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Effect of flow rate on growth and oxygen consumption of biofilm in gravity sewer

机译:流速对重力下水道生物膜生长和氧气消耗的影响

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The function of sewer as reactors must rely on the biofilm in it. In this paper, the formation, structure, oxygen transfer, and activity of the biofilm under different hydraulic conditions were studied by the microelectrode technology, oxygen uptake rate (OUR) technology, and 454 high-throughput pyrosequencing technology. Results showed that when the wall-shear stresses were 1.12, 1.29, and 1.45 Pa, the porosity of the steady-state biofilm were 69.1, 64.4, and 55.1 %, respectively. The maximum values of OUR were 0.033, 0.027, and 0.022 mg/(L*s), respectively, and the COD removal efficiency in the sewers reached 40, 35, and 32 %, respectively. The research findings had an important significance on how to improve the treatment efficiency of the sewers.
机译:作为反应器的下水道的功能必须依赖于它的生物膜。 本文通过微电极技术,氧气摄取率(我们)技术和454个高通量焦塞序列技术研究了生物膜下的形成,结构,氧转移和生物膜下的形成,结构,氧气转移和活性。 结果表明,当壁剪切应力为1.12,129和1.45Pa时,稳态生物膜的孔隙率分别为69.1,64.4和55.1%。 我们的最大值分别为0.033,0.027和0.022mg /(l * s),并且下水道中的COD去除效率分别达到40,35和32%。 研究结果对如何提高下水道的治疗效率具有重要意义。

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