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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Role of porous polymer carriers and iron-carbon bioreactor combined micro-electrolysis and biological denitrification in efficient removal of nitrate from wastewater under low carbon to nitrogen ratio
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Role of porous polymer carriers and iron-carbon bioreactor combined micro-electrolysis and biological denitrification in efficient removal of nitrate from wastewater under low carbon to nitrogen ratio

机译:多孔聚合物载体和铁 - 碳生物反应器的作用联合微电解和生物反硝化,在低碳中有效地从废水中从废水中除去氮气比

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摘要

In the current research, a novel bioreactor composed of porous polymer carriers and iron-carbon (PPC@FeC) was established through bacterial immobilized technology. The influence of key factors was studied on the nitrate removal performance of the PPC@FeC bioreactor. The experimental results showed that the highest removal rate of nitrate (7.33 mg L-1 h(-1)) can be obtained with short hydraulic retention times (HRT = 2.0 h) and low carbon-to-nitrogen ratio (C/N = 2.0). The results of high-throughput sequencing revealed that Zoogloea sp. L2 was the dominant strain in bioreactor responsible for nitrate removal. Moreover, the SEM and XRD analyses elucidated that Fe2O3 was the final product produced by the interaction of FeC and strain L2. These findings showed that the PPC@FeC bioreactor successfully combined micro-electrolysis and biological denitrification, which exhibited great potential in removing nitrate effectively from wastewater under low C/N ratio and short HRT conditions.
机译:在目前的研究中,一种新型的生物反应器由多孔聚合物载体和铁碳组成(PPC@FeC)通过细菌固定化技术建立。研究了关键因素对硝酸盐去除性能的影响PPC@FeC生物反应器。实验结果表明,在较短的水力停留时间(HRT=2.0h)和较低的碳氮比(C/N=2.0)下,硝酸盐的去除率最高(7.33mg L-1h(-1))。高通量测序结果表明,Zoogloea sp.L2是生物反应器中负责去除硝酸盐的优势菌株。此外,SEM和XRD分析表明,FeC和菌株L2相互作用产生的最终产物是Fe2O3。这些发现表明PPC@FeC生物反应器成功地将微电解和生物脱氮结合起来,在低C/N比和短HRT条件下,对废水中的硝酸盐具有很大的去除潜力。

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