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Enhancement of methane production and wastewater treatment from algae

机译:增强藻类生产和废水处理

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In this study, the synergy between wastewater treatment and anaerobic co-digestion (AC) was evaluated. To fulfill this objective, urban wastewater and pig effluents were treated by means of microalgae and macroalgae sampled from Limay River, Neuquén-Argentina. Comparison between macroalgae, aquatic and terrestrial plants as best co-substrate in AC process was performed using Biochemical Methane Potential (BMP) method. To understand their contributions to methane production, Biological Nutrient Removal Model N°2 (BNRM2) was used to represent dynamic data of BMP assays. Results indicate high performance of organic matter removal by algae (63.8 ± 0.5%COD) with high biomass production. BMP assays showed macroalgae as the high methane potential cosubstrate (157.2 ± 66.1 ml CH_(4)/g VS). BNRM2 implementation showed good fit of dynamic data and reveals that the more methane produced, the higher the hydrolysis rate. In conclusion, algae could be used as a link point between wastewater depuration and anaerobic co-digestion processes.
机译:在这项研究中,评估了废水处理和厌氧共消化(AC)之间的协同作用。为了实现这一目标,通过微藻和大草原从石米河,Neuquén-阿根廷的微藻和大草种进行治疗城市废水和猪流出物。使用生物化学甲烷电位(BMP)方法进行大草原,水生植物和陆地植物作为最佳共衬底的比较。为了了解他们对甲烷生产的贡献,使用生物营养去除模型N°2(BNRM2)来表示BMP测定的动态数据。结果表明,具有高生物量生产的藻类(63.8±0.5%COD)的有机质除去的高性能。 BMP测定显示Macroalgae作为高甲烷电位粘接(157.2±66.1ml CH_(4)/ g Vs)。 BNRM2实施显示出良好的动态数据,并揭示了产生的甲烷越多,水解率越高。总之,藻类可以用作废水钙钙质和厌氧共消化过程之间的连杆点。

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