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Factorial Experimental Designs for Enhancement of Concurrent Poly(Hydroxyalkanoate) Production and Brewery Wastewater Treatment

机译:增强并发聚(羟基链烷酸酯)生产和啤酒废水处理的析因实验设计

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摘要

The influence of four main process parameters-solids retention time (SRT), hydraulic retention time (HRT), anoxic-oxic cycling, and carbon-to-nitrogen ratio (C/N ratio)-on poly(hydroxyalk-anoate) (PHA) production, while treating brewery wastewater, was studied. Two sets of two-level, three-factor experimental designs were implemented to (1) determine the effects and interactions among process parameters, (2) assess their significance to PHA production, and (3) approximate optimal operational conditions. The HRT and SRT were found to be the crucial operational parameters affecting PHA production. The highest PHA content of 55% (on a cell-weight basis) was produced at a 4-day HRT and 4-day SRT, whereas a maximum PHA concentration of 907 mg/L was obtained at a 2-day HRT and 12-day SRT. The effect of anoxic conditions on PHA production was insignificant. The C/N ratio played a more important role in the PHA concentration in the system than in the PHA content in the biomass.
机译:四个主要工艺参数-固体保留时间(SRT),水力保留时间(HRT),缺氧-有氧循环和碳氮比(C / N比)-对聚(羟基烷酸)(PHA)的影响)生产,同时处理啤酒废水,进行了研究。实施了两组两级,三因素的实验设计,以(1)确定工艺参数之间的影响和相互作用,(2)评估其对PHA生产的重要性,以及(3)近似最佳操作条件。发现HRT和SRT是影响PHA生产的关键操作参数。在第4天的HRT和第4天的SRT时产生的最高PHA含量为55%(以细胞重量为基准),而在第2天的HRT和12-HRT时获得的最大PHA浓度为907 mg / L。天SRT。缺氧条件对PHA产生的影响不明显。 C / N比对系统中PHA浓度的影响比对生物质中PHA含量的影响更大。

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