首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of carbon source, nitrogen source, and natural algal powder-derived carbon source on biodegradation of tetracycline (TEC)
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Effects of carbon source, nitrogen source, and natural algal powder-derived carbon source on biodegradation of tetracycline (TEC)

机译:碳源,氮源和天然藻类粉末源碳源对四环素(TEC)生物降解的影响

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摘要

The present study aimed to investigate Klebsiella sp. SQY5-mediated tetracycline (TEC) degradation, nitrogen (N) conversion, and mechanisms underlying this process as influenced by various carbon and N sources under aerobic conditions. Effects of additional organic carbon sources on TEC degradation and N conversion processes were explored, and we found that 34.71% of TEC was degraded at removal rates of 0.97 mg.L-1.h (-1) for NH4+-N and 1.97 mg.L-1.h(-1) for NO3--N. A study examining powder natural algal powder in aquaculture wastewater as a carbon source for TEC degradation and denitrification process was also discussed. It suggested that 49.95% of TEC and 60.45% of NO3--N were removed with a reduction and denitrification rate of 0.11 mg.L-1.h(-1) and 1.34 mg.L-1.h(-1), respectively, within 72-108 h. Mechanisms underlying TEC degradation and N conversion processes were also proposed, and analysis indicated that specific functional genes played an important role in this process.
机译:本研究旨在调查Klebsiella SP。 SQY5介导的四环素(TEC)降解,氮气(N)转化,以及根据各种碳和N源在有氧条件下受到的影响。 探讨了额外有机碳源对TEC降解和N转化过程的影响,并发现34.71%的TEC以0.97mg.L-1.h(-1)的去除率降低,对于NH4 + -NN和1.97mg。 NO3 - N的L-1.H(-1)。 还讨论了一种研究检查水产养殖废水中的粉末天然藻粉作为TEC降解和脱硝过程的碳源。 它表明,除去49.95%的TEC和60.45%的NO 3 - N的降低和脱氮率为0.11mg.L-1.h(-1)和1.34mg.L-1.H(-1), 分别在72-108小时内。 还提出了TEC降解和N转化方法的基础,分析表明,特定的官能基因在该过程中发挥着重要作用。

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