首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Sulphur-based autotrophic denitrification of wastewater obtained following graphite production: Long-term performance, microbial communities involved, and functional gene analysis
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Sulphur-based autotrophic denitrification of wastewater obtained following graphite production: Long-term performance, microbial communities involved, and functional gene analysis

机译:石墨生产后废水的硫类自养反硝化:长期性能,涉及的微生物社区,和功能基因分析

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Sulphur-based autotrophic denitrification is an energy-efficient NO3--N removal process; it does not require carbon and may potentially replace traditional denitrification processes. This process was used to treat graphite production-derived wastewater and achieved almost complete removal of NO3--N (concentration in effluent 5.2 mg/L; concentration in influent 606 mg/L) at a salinity of 15 g/L with a 30 h hydraulic retention time. A unique microbial community was established, in which the abundance of Thiobacillus increased with the increase of the NO3--N concentration and salinity. Metagenomic analysis revealed that the denitrification metabolic pathway in the bioreactor was active. It also revealed the increased activation of nhaH, a gene encoding Na+/H+ antiporters; proA, proB, and proC, genes encoding proline; and Trk and Kdp systems during the treatment of graphite production-derived wastewater to maintain cell function, providing valuable information about utilizing the sulphur-based autotrophic denitrification process to treat graphite production-derived wastewater.
机译:基于硫的自养反硝化是节能的NO3-N去除过程;它不需要碳,可能会替代传统的脱硝过程。该方法用于治疗石墨生产衍生的废水,并在15g / L的盐度下实现了几乎完全除去NO3 - N(流出物5.2mg / L中的浓度。液压保留时间。建立了一种独特的微生物群落,其中硫杆菌的丰度随着NO3 - N浓度和盐度的增加而增加。聚蛋白分析表明,生物反应器中的脱氮代谢途径是活性的。它还揭示了NHAH的激活增加,该基因编码了Na + / H +抗原醇的基因; proa,prob和proc,编码脯氨酸的基因;在处理石墨生产衍生废水期间的TRK和KDP系统以维持细胞功能,提供有关利用基于硫的自养反硝化方法来治疗石墨生产衍生废水的有价值的信息。

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