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Exploring threshold operation criteria of biostimulation for azo dye decolorization using immobilized cell systems

机译:探索使用固定化细胞系统进行偶氮染料脱色生物刺激的阈值操作标准

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This follow-up study provided an evaluation on threshold operation criteria of biostimulation in immobilized cell systems (ICSs) with Aeromonas hydrophila onto packing materials Porites corals. Essential nutrients in appropriate flow rate for biostimulation were inevitably required to maintain maximum attached cell population for cost-effective biodecolorization. With the method of "graphical reconstruction", the most economically feasible strategy of medium stimulation for color removal was quantitatively revealed. Our findings pointed out no matter what operation mode of reactor was (e.g., suspended batch cultures or ICS) color removal efficiency for A. hydrophila still strongly depended upon intrinsic kinetics and chemical reactivities of azo dyes. Mass transport effects in ICS might not play most significant roles to limit dye biodecolorization of A. hydrophila (except Reactive red 198, Reactive green 19), as relative rankings of color removal rates of various dyes were almost in parallel with those in suspended batch cultures.
机译:这项后续研究评估了嗜水气单胞菌在包装材料多孔珊瑚上的固定细胞系统(ICS)中生物刺激的阈值操作标准。为了经济高效地进行生物脱色,不可避免地需要以适当的流速进行生物刺激所必需的营养素,以维持最大的附着细胞群。通过“图形重建”方法,定量揭示了最经济可行的介质刺激除色策略。我们的发现指出,无论反应器的操作模式是什么(例如,悬浮式分批培养或ICS),对亲水链球菌的脱色效率仍然强烈取决于偶氮染料的内在动力学和化学反应性。 ICS中的传质效应可能对限制嗜水链球菌的染料生物脱色没有最重要的作用(活性红198,活性绿19除外),因为各种染料的脱色率的相对等级与悬浮培养中的脱色率几乎平行。

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