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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of dissolved oxygen concentration (microaerobic and aerobic) on selective enrichment culture for bioaugmentation of acidic industrial wastewater
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Effect of dissolved oxygen concentration (microaerobic and aerobic) on selective enrichment culture for bioaugmentation of acidic industrial wastewater

机译:溶解氧浓度(微需氧和好氧)对酸性工业废水生物强化的选择性富集培养的影响

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The successful application of bioaugmentation is largely dependent on the selective enrichment of culture with regards to pH, temperature, salt, or specific toxic organic pollutants. In this study, we investigated the effect of dissolved oxygen (DO) concentrations (aerobic, >2mgL ~(-1); microaerobic, <1mgL ~(-1)) on yeast enrichment culture for bioaugmentation of acidic industrial wastewater (pH 3.9-4.7). Clone library analyses revealed that the yeast community shifted in response to different DO levels, and that Candida humilis and Candida pseudolambica were individually dominant in the aerobic and microaerobic enrichment cultures. This would significantly influence the isolation results, and further hinder bioaugmentation due to differences in DO environments during the enrichment and application periods. However, differences in the selective enrichment culture cannot be predicted based on differences in pollutant removal performance. Thus, DO concentrations (aerobic/microaerobic) should be considered a secondary selective pressure to achieve successful bioaugmentation.
机译:生物强化的成功应用在很大程度上取决于对pH,温度,盐或特定有毒有机污染物的选择性培养。在这项研究中,我们研究了溶解氧(DO)浓度(好氧,> 2mgL〜(-1);微氧,<1mgL〜(-1))对酵母菌富集培养物对酸性工业废水(pH 3.9- 4.7)。克隆文库分析表明,酵母菌群体响应于不同的DO水平而发生了变化,并且在好氧和微好氧培养中,Handlis假丝酵母和伪兰假丝酵母分别占主导地位。这将显着影响分离结果,并且由于在富集和应用期间DO环境的差异而进一步阻碍了生物增强。但是,不能基于污染物去除性能的差异来预测选择性浓缩培养的差异。因此,DO浓度(好氧/微好氧)应被视为实现成功的生物强化的次要选择压力。

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