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Metal Interactions with Microbial Biofilms in Acidic and Neutral pH Environments

机译:在酸性和中性pH环境中与微生物生物膜的金属相互作用

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摘要

Microbial biofilms were grown on strips of epoxy-impregnated filter paper submerged at four sites in water contaminated with metals from mine wastes. At two sample stations, the water was acidic (pH 3.1); the other sites were in a lake restored to a near neutral pH level by application of a crushed limestone slurry. During a 17-week study period, planktonic bacterial counts increased from 101 to 103 CFU/ml at all sites. Biofilm counts increased rapidly over the first 5 weeks and then leveled to 104 CFU/cm2 in the neutral pH system and 103 CFU/cm2 at the acidic sites. In each case, the biofilms bound Mn, Fe, Ni, and Cu in excess of the amounts adsorbed by control strips covered with nylon filters (pore size, 0.22 μm) to exclude microbial growth; Co bound under neutral conditions but not under acidic conditions. Conditional adsorption capacity constants, obtained graphically from the data, showed that biofilm metal uptake at a neutral pH level was enhanced by up to 12 orders of magnitude over acidic conditions. Similarly, adsorption strength values were usually higher at elevated pH levels. In thin sections of the biofilms, encapsulated bacterial cells were commonly found enmeshed together in microcolonies. The extracellular polymers often contained iron oxide precipitates which generated weak electron diffraction patterns with characteristic reflections for ferrihydrite (Fe2O3 · H2O) at d equaling 0.15 and 0.25 nm. At neutral pH levels, these deposits incorporated trace amounts of Si and exhibited a granular morphology, whereas acicular crystalloids containing S developed under acidic conditions.
机译:微生物生物膜生长在浸有被矿山废物中的金属污染的水中的四个位置的环氧浸渍滤纸条上。在两个采样站,水呈酸性(pH 3.1)。其他地方则在湖中,通过使用石灰石碎浆将pH恢复到接近中性。在为期17周的研究期内,所有地点的浮游细菌计数从10 1 增加到10 3 CFU / ml。在开始的5周内,生物膜计数迅速增加,然后在中性pH系统中降至10 4 CFU / cm 2 ,而在10 3 CFU / cm 2 在酸性位置。在每种情况下,生物膜所结合的Mn,Fe,Ni和Cu的量超过了覆盖有尼龙过滤器(孔尺寸,0.22μm)的控制条所吸收的量,以排除微生物的生长; Co在中性条件下结合,但在酸性条件下不结合。从数据中以图形方式获得的条件吸附容量常数表明,在酸性条件下,中性pH值下生物膜金属的吸收量最多可提高12个数量级。同样,在升高的pH值下,吸附强度值通常较高。在生物膜的薄部分中,通常发现包裹的细菌细胞在微菌落中融合在一起。细胞外聚合物通常含有氧化铁沉淀物,这些沉淀物产生弱的电子衍射图样,并在d等于0.15和0.25 nm时对三水铁矿(Fe2O3·H2O)进行特征反射。在中性pH值下,这些沉积物掺入痕量的Si并呈现出颗粒形态,而含有S的针状晶体则在酸性条件下形成。

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