首页> 外文期刊>Journal of CO2 Utilization >Continuous photosynthetic abatement of CO2 and volatile organic compounds from exhaust gas coupled to wastewater treatment: Evaluation of tubular algal-bacterial photobioreactor
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Continuous photosynthetic abatement of CO2 and volatile organic compounds from exhaust gas coupled to wastewater treatment: Evaluation of tubular algal-bacterial photobioreactor

机译:来自废气耦合到废水处理的CO2和挥发性有机化合物的连续光合作用:管状藻类光生物反应器的评价

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The continuous abatement of CO2 and toluene from the exhaust gas by an indigenous microalgal-bacterial consortium was investigated in a pilot tubular photobioreactor interconnected to an absorption column using diluted centrate in seawater as a free nutrient source. The removal efficiency of CO2 and toluene was maximised in the vertical absorption column by identifying an optimum liquid to gas (L/G) ratio of 15. The photobioreactor supported steady-state nitrogen and phosphorus removals of 91 +/- 2% and 95 +/- 4% using 15% diluted centrate at 14 and 7 d of hydraulic retention time (HRT), respectively. A decrease in the removal efficiencies of nitrogen (36 +/- 5%) and phosphorus (58 +/- 10%) was recorded when using 30% diluted centrate at 7 d of HRT. The volumetric biomass productivities obtained at an HRT of 7 d accounted for 42 +/- 11 and 80 +/- 3 mg TSS L-1 d(-1) using 15 and 30% centrate, respectively. Stable CO2 (76 +/- 7%) and toluene removals (89 +/- 5%) were achieved at an L/G ratio of 15 regardless of the HRT or centrate dilution. Hence, this study demonstrated the potential of algal-bacterial systems for the continuous removal of CO2 and volatile organic compounds from exhaust gas coupled with the simultaneous treatment of centrate.
机译:研究了在将在海水中的稀释剂中互连的导频微基团 - 细菌聚集器中通过土着微观的微粒细菌联盟从废气中的连续削退。通过将最佳液体(L / g)比鉴定为15.光生物反应器支持稳态氮气和95 +的光生物反应器,CO 2和甲苯在垂直吸收塔中最大化了CO 2和甲苯的去除效率。 / - 4%在14和7 d的液压保留时间(HRT)中使用15%稀释的聚合物。当使用30%稀释的聚合物时,在7天的HRT中使用30%稀释的聚合物时,记录氮气去除效率(36 +/- 5%)和磷(58 +/- 10%)的降低。在7d的HRT中获得的体积生物量产物,分别使用15%和30%的定位占42 +/-11和80 +/- 3mg TSS L-1 D(-1)。无论HRT或用稀释的稀释,稳定的CO 2(76 +/- 7%)和甲苯除去(89 +/- 5%)的含量为15比。因此,本研究证明了用于连续除去CO 2和挥发性有机化合物的藻类细菌系统的潜力与废气同时处理的结合。

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