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Anaerobic metabolic models for phosphorus- and glycogen-accumulating organisms with mixed acetic and propionic acids as carbon sources

机译:混合乙酸和丙酸作为碳源的磷和糖原积累生物的厌氧代谢模型

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With acetate or propionate as the sole carbon source, anaerobic metabolic models describing phosphorus- and glycogen-accumulating organisms (PAO and GAO) have been developed in the literature. However, comprehensive models are in need for the description of PAO and GAO behaviors with mixed acetic and propionic acids as carbon sources since they are the two main volatile fatty acids (VFA) that coexist in real wastewat'er. Two metabolic models were proposed to characterize the anaerobic stoichiometry of PAO and GAO, respectively, and two groups of sequencing batch reactors (i.e. 5 PAO-SBRs and 5 GAO-SBRs) with different propionic to acetic acid ratios were used for the validation of the models. The experimental data indicated that polyhydroxyalkanoates were synthe-sized via random condensation in GAO cells, whereas the semi-selective/semi-random pathway was used for the integration of acetyl-CoA and propionyl-CoA in PAO cells. When the VFA was pure acetic or propionic acid, the proposed PAO (or GAO) model reverted back to the reported acetate or propionate PAO (or GAO) model. Results also showed that the energy required for the transportation of 1 C-mol VFA across the membrane of both PAO and GAO cells was independent of the propionate/acetate ratio.
机译:以乙酸盐或丙酸盐为唯一碳源,文献中已经开发了描述磷和糖原积累生物(PAO和GAO)的厌氧代谢模型。但是,需要以乙酸和丙酸为碳源的综合模型来描述PAO和GAO行为,因为它们是实际废物中共存的两种主要挥发性脂肪酸(VFA)。提出了两种代谢模型来表征PAO和GAO的无氧化学计量学,并使用两组具有不同丙酸和乙酸比的测序间歇反应器(即5个PAO-SBR和5个GAO-SBRs)来验证厌氧化学计量学。楷模。实验数据表明,聚羟基链烷酸酯是通过GAO细胞中的随机缩合合成的,而半选择性/半随机途径则用于PAO细胞中乙酰辅酶A和丙酰辅酶A的整合。当VFA为纯乙酸或丙酸时,建议的PAO(或GAO)模型恢复为已报道的乙酸或丙酸酯PAO(或GAO)模型。结果还表明,1 C-mol VFA穿过PAO和GAO细胞膜的运输所需的能量与丙酸酯/乙酸酯的比例无关。

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