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Laboratory modelling of manganese biofiltration using biofilms of Leptothrix discophora

机译:利用盘尾线虫生物膜进行锰生物滤池的实验室模拟

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Laboratory biofilters (pilot-scale, 201 and laboratory-scale, 51) were constructed in order to model the bioaccumulation of manganese (Mn) under flow conditions similar to those occurring in biofilters at groundwater treatment sites. The biofilters were operated as monocultures of Leptothrix discophora, the predominant organism in mature Mn oxidising biofilms. Biologically mediated Mn bioaccumulation was successfully modelled in both filter systems. The data obtained showed that in the small-scale biofilter, the Mn concentrations that gave the highest rate of Mn bioaccumulation, shortest maturation time, highest optical density (biomass) and growth rate were between 2000 and 3000 μg 1~(-1). The non-problematic scale-up of the process from the laboratory-scale to the pilot-scale biofilter model suggests that Mn biofilters may be 'seeded' with laboratory grown cultures of L. discophora. By initially operating the biofilter as a re-circulating batch culture, with an initial Mn concentration of ~2500 μg 1~(-1), it is hoped to reduce the filter maturation time from months to days.
机译:为了模拟在地下水条件下生物滤池中锰(Mn)的流动条件,建立了实验室生物滤池(试验规模为201,实验室规模为51)。生物滤池作为Leptothrix discophora(成熟的Mn氧化生物膜中的主要生物)的单一培养物进行操作。在两个过滤器系统中成功地模拟了生物介导的锰生物积累。获得的数据表明,在小型生物滤池中,具有最高锰生物积累速率,最短成熟时间,最高光密度(生物质)和生长速率的锰浓度在2000至3000μg1〜(-1)之间。从实验室规模到中试规模的生物滤池模型的无问题放大过程表明,锰生物滤池可能会与实验室培养的盘状乳杆菌培养物“接种”在一起。通过最初将生物滤池作为循环分批培养器使用,初始Mn浓度约为2500μg1〜(-1),希望将滤池的成熟时间从数月缩短至数天。

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