Removal of Microcystis aeruginosa through the Combined Effect of Plasma Discharge and Hydrodynamic Cavitation

被引:24
作者
Marsalek, Blahoslav [1 ]
Marsalkova, Eliska [1 ]
Odehnalova, Klara [1 ]
Pochyly, Frantisek [2 ]
Rudolf, Pavel [2 ]
Stahel, Pavel [3 ]
Rahel, Jozef [3 ]
Cech, Jan [3 ]
Fialova, Simona [2 ]
Zezulka, Stepan [1 ]
机构
[1] Czech Acad Sci, Inst Bot, Lidicka 25-27, CZ-60200 Brno, Czech Republic
[2] Brno Univ Technol, Fac Mech Engn, V Kaplan Dept, Brno 60190, Czech Republic
[3] Masaryk Univ, Fac Sci, Dept Phys Elect, Kotlarska 2, CZ-61137 Brno, Czech Republic
关键词
cyanobacterial bloom; water treatment; drinking water; surface water; cold plasma; WASTE-WATER TREATMENT; GREEN-ALGAE; HYDROGEN-PEROXIDE; CYANOBACTERIA; DEGRADATION; OXIDATION;
D O I
10.3390/w12010008
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Cyanobacterial water blooms represent toxicological, ecological and technological problems around the globe. When present in raw water used for drinking water production, one of the best strategies is to remove the cyanobacterial biomass gently before treatment, avoiding cell destruction and cyanotoxins release. This paper presents a new method for the removal of cyanobacterial biomass during drinking water pre-treatment that combines hydrodynamic cavitation with cold plasma discharge. Cavitation produces press stress that causes Microcystis gas vesicles to collapse. The cyanobacteria then sink, allowing for removal by sedimentation. The cyanobacteria showed no signs of revitalisation, even after seven days under optimal conditions with nutrient enrichment, as photosynthetic activity is negatively affected by hydrogen peroxide produced by plasma burnt in the cavitation cloud. Using this method, cyanobacteria can be removed in a single treatment, with no increase in microcystin concentration. This novel technology appears to be highly promising for continual treatment of raw water inflow in drinking water treatment plants and will also be of interest to those wishing to treat surface waters without the use of algaecides.
引用
收藏
页数:14
相关论文
共 34 条
[11]   Fundamental characteristics of discharge plasma generated in a water cavitation field [J].
Ihara, Satoshi ;
Sakai, Tomohiro ;
Yoshida, Yuuki ;
Nishiyama, Hiroki .
JOURNAL OF ELECTROSTATICS, 2018, 93 :110-117
[12]   Effects of aqueous extracts from five species of the family Papaveraceae on selected aquatic organisms [J].
Jancula, Daniel ;
Suchomelova, Jana ;
Gregor, Jakub ;
Smutna, Marie ;
Marsalek, Blahoslav ;
Taborska, Eva .
ENVIRONMENTAL TOXICOLOGY, 2007, 22 (05) :480-486
[13]   Selective method for cyanobacterial bloom removal: hydraulic jet cavitation experience [J].
Jancula, Daniel ;
Mikula, Premysl ;
Marsalek, Blahoslav ;
Rudolf, Pavel ;
Pochyly, Frantisek .
AQUACULTURE INTERNATIONAL, 2014, 22 (02) :509-521
[14]   Critical review of actually available chemical compounds for prevention and management of cyanobacterial blooms [J].
Jancula, Daniel ;
Marsalek, Blahoslav .
CHEMOSPHERE, 2011, 85 (09) :1415-1422
[15]   Algicidal and cyanocidal effects of selected isoquinoline alkaloids [J].
Jancula, Daniel ;
Gregorova, Jana ;
Marsalek, Blahoslav .
AQUACULTURE RESEARCH, 2010, 41 (04) :598-601
[16]   Sustainable Methods for Decontamination of Microcystin in Water Using Cold Plasma and UV with Reusable TiO2 Nanoparticle Coating [J].
Jiang, Xuewen ;
Lee, Seungjun ;
Mok, Chulkyoon ;
Lee, Jiyoung .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2017, 14 (05)
[17]   The slow S to M fluorescence rise in cyanobacteria is due to a state 2 to state 1 transition [J].
Kana, Radek ;
Kotabova, Eva ;
Komarek, Ondrej ;
Sediva, Barbora ;
Papageorgiou, George C. ;
Govindjee ;
Prasil, Ondrej .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2012, 1817 (08) :1237-1247
[18]   Cold Plasma Treatment for Efficient Control over Algal Bloom Products in Surface Water [J].
Kim, Hee-Jun ;
Nam, Gui-Sook ;
Jang, Jung-Seok ;
Won, Chan-Hee ;
Kim, Hyun-Woo .
WATER, 2019, 11 (07)
[19]   Effects of pulsed and continuous wave discharges of underwater plasma on Escherichia coli [J].
Lee, Sang Ju ;
Ma, Suk-Hwal ;
Hong, Yong Cheol ;
Choi, Myoung Choul .
SEPARATION AND PURIFICATION TECHNOLOGY, 2018, 193 :351-357
[20]  
Lukes P., 2001, COLORIMETRIC DETERMI