首页> 外文期刊>World Journal of Microbiology & Biotechnology >Photosynthetic based algal-bacterial combined treatment of mixtures of organic pollutants and CO2 mitigation in a continuous photobioreactor
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Photosynthetic based algal-bacterial combined treatment of mixtures of organic pollutants and CO2 mitigation in a continuous photobioreactor

机译:在连续光生物反应器中基于光合作用的藻细菌联合处理有机污染物混合物和缓解CO2

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An algal-bacterial microcosm was synthetically constructed of Chlorella vulgaris MMl and Pseudomonas MTl. This microcosm was able to treat simulated wastewater supplemented with mixtures of phenol and pyridine up to 4.6 and 4.4 mM, respectively, in a continuous stirred tank bioreactor (CSTR) using photosynthetic oxygenation. Complete pollutant removal and detoxification and 82 % removal of introduced chemical oxygen demand (COD) were achieved at a hydraulic retention time (HRT) of 2.7 days. Increasing the influent load to 5.3 and 6.3 mM reduced the removal of phenol, pyridine and COD to 78, 21 and 59 %, respectively. Fertilization of the photobioreactor with 24 mM NaHCO3 restored the treatment and detoxification efficiencies. The system was able to additionally mitigate up to 72 mM NaHCO3 at the same HRT. Although the fertilization increased the system treatment efficiency, the settleability of the algal-bacterial microcosm was significantly reduced. When the photobioreactor was operated at HRT of 2.7 days in a 12/12 h of dark/light cycle, complete removal of 4.7 mM phenol was recorded but only 11 % of 5.7 mM pyridine was removed. The COD removal efficiency and CO2 mitigation were also reduced to 65 and 86 %, respectively, and the effluent retained significant toxicity where 73 % inhibition was recorded. Elongation of the illumination time to 48 h (HRT of 4 days at 12/12 h dark/light cycle) restored the treatment and detoxification efficiencies.
机译:由小球藻MM1和假单胞菌MT1合成构建的藻类细菌缩影。这个缩影能够在使用光合作用氧化的连续搅拌釜生物反应器(CSTR)中处理分别添加了4.6和4.4 mM苯酚和吡啶混合物的模拟废水。在2.7天的水力停留时间(HRT)下,可以完全去除污染物和排毒,并去除82%的引入的化学需氧量(COD)。将进水量增加到5.3和6.3 mM,苯酚,吡啶和COD的去除率分别降低到78%,21%和59%。用24 mM NaHCO3施肥光生物反应器可恢复治疗和排毒效率。该系统能够在同一HRT上额外缓解高达72 mM的NaHCO3。尽管施肥提高了系统处理效率,但藻细菌微观世界的沉降能力却大大降低了。当光生物反应器在12/12小时的暗/亮循环中以2.7天的HRT操作时,记录到完全去除了4.7 mM苯酚,但仅去除了11%的5.7 mM吡啶。 COD去除效率和CO2缓解率也分别降低到65%和86%,并且废水保留了显着的毒性,其中记录到73%的抑制作用。将照明时间延长至48小时(在12/12小时的暗/亮周期中,HRT为4天)恢复了治疗和排毒效率。

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