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首页> 外文期刊>Environmental Science: Water Research & Technology >Production of microalgal external organic matter in a CMore/Za-dominated culture: influence of temperature and stress factors
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Production of microalgal external organic matter in a CMore/Za-dominated culture: influence of temperature and stress factors

机译:CMORE / ZA统治培养中微藻外部有机物的生产:温度和应力因子的影响

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摘要

Although microalgae are recognised to release external organic matter (EOM), little is known about this phenomenon in microalgae cultivation systems, especially on a large scale. A study on the effect of microalgae-stressing factors such as temperature, nutrient limitation and ammonium oxidising bacteria (AOB) competition in EOM production by microalgae was carried out. The results showed non-statistically significant differences in EOM production at constant temperatures of 25, 30 and 35 degrees C. However, when the temperature was raised from 25 to 35 degrees C for 4 h a day, polysaccharide production increased significantly, indicating microalgae stress. Nutrient limitation also seemed to increase EOM production. No significant differences were found in EOM production under lab conditions when the microalgae competed with AOB for ammonium uptake. However, when the EOM concentration was monitored during continuous outdoor operation of a membrane photobioreactor (MPBR) plant, nitrifying bacteria activity was likely to be responsible for the increase in EOM concentration in the culture. Other factors such as high temperatures, ammonium-depletion and low light intensities could also have induced cell deterioration and thus have influenced EOM production in the outdoor MPBR plant. Membrane fouling seemed to depend on the biomass concentration of the culture. However, under the operating conditions tested, the behaviour of fouling rate with respect to the EOM concentration was different depending on the initial membrane state.
机译:虽然微藻被认识到释放外部有机物质(EOM),但是关于这种微藻培养系统中这种现象的知名,特别是在大规模上少知。进行了微藻生产温度,营养素限制和氧化细菌(Aob)竞争中的微藻胁迫因素效果的研究进行了微藻。结果表明,在恒定温度下,在25,30和35℃的恒定温度下产生非统计学上显着差异。但是,当温度从25至35℃下升高4小时时,多糖的产生显着增加,表明微藻胁迫。营养限制似乎也增加了EOM生产。在实验室条件下,在微藻与AOB竞争中的AOB用于铵的摄取时,在实验室条件下没有发现显着差异。然而,当在膜光生物反应器(MPBR)植物的连续室外操作期间监测EOM浓度时,硝化的细菌活性可能是培养物中EOM浓度的增加。其他因素如高温,耗尽和低光强度也可能具有诱导的细胞劣化,因此影响了室外MPBr植物中的EOM产生。膜污垢似乎取决于培养物的生物质浓度。然而,在测试的操作条件下,根据初始膜状态,相对于EOM浓度的污垢率的行为不同。

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    Univ Politecn Valencia Inst Univ Invest Engn Aigua & Medi Ambient IIAMA CALAGUA Unidad Mixta UV UPV Cami de Vera S-N Valencia 46022 Spain;

    Univ Politecn Valencia Inst Univ Invest Engn Aigua & Medi Ambient IIAMA CALAGUA Unidad Mixta UV UPV Cami de Vera S-N Valencia 46022 Spain;

    Univ Politecn Valencia Inst Univ Invest Engn Aigua & Medi Ambient IIAMA CALAGUA Unidad Mixta UV UPV Cami de Vera S-N Valencia 46022 Spain;

    Univ Politecn Valencia Inst Univ Invest Engn Aigua & Medi Ambient IIAMA CALAGUA Unidad Mixta UV UPV Cami de Vera S-N Valencia 46022 Spain;

    Univ Valencia Dept Engn Quim CALAGUA Unidad Mixta UVUPV Avinguda Univ S-N Burjassot 46100 Spain;

    Univ Politecn Valencia Inst Univ Invest Engn Aigua & Medi Ambient IIAMA CALAGUA Unidad Mixta UV UPV Cami de Vera S-N Valencia 46022 Spain;

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