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首页> 外文期刊>Water Science and Technology >Simultaneous nitrification and denitrification (SND) bioaugmentation with Pseudomonas sp. HJ3 inoculated for enhancing phenol and nitrogen removal in coal gasification wastewater
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Simultaneous nitrification and denitrification (SND) bioaugmentation with Pseudomonas sp. HJ3 inoculated for enhancing phenol and nitrogen removal in coal gasification wastewater

机译:与假单胞菌SP同时硝化和脱氮(SND)生物沉积。 HJ3接种以增强煤气化废水中的苯酚和氮气去除

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摘要

A simultaneous nitrification and denitrification (SND) bioaugmention system with Pseudomonas sp. HJ3 inoculated was established to explore the potential of simultaneous phenol and nitrogen removal in coal gasification wastewater (CGW). When the concentration of influent chemical oxygen demand (COD) and total phenols (TPh) was 1,765.94 +/- 27.43 mg/L and 289.55 +/- 10.32 mg/L, the average removal efficiency of COD and TPh at the stable operating stage reached 64.07% +/- 0.76% and 74.91% +/- 0.33%, respectively. Meanwhile, the average removal efficiency of NH4+-N and total nitrogen (TN) reached 67.96% +/- 0.17% and 57.95% +/- 0.12%, respectively. The maximum SND efficiency reached 83.51%. Furthermore, SND bioaugmentation performed with good nitrification tolerance of phenol shock load and significantly reduced toxic inhibition of organisms. Additionally, the microbial community analysis indicated that Pseudomonas sp. HJ3 was the predominant bacterium in the SND bioaugmentation system. Moreover, the indigenous nitrogen removal bacteria such as Thauera, Acidovorax and Stenotrophomonas were enriched, which further enhanced the nitrogen removal in the SND bioaugmentation system. The results demonstrated the promising application of SND bioaugmentation for enhancing simultaneous phenol and nitrogen removal in CGW treatment.
机译:具有假单胞菌SP的同时硝化和脱氮(SND)生物沉积系统。建立了HJ3接种,以探讨煤气化废水(CGW)中同时酚和氮去除的潜力。当水化学需氧量(COD)和总酚(TPH)的浓度为1,765.94 +/- 27.43 mg / L和289.55 +/- 10.32 mg / L时,达到稳定操作阶段的COD和TPH的平均去除效率64.07%+/- 0.76%和74.91%+/- 0.33%。同时,NH4 + -N的平均去除效率和总氮气(TN)分别达到67.96%+/- 0.17%和57.95%+/- 0.12%。最大SND效率达到83.51%。此外,具有良好的硝化耐苯酚休克载荷的SND生物沉积,并显着降低了生物的毒性抑制。另外,微生物群落分析表明假单胞菌SP。 HJ3是SND生物沉积系统中的主要细菌。此外,富集了土着氮去除细菌,例如托伐,酸和嗜酸盐孢子酵母,其进一步增强了SND生物沉积系统中的氮去除。结果证明了在CGW治疗中提高同时酚类和氮去除性的有希望的SND生物沉积。

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