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Microbial community analysis in the autotrophic denitrification process using spent sulfidic caustic by denaturing gradient gel electrophoresis of PCR-amplified genes

机译:使用变性硫化物梯度PCR扩增PCR扩增的基因,利用废硫化碱在自养反硝化过程中进行微生物群落分析

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摘要

Spent sulfidic caustic (SSC) produced from petrochemical plants contains a high concentration of hydrogen sulfide and alkalinity, and some almost non-biodegradable organic compounds such as benzene, toluene, ethylbenzene and xylenes (BTEX). SSC is mainly incinerated with auxiliary fuel, leading to secondary pollution problems. The reuse of this waste is becoming increasingly important from economic and environmental viewpoints. To denitrify wastewater with low COD/N ratio, additional carbon sources are required. Thus, autotrophic denitrification has attracted increasing attention. In this study, SSC was injected as an electron donor for sulfur-based autotrophic denitrification in the modified Ludzack-Ettinger (MLE) process. The efficiencies of nitrification, COD, and total nitrogen (TN) removal were evaluated with varying SSC dosage. Adequate SSC injection exhibited stable autotrophic denitrification. No BTEX were detected in the monitored BTEX concentrations of the effluent. To analyse the microbial community of the MLE process, PCR-DGGE based on 16 S rDNA with EUB primers, TD primers and nirK gene with nirK primers was performed in order to elucidate the application of the MLE process to SSC.
机译:石化厂生产的废硫化碱(SSC)含有高浓度的硫化氢和碱度,以及一些几乎不可生物降解的有机化合物,例如苯,甲苯,乙苯和二甲苯(BTEX)。 SSC主要使用辅助燃料进行焚化,导致二次污染问题。从经济和环境的角度来看,这种废物的再利用变得越来越重要。为了使低COD / N比的废水脱氮,需要额外的碳源。因此,自养反硝化吸引了越来越多的关注。在这项研究中,SSC作为电子供体注入,用于改进的Ludzack-Ettinger(MLE)工艺中的硫基自养反硝化。使用不同的SSC剂量评估硝化,COD和总氮(TN)去除的效率。适当的SSC注射显示出稳定的自养反硝化作用。在监测的废水中BTEX浓度中未检测到BTEX。为了分析MLE过程的微生物群落,进行了基于16 S rDNA和EUB引物,TD引物和nirK基因和nirK引物的PCR-DGGE实验,以阐明MLE过程在SSC中的应用。

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