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首页> 外文期刊>Chemical engineering journal >The physiological response of Arundo donax and characteristics of anodic bacterial community in BE-CW systems: Effects of the applied voltage
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The physiological response of Arundo donax and characteristics of anodic bacterial community in BE-CW systems: Effects of the applied voltage

机译:BE-CW系统中Arundo Donax和阳极细菌群落特征的生理反应:施加电压的影响

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The performance of bioelectrochemically assisted constructed wetland systems planted with Arundo donax were evaluated at applied voltages of 1, 2, 3 and 5 V. The RGR and Proline (Pro) results implied a positive response at the proper applied voltage. In the 3-V group, the RGR sharply climbed to a maximum over two stages, and the Pro reached a higher level of 256.25 mu g/g at the end of the first stage without an additional organic carbon source. This result indicated that A. donax was attempting to adapt the 3-V stress via physiological self-regulation and the growth was nearly unaffected. However, in the 5-V group, the great increase in Pro and withering of the aboveground A. donax showed that the voltage stress had become lethal and the plant was not able to endure it through physiological regulation. In addition, Anodic microbial community compositions accumulating on graphite felts were analyzed via high-throughput sequencing. Results showed that there were two clear clusters at different applied voltages. One cluster was assembled from the anodic region of the 0-V and 1-V groups, and the other was collected from the 2-V and 3-V samples. At the phylum level, Proteobacteria, Firmicutes and Bacteroidetes were the most common phyla among the samples. However, at the genus level, the dominant genera varied with the applied voltage. The relative abundance of Desulfovibrio increased with increased applied voltage. The highest total nitrogen removal rate in the 2-V group was closely related to the high abundance of the Acinetobacter genus. Moreover, Exiguobacterium became dominant only in the 5-V sample, suggesting that this genus strongly depended on the interactive environment of exudes from A. donax and applied voltage.
机译:在1,2,3和5V的施加电压下评估生物电化学辅助构造的湿地系统的生物电化学辅助构造的湿地系统。RGR和脯氨酸(Pro)结果暗示了适当的施加电压下的阳性响应。在3V组中,RGR在两个阶段急剧攀升至最大阶段,并且在没有额外的有机碳源的第一阶段的末端,PRO达到更高的256.25μg/ g。该结果表明A. DONAX试图通过生理自我调节调整3V压力,并且生长几乎不受影响。然而,在5 V组中,上述GAX的Pro和枯萎的大幅增加表明,电压应力已变得致命,该植物无法通过生理调节忍受它。此外,通过高通量测序分析了在石墨毡上积聚的阳极微生物群落组合物。结果表明,不同施加电压下有两个清晰的簇。从0-V和1-V组的阳极区域组装一个簇,从2V和3V样品中收集另一个簇。在门水平,植物细菌,常规和菌体是样品中最常见的植物。然而,在Genus级别,主导属随着施加的电压而变化。脱硫的相对丰度随着施加电压的增加而增加。 2-V群中的总氮去除率最高与高丰度与雌激素属的高丰度密切相关。此外,Exigubacterium只在5V样本中变得显着,这表明该属强度依赖于A. DONAX和施加电压的散发的交互环境。

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