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Exploitation of Algal-Bacterial Consortia in Combined Biohydrogen Generation and Wastewater Treatment

机译:藻-细菌联合体在生物制氢和废水处理中的综合利用

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Microalgae cultivation in municipal, industrial and agricultural wastewater is an emerging, highly effective approach for resource recovery and concomitant bioenergy generation. Wastewater effluents represent ideal sources of nutrients for eukaryotic green algal species. However, the performance of photosynthetic green algae is strongly dependent on the associated bacterial partners present in the effluents. Our combined wastewater treatment and biohydrogen evolution approach applied green microalgae-based photoheterotrophic degradation using dark fermentation wastewater effluent as substrate. The results showed that condition-dependent mutualistic relationships between the microbial and Chlorella algae populations had direct impact on the biodegradation efficiency and also on algal biohydrogen production. Metagenome analysis of the novel hybrid biodegradation system together with total nitrogen and phosphorous analytics provided important clues for the primary importance of the green algae partner in nitrogen and phosphorous removal. Bacterial bin genome data also indicated algal growth promotion by bacterial partners. With further development and optimization this new approach can lead to a highly efficient simultaneous organic waste mitigation and renewable energy production technology.
机译:在市政,工业和农业废水中进行微藻种植是一种新兴的高效方法,可用于资源回收和伴随的生物能源发电。废水是真核绿色藻类营养的理想来源。然而,光合绿藻的性能强烈依赖于废水中存在的相关细菌伴侣。我们的废水处理和生物氢排放相结合的方法采用了基于绿色微藻的光异养降解技术,其中使用了黑暗发酵废水作为底物。结果表明,微生物和小球藻藻类种群之间的条件相关的相互关系对生物降解效率以及藻类生物氢的产生都有直接影响。新型混合生物降解系统的基因组分析与总氮和磷分析一起,为绿藻伴侣在氮和磷去除中的首要重要性提供了重要线索。细菌箱基因组数据还表明细菌伴侣促进了藻类的生长。随着进一步的开发和优化,这种新方法可以带来高效的同时减少有机废物和可再生能源生产技术。

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