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Polyhydroxybutyrate and glycogen production in photobioreactors inoculated with wastewater borne cyanobacteria monocultures

机译:聚羟基丁酸酯和糖原产生在光生物反应器中接种废水传承蓝藻单一栽培

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摘要

The aim of this study was to investigate the PHB and glycogen accumulation dynamics in two photobioreactors inoculated with different monocultures of wastewater-borne cyanobacteria, using a three-stage feeding strategy (growth phase, feast-famine phase and feast phase). Two cyanobacterial monocultures containing members of Synechocystis sp. or Synechococcus sp. were collected from treated wastewater and inoculated in lab-scale photobioreactors to evaluate the PHB and glycogen accumulation. A third photobioreactor with a complex microbial community grown in real wastewater was also set up. During each experimental phase different concentrations of inorganic carbon were applied to the cultures, these shifts allowed to discern the accumulation mechanism of carbon storage polymers (PHB and glycogen) in cyanobacteria. Conversion of one into the other was directly related to the carbon content. The highest PHB and glycogen contents (5.04%(dcw) and 69%(dcw), respectively) were achieved for Synechocystis sp.
机译:本研究的目的是研究两种光生物反应器中的PHB和糖原累积动态,其接种不同的废水 - 传播的蓝藻的单一形式,使用三阶段饲养策略(生长阶段,宴会相和盛宴)。两种含有Senchocystis sp成员的蓝细菌单栽培。或synechococcus sp。从经过处理过的废水中收集并接种在实验室级光生物反应器中以评估PHB和糖原积聚。还设立了具有复杂的微生物群落的第三次光生物反应器。在每种实验相期间,将不同浓度的无机碳施加到培养物中,这些变化允许辨别碳储存聚合物(PHB和糖原)的碳酸碳菌的累积机制。将一个转化为另一个与碳含量直接相关。对于SyneChocystis SP,分别实现了最高的PHB和糖原含量(5.04%(DCW)和69%(DCW)。

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