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Upflow column reactor design for dechlorination of chlorinated pulping wastes by Penicillium camemberti

机译:卡门氏青霉对氯化纸浆废物进行脱氯的上流塔反应器设计

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A Penicillium camemberti strain isolated in our laboratory has been studied for its ability to degrade chlorinated pulping wastes, presumably containing a variety of chlorinated polyphenols. In batch tests, the highest removals (76% AOX, 61% color and 65% TOC) were obtained with 0.2 g/l feed acetate concentration. The tendency of the fungus to dechlorinate bleachery effluents better under non-shaking conditions and to attach onto surfaces suggested the use of immobilized cells rather than freely suspended ones in further exploitation of the process. An upflow glass wool packed column reactor established with this fungus could be operated for nearly two years in the laboratory. At best around 70% AOX could be removed from chlorinated pulping wastes in 7.3 h of contact with no aeration and with a minimal amount of carbon supplement (0.2 g/l). Finally, an asymptotic mathematical formula for determining Michaelis-Menten kinetic rates has been derived. The kinetic rates K_m (the Michaelis constant or saturation constant for the substrate) and V_m (the product of maximum rate for the enzymatic reaction and biomass concentration) were then calculated as 126.386 mg/l and 2.83017 mg/l h, respectively.
机译:我们研究了在我们实验室中分离出的卡门培尔青霉菌株具有降解氯化纸浆废物的能力,该废物可能含有多种氯化多酚。在分批测试中,进料乙酸盐浓度为0.2 g / l时,去除率最高(76%的AOX,61%的颜色和65%的TOC)。在非摇动条件下,真菌对漂白废水进行更好的除氯并附着在表面上的趋势表明,在进一步利用该方法时,应使用固定化的细胞而不是自由悬浮的细胞。用这种真菌建立的上流玻璃棉填充柱反应器可以在实验室中运行近两年。在7.3小时的接触中,充氧量最少为70%,而无需通气且只需添加少量的碳(0.2 g / l)即可将AOX去除。最后,得出了确定米氏运动速率的渐近数学公式。然后计算出动力学速率K_m(底物的米氏常数或饱和常数)和V_m(酶促反应的最大速率与生物质浓度的乘积)分别为126.386 mg / l和2.83017 mg / l h。

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