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Cyanobacterial Growth in Minimally Amended Anaerobic Digestion Effluent and Flue-Gas

机译:最少修正厌氧消化废水和烟气中蓝藻的生长

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摘要

Anaerobic digestion (AD) is an important industrial process, particularly in a biorefinery approach. The liquid effluent and carbon dioxide in the off-gas, can be used to produce high-value products through the cultivation of cyanobacteria. Growth on AD effluent is often limited due to substrate limitation or inhibitory compounds. This study demonstrates the successful cultivation of on minimally amended AD effluent, supplemented with MgSO and diluted with seawater. An 8 L airlift reactor illustrated growth in a pilot scale setup. Higher biomass yields were observed for cyanobacteria grown in diluted AD effluent compared to minimal medium, with 60% total nitrogen removal in the effluent. It was demonstrated that controlling the pH, increasing dissolved salt concentrations and adding MgSO to the effluent allowed for the successful cultivation of the cyanobacterium, circumventing the addition of clean water for effluent dilution. This could ultimately increase the feasibility of anaerobic digestion-microalgae integrated biorefineries.
机译:厌氧消化(AD)是重要的工业过程,尤其是在生物精炼方法中。废气中的液体流出物和二氧化碳可用于通过蓝细菌的培养来生产高价值的产品。由于底物的限制或抑制性化合物的存在,通常会限制AD废水的生长。这项研究表明,在经过微调的AD废水中添加了MgSO4并用海水稀释后,可以成功地进行养殖。一个8升空运反应堆说明了中试规模装置的增长。与基本培养基相比,在稀释的AD废水中生长的蓝细菌观察到更高的生物量产量,废水中的总氮去除率为60%。结果表明,控制pH值,增加溶解的盐浓度并在废水中添加MgSO可成功培养蓝藻,从而避免了添加用于稀释废水的净水。这最终可以增加厌氧消化-微藻整合生物精炼厂的可行性。

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