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首页> 外文期刊>Advances in Chemical Engineering and Science >Evaluation of the Inverse Fluidized Bed Biological Reactor for Treating High-Strength Industrial Wastewaters
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Evaluation of the Inverse Fluidized Bed Biological Reactor for Treating High-Strength Industrial Wastewaters

机译:逆流化床生物反应器处理高强度工业废水的评价

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The aim of this work was to investigate the aerobic degradation of high-strength industrial (refinery) wastewaters in the inverse fluidized bed biological reactor, in which polypropylene particles of density 910 kg/m3 were fluidized by an upward flow of gas through a bed. Measurements of chemical oxygen demand (COD) versus residence time t were performed for various ratios of settled bed volume to reactor volume (Vb/VR) and air velocities u. The largest COD reduction, namely, from 54,840 to 2,190 mg/l, i.e. a 96% COD decrease, was achieved when the reactor was operated at the ratio (Vb/VR) = 0.55, air velocity u = 0.046 m/s and t = 65 h. Thus, these values of (Vb/VR), u and t can be considered as the optimal operating parameters for a reactor when used in treatment of high-strength refinery wastewaters. In the treatment operation conducted in a reactor optimally controlled at (Vb/VR) = 0.55, u = 0.046 m/s and t = 65 h, the conversions obtained for all phenolic constituents of the wastewater were larger than 95%. The conversions of about 90% were attained for other hydrocarbons.
机译:这项工作的目的是研究逆流化床生物反应器中高强度工业(炼油厂)废水的好氧降解,其中向上流动的气流通过床使密度为910 kg / m3的聚丙烯颗粒流化。针对沉降床体积与反应器体积(Vb / VR)和空气流速u的各种比率,进行了化学需氧量(COD)与停留时间t的测量。当反应器以比率(Vb / VR)= 0.55,空气速度u = 0.046 m / s和以下条件运行时,可实现最大的COD降低,即从54,840降至2,190 mg / l,即降低96%的COD。 t = 65小时。因此,当(Vb / VR),u和t的这些值用于处理高强度炼油厂废水时,可以认为是反应堆的最佳运行参数。在最佳控制为(Vb / VR)= 0.55,u = 0.046 m / s和t = 65 h的反应器中进行的处理操作中,废水中所有酚类成分的转化率均大于95%。其他烃类的转化率约为90%。

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