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Effect of operational parameters, environmental conditions, and biotic interactions on bacterial communities present in urban wastewater treatment photobioreactors

机译:运营参数,环境条件和生物相互作用对城市废水处理光生物反应器的细菌社区

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The effects of water depth, operational and environmental conditions on bacterial communities were analyzed in microalgal-bacterial outdoor photobioreactors treating urban wastewaters from March to August 2014. Three raceway photobioreactors inoculated with Scenedesmus sp. and with different water depths (20, 12, and 5 cm) were used at different dilution rates (0.15, 0.3, 0.4, and 0.5 d(-1)). A thin-layer reactor with 2 cm water depth and operated at 0.3 d(-1) was used as a control. The results showed that biomass productivity increased as water depth decreased. The highest biomass productivity was 0.196 gL(-1)d(-1), 0.245 gL(-1)d(-1), and 0.457 gL(-1)d(-1) for 20, 12, and 5 cm depth raceway photobioreactors, respectively. These values were lower than the maximum productivity registered in the control reactor (1.59 gL(-1)d(-1)). Bacterial communities, analyzed by high-throughput 16S rRNA sequencing, were not affected by water depth. A decrease in community evenness was related to a decrease in nutrient removal. Hetetrotrophs and phototrophs, mainly from the family Rhodobacteraceae, dominated bacterial diversity. The community changed due to increasing temperatures, irradiance, and organic carbon, ammonia, and phosphate contents in the photobioreactor-influent as well as, microalgae inhibition and higher organic carbon in the effluent. The photobioreactors shared a core-biome that contained five clusters of co-occurring microorganisms. The bacteria from the different clusters were taxonomically and ecologically different but functionally redundant. Overall, the drivers of the community changes could be related to abiotic variables and complex biological interactions, likely mediated by microalgae excretion of organic substances and the microorganisms' competence for substrates.
机译:在3月至2014年3月至8月治疗城市废水的微藻 - 细菌室外光生物反应器中分析了水深,操作和环境条件对细菌群落的影响。三种滚道光生物反应器接种了Scenedesmus sp。用不同的水深(20,12和5cm)以不同的稀释速率(0.15,0.3,0.4和0.5d(-1))使用。用2cm水深的薄层反应器并以0.3d(-1)在0.3d(-1)中作为对照。结果表明,随着水深降低,生物质生产率增加。最高的生物质生产率为0.196G1(-1)D(-1),0.245G1(-1)D(-1)和0.457GL(-1)D(-1),为20,12和5cm深度滚道光生物反应器分别。这些值低于对照反应器中登记的最大生产率(1.59G1(-1)D(-1))。通过高通量16s rRNA测序分析的细菌群落不受水深的影响。社区均匀性的降低与营养消除的降低有关。 hetetrotophs和光学术,主要来自家族乳菌科,占据了细菌多样性。由于温度,辐照度和有机碳,氨和磷酸盐含量的增加以及流出物中的微藻抑制和更高的有机碳,因此社区因温度,辐照度和有机碳,氨和磷酸盐含量而变化。光生物反应器共享核心生物群落,其包含五种共同的微生物簇。来自不同群集的细菌是分类和生态学不同但功能冗余的。总体而言,社区变化的司机可能与非生物变量和复杂的生物相互作用有关,可能是由微藻排泄的有机物质和微生物的基材的能力介导的。

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