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Biodegradation of major pollutants in yeast wastewater by using immobilized micro-aerobic microorganism technology

机译:用固定化微食微生物技术生物降解酵母废水中的主要污染物

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In order to provide an effective and economic method for the yeast wastewater′streatment, this study taken yeast wastewater as objection, and applied immobilized micro-aerobic microorganism technology into yeast wastewater′s treatment, then explored the degradation effect of major pollutants in yeast wastewater. The immobilized carrier was analyzed by scanning electron microscope (SEM) and Fourier transform infrared spectrometer (FTIR), and dominant species in immobilized carrier were identified. The results showed that immobilized carrier was a composite carrier with porous structure, and removal rate of chemical oxygen demand (COD), ammonia nitrogen (NH_3-N), total nitrogen (TN) and total organic carbon (TOC) of yeast wastewater by using the immobilized micro-aerobic microorganism technology were 71.1%, 99.7%, 61.4% and 67.0%, respectively. Moreover, the dominant bacteria which attached in the carrier included Sphingomonas paucimobilis, Pseudomonas putida, Acinetobacter lwoffii and Pseudomonas stutzeri.
机译:为了提供酵母废水的有效和经济的方法,这项研究将酵母废水取得反对,并将固定的微食微生物技术应用于酵母废水的治疗中,然后探讨了主要污染物在酵母废水中的降解效应。通过扫描电子显微镜(SEM)和傅里叶变换红外光谱仪(FTIR)分析固定化的载体,并鉴定了固定载体中的主要物种。结果表明,固定的载体是具有多孔结构的复合载体,并通过使用使用酵母废水的化学需氧量(COD),氨氮(NH_3-N),总氮(TN)和总有机碳(TOC)的复合载体固定化的微食微生物技术分别为71.1%,99.7%,61.4%和67.0%。此外,附着在载体中的显性细菌包括鞘氨基醛磷肌肌,假鼠普韦达,洛杉矶分枝杆菌和假单胞菌斯图塞。

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