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Measuring The Effectiveness Of A Pilot Scale Bioreactor For Removing Microcystis In An Outdoor Pond System

机译:测量中型生物反应器去除室外池塘系统中微囊藻的效率

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A pilot scale fluidized bed bioreactor to control the cyano-bacterium,Microcystis,was tested in an outdoor experimental pond system (28m~3) over a 57 day period.The pond system was inoculated with a wild bloom of Microcystis,and the bioreactor was preinoculated with an oligochaete,Aeolosoma hemprichi,which is known to prey on colonial Microcystis.This and other Microcystis predators such as the rotifer,Philodina erythrophthalma were observed to colonize the bioreactor during the experiment The bioreactor performance in removing Microcystis was estimated using a mathematical model and a multiple regression analysis of the chlorophyll-a concentration,which was a satisfactory surrogate for the Microcystis cell density in the ponds.The estimated specific decrease in chlorophyll-a concentration due to bioreactor treatment was 0.04 day~(-1),which was equal to the net removal of 4.3×10~(11) Microcystis cells day~(-1) from the treated pond.
机译:在室外实验池系统(28m〜3)中,在57天的时间内对控制蓝藻微囊藻的蓝藻中试流化床生物反应器进行了测试。该池系统接种了微囊藻的野生花,并且预先接种了已知能在结肠微囊藻上捕食的寡壳类风藻(Aeolosoma hemprichi)。在实验过程中,观察到该轮虫和其他微囊藻类捕食者,例如轮虫,红眼球菌(Philodina erythrophthalma)定居在生物反应器上。使用数学模型估算了去除微囊藻的生物反应器性能。叶绿素a浓度的多元回归分析是池塘微囊藻细胞密度的令人满意的替代指标。生物反应器处理导致的叶绿素a浓度比降低估计为0.04天〜(-1),为等于从处理过的池塘中净去除4.3×10〜(11)个微囊藻细胞天〜(-1)。

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