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Biological removal of nutrients (N & P) from urban wastewater with a modified integrated fixed-film activated sludge-oxic settling anoxic system using an anoxic sludge holding tank

机译:使用缺氧污泥储罐的改良综合固定膜活性污泥 - 沉淀缺氧缺氧系统生物清除从城市废水中的营养素(N&P)

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In this research, the efficiency of the integrated fixed-film activated sludge-oxic settling anoxic (IFAS-OSA) system in biological nutrient removal was studied. The oxic-settling anoxic (OSA) process is known as a cost effective way to reduce the nutrients (nitrogen and Phosphorus). According to the results, the percentages of total nitrogen removal efficiency in the IFAS, IFAS-OSA(2h) and IFAS-OSA(4h) systems were 78.56 +/- 2.46, 83.60 +/- 0.92 and 85.03 +/- 1.69, respectively, while the percentages of phosphorus removal efficiency in these systems were 32.69 +/- 8.25, 36.35 +/- 6.73 and 39.87 +/- 3.61, respectively. The PCR-RFLP method showed that C. albicans had the greatest prevalence (n = 36, 90%). Moreover, Vorticella convallaria was identified as the most abundant species of protozoa. The current research demonstrated that the efficiency of the modified IFAS-OSA process was higher than that of IFAS in the removal of nutrients (TN and PO43-P) and can be a suitable method for upgrading the wastewater treatment plants worldwide.
机译:在本研究中,研究了生物营养去除中的集成固定膜活性污泥 - 沉降缺氧缺氧缺氧(IFAS-OSA)系统的效率。氧沉降的缺氧(OSA)过程称为降低营养素(氮和磷)的成本有效的方法。根据结果​​,IFAS,IFAS-OSA(2H)和IFAS-OSA(4H)系统中总氮去除效率的百分比分别为78.56 +/- 2.46,83.60 +/- 0.92和85.03 +/- 1.69 ,而这些系统中的磷去除效率的百分比分别为32.69 +/- 8.25,36.35 +/- 6.73和39.87 +/- 3.61。 PCR-RFLP方法表明,C. albicans的流行率最大(n = 36,90%)。此外,Vorticella Convallaria被认为是最丰富的原生动物。目前的研究表明,改性IFAS-OSA工艺的效率高于除去营养物质(TN和PO43-P)中的IFA的效率,并且可以是全世界升级废水处理厂的合适方法。

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