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混合微生物培养物中聚羟基烷酸酯生产的富化:pH 值和 N、P 浓度的影响。

Enrichment of a mixed microbial culture for polyhydroxyalkanoates production: Effect of pH and N and P concentrations.

机构信息

GENOCOV Research Group, Departament d'Enginyeria Química, Biològica i Ambiental. Escola d'Enginyeria. Edifici Q, c/ de les Sitges S/N, Universitat Autònoma de Barcelona, 08193 Bellaterra (Barcelona), Spain.

GENOCOV Research Group, Departament d'Enginyeria Química, Biològica i Ambiental. Escola d'Enginyeria. Edifici Q, c/ de les Sitges S/N, Universitat Autònoma de Barcelona, 08193 Bellaterra (Barcelona), Spain.

出版信息

Sci Total Environ. 2017 Apr 1;583:300-307. doi: 10.1016/j.scitotenv.2017.01.069. Epub 2017 Jan 20.

Abstract

Polyhydroxyalkanoates (PHA) are biopolymers that can be an alternative against conventional plastics. The study reported herein evaluated the enrichment of a mixed microbial culture (MMC) operated under feast/famine regime and different pHs in a sequencing batch reactor (SBR) using acetate as sole carbon source to produce polyhydroxyalkanoates (PHAs). The enrichment step was evaluated at controlled pH of 7.5 and also without pH control (averaged value of 9.0). The acetate uptake rate (-q) of both enrichments at the end of the experimental period exhibited similar behaviour being about 0.18CmolAcCmolXh and 0.19CmolAcCmolXh for SBR-A and SBR-B, respectively. However, the PHA-storing capacity of the biomass enriched without pH control was better, exhibiting a maximum PHA content of 36% (gPHAg VSS) with a PHA production rate (q) of 0.16CmolPHACmolXh. Batch experiments were performed to evaluate PHA-storing capacity of the enriched culture at different pHs and nutrients concentrations. In the pH experiments (without nutrient limitation), it was found that in the absence of controlled pH, the enriched biomass exhibited a PHA content of 44% gPHAg VSS with -q and PHA to substrate yield (Y) of 0.57CmolAcCmolXh and 0.33CmolPHACmolAc, respectively. Regarding the experiments at variable nutrients concentration (pH ranging 8.8 to 9.2), the results indicate that the PHA content in the enriched biomass is significantly higher being around 51% gPHAg VSS under nitrogen limitation. This work demonstrated the feasibility of the enrichment of a MMC with PHA storage ability without pH control. Results also suggest that better PHAs contents and substrate uptake rates are obtained without controlling the pH in the accumulation step. Finally, this work also highlights the importance of understanding the role of nutrients concentration during the accumulation step.

摘要

聚羟基烷酸酯(PHA)是一种生物聚合物,可作为传统塑料的替代品。本文报道了使用乙酸盐作为唯一碳源,在序批式反应器(SBR)中,通过饥饿/饱食和不同 pH 值对混合微生物培养物(MMC)进行富集,以生产聚羟基烷酸酯(PHA)的情况。富集步骤在控制 pH 值为 7.5 以及不控制 pH 值(平均值为 9.0)的条件下进行了评估。在实验结束时,两种富集物的乙酸摄取率(-q)表现出相似的行为,分别为 0.18CmolAcCmolXh 和 0.19CmolAcCmolXh,用于 SBR-A 和 SBR-B。然而,不控制 pH 值富集的生物量的 PHA 储存能力更好,最大 PHA 含量为 36%(gPHAg VSS),PHA 生产速率(q)为 0.16CmolPHACmolXh。进行了分批实验,以评估在不同 pH 值和营养物浓度下富集培养物的 PHA 储存能力。在 pH 实验(无营养物限制)中,发现不控制 pH 值时,富集生物量的 PHA 含量为 44% gPHAg VSS,-q 和 PHA 对底物的产率(Y)分别为 0.57CmolAcCmolXh 和 0.33CmolPHACmolAc。关于可变营养物浓度(pH 值范围为 8.8 至 9.2)的实验,结果表明,在氮限制下,富集生物量的 PHA 含量明显更高,约为 51% gPHAg VSS。这项工作证明了在不控制 pH 值的情况下,富集具有 PHA 储存能力的 MMC 的可行性。结果还表明,在积累步骤中不控制 pH 值时,可以获得更好的 PHA 含量和底物摄取率。最后,这项工作还强调了在积累步骤中了解营养物浓度作用的重要性。

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