絮凝作用
沉积作用
磷
化学
富营养化
环境化学
粘土
环境工程
自然(考古学)
环境科学
沉积物
地质学
土壤科学
营养物
土壤水分
地貌学
有机化学
古生物学
作者
Natália Pessoa Noyma,Leonardo de Magalhães,Luciana Lima Furtado,Maíra Mucci,F. van Oosterhout,Vera L. M. Huszar,Marcelo Manzi Marinho,Miquel Lürling
出处
期刊:Water Research
[Elsevier BV]
日期:2015-12-12
卷期号:97: 26-38
被引量:154
标识
DOI:10.1016/j.watres.2015.11.057
摘要
Eutrophication often results in blooms of toxic cyanobacteria that hamper the use of lakes and reservoirs. In this paper, we experimentally evaluated the efficacy of a metal salt (poly-aluminium chloride, PAC) and chitosan, alone and combined with different doses of the lanthanum modified bentonite Phoslock(®) (LMB) or local red soil (LRS) to sediment positively buoyant cyanobacteria from Funil Reservoir, Brazil, (22°30'S, 44°45'W). We also tested the effect of calcium peroxide (CaO2) on suspended and settled cyanobacterial photosystem efficiency, and evaluated the soluble reactive P (SRP) adsorbing capacity of both LMB and LRS under oxic and anoxic conditions. Our data showed that buoyant cyanobacteria could be flocked and effectively precipitated using a combination of PAC or chitosan with LMB or LRS. The SRP sorption capacity of LMB was higher than that of LRS. The maximum P adsorption was lowered under anoxic conditions especially for LRS ballast. CaO2 addition impaired photosystem efficiency at 1 mg L(-1) or higher and killed precipitated cyanobacteria at 4 mg L(-1) or higher. A drawback was that oxygen production from the peroxide gave positive buoyancy again to the settled flocs. Therefore, further experimentations with slow release pellets are recommended.
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