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Screening of microalgae for integral biogas slurry nutrient removal and biogas upgrading by different microalgae cultivation technology

机译:通过不同的微藻栽培技术筛选微藻以去除沼气中的整体养分和提高沼气的利用率

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摘要

The microalgae-based technology has been developed to reduce biogas slurry nutrients and upgrade biogas simultaneously. In this work, five microalgal strains named Chlorella vulgaris, Scenedesmus obliquus, Selenastrum capricornutum, Nitzschia palea, and Anabaena spiroides under mono- and co-cultivation were used for biogas upgrading. Optimum biogas slurry nutrient reduction could be achieved by co-cultivating microalgae (Chlorella vulgaris, Scenedesmus obliquus, and Nitzschia palea) with fungi using the pelletization technology. In addition, the effects of different ratio of mixed LED light wavelengths applying mixed light-emitting diode during algae strains and fungi co-cultivation on CO2 and biogas slurry nutrient removal efficiency were also investigated. The results showed that the COD (chemical oxygen demand), TN (total nitrogen), and TP (total phosphorus) removal efficiency were 85.82 ± 5.37%, 83.31 ± 4.72%, and 84.26 ± 5.58%, respectively at red: blue = 5:5 under the co-cultivation of S. obliquus and fungi. In terms of biogas upgrading, CH4 contents were higher than 90% (v/v) for all strains, except the co-cultivation with S. obliquus and fungi at red: blue = 3:7. The results indicated that co-cultivation of microalgae with fungi under mixed light wavelengths treatments was most successful in nutrient removal from wastewater and biogas upgrading.
机译:已经开发了基于微藻的技术,以减少沼液的养分并同时提升沼气。在这项工作中,使用了五种微藻菌株,分别进行了单培养和共培养,分别将其命名为小球藻,斜生栅藻,七叶硒,小球藻和螺旋藻的微藻菌株。通过使用制粒技术将微藻类(小球藻,斜生藻和斜纹夜蛾)与真菌共同培养,可以实现最佳的沼液养分减少。此外,还研究了在藻类菌株和真菌共培养期间,应用混合发光二极管的混合LED光波长的不同比例对CO2和沼液养分去除效率的影响。结果表明,红色处的COD(化学需氧量),总氮(TN)和总磷(TP)的去除效率分别为85.82±5.37%,83.31±4.72%和84.26±5.58%,蓝色:= 5 :5在斜生链霉菌和真菌的共同培养下。就沼气提质而言,除与斜生链霉菌和真菌在红色:蓝色== 3:7的条件下共培养外,所有菌株的CH4含量均高于90%(v / v)。结果表明,在混合光波长处理下,微藻类与真菌的共培养在去除废水中的养分和改善沼气方面最成功。

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