. (2021) Cyanobacterial Harmful Algal Blooms in Aquatic Ecosystems: A Comprehensive Outlook on Current and Emerging Mitigation and Control Approaches. Microorganisms 9:7, pages 1472.
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Min-Zhao Lin, Wei-Xiong Li, Tian Hu, Huaitian Bu, Zeng-Lin Li, Tianfu Wu, Xia-Xiao Wu, Chao Sun, Yongtao Li & Gang-Biao Jiang. (2021) One-step removal of harmful algal blooms by dual-functional flocculant based on self-branched chitosan integrated with flotation function. Carbohydrate Polymers 259, pages 117710.
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Somjate Thongdam, Anthony C. Kuster, Brian J. Huser & Anootnara T. Kuster. (2021) Low Dose Coagulant and Local Soil Ballast Effectively Remove Cyanobacteria (Microcystis) from Tropical Lake Water without Cell Damage. Water 13:2, pages 111.
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Tomasz Jurczak, Iwona Wagner, Adrianna Wojtal-Frankiewicz, Piotr Frankiewicz, Agnieszka Bednarek, Małgorzata Łapińska, Zbigniew Kaczkowski & Maciej Zalewski. (2019) Comprehensive approach to restoring urban recreational reservoirs. Part 1 – Reduction of nutrient loading through low-cost and highly effective ecohydrological measures. Ecological Engineering 131, pages 81-98.
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