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Decolonization of azo dye by immobilized Pseudomonas luteola entrapped in alginate-silicate sol-gel beads

机译:固定在藻酸盐-硅酸盐溶胶-凝胶珠粒中的固定化假单胞菌黄藻对偶氮染料的脱色

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摘要

Pseudomonas luteola was immobilized by entrapment in alginate—silicate sol-gel beads for decolorization of the azo dye, Reactive Red 22. The influences of biomass loading and operating conditions on specific decolorization rate and dye removal efficiency were studied in details. The immobilized cells were found to be less sensitive to changes in agitation rates (dissolved oxygen levels) and pH values. Michaelis-Menten kinetics could be used to describe the decolorization kinetics with the kinetic parameters being 36.5 mg g~(-1) h~(-1), 300.1 mg l~(-1) and 18.2 mg g~(-1) h~(-1), 449.8 mg l~(-1) for free and immobilized cells, respectively. After five repeated batch cycles, the decolorization rate of the free cells decreased by nearly 54%, while immobilized cells still retained 82% of their original activity. The immobilized cells exhibited better thermal stability during storage and reaction when compared with free cells. From SEM observation, a dense silicate gel layer was found to surround the macroporous alginate-silicate core, which resulted in much improved mechanical stability over that of alginate beads when tested under shaking conditions. Alginate-silicate matrices appeared to be the best matrix for immobilization of P. luteola in decolorization of Reactive Red 22 when compared with previous results using synthetic or natural polymer matrices.
机译:黄藻假单胞菌通过包埋在藻酸盐-硅酸盐溶胶-凝胶珠中固定化,以使偶氮染料活性红22脱色。详细研究了生物量和操作条件对比色率和脱色率的影响。发现固定的细胞对搅拌速率(溶解氧水平)和pH值的变化不敏感。 Michaelis-Menten动力学可用于描述脱色动力学,其动力学参数为36.5 mg g〜(-1)h〜(-1),300.1 mg l〜(-1)和18.2 mg g〜(-1)h游离细胞和固定化细胞分别为(-1),449.8 mg l(-1)。经过五个重复的批处理循环,游离细胞的脱色率降低了近54%,而固定化细胞仍保留了其原始活性的82%。与游离细胞相比,固定化细胞在储存和反应过程中表现出更好的热稳定性。从SEM观察,发现在大孔藻酸盐-硅酸盐核周围包围了致密的硅酸盐凝胶层,与在摇动条件下测试相比,藻酸盐珠的机械稳定性大大提高。与先前使用合成或天然聚合物基质的结果相比,藻酸盐-硅酸盐基质似乎是将活性红22脱色固定黄褐藻的最佳基质。

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