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首页> 外文期刊>Journal of Applied Phycology >Feasibility study of biogas upgrading coupled with nutrient removal from anaerobic effluents using microalgae-based processes
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Feasibility study of biogas upgrading coupled with nutrient removal from anaerobic effluents using microalgae-based processes

机译:利用基于微藻的工艺进行沼气提质并从厌氧废水中去除营养物的可行性研究

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摘要

The present research was conducted to simultaneously optimize biogas upgrading and carbon and nutrient removal from centrates in a 180-L high-rate algal pond interconnected to an external CO2 absorption unit. Different biogas and centrate supply strategies were assessed to increase biomass lipid content. Results showed 99 % CO2 removal efficiencies from simulated biogas at liquid recirculation rates in the absorption column of 9.9 m(3) m(-2) h(-1), concomitant with nitrogen and phosphorus removal efficiencies of 100 and 82 %, respectively, using a 1: 70 diluted centrate at a hydraulic retention time of 7 days. The lipid content of the harvested algal-bacterial biomass remained low (2.9-11.2 %) regardless of the operational conditions, with no particular trend over time. The good settling characteristics of the algal-bacterial flocs resulted in harvesting efficiencies over 95 %, which represents a cost-effective alternative for algal biomass reutilization compared to conventional physical-chemical techniques. Finally, high microalgae biodiversity was found regardless of the operational conditions.
机译:进行本研究的目的是,同时优化与外部CO2吸收装置相连的180升高速率藻类池塘中沼液的提质以及从浓缩液中去除碳和营养物质。评估了不同的沼气和离心液供应策略,以增加生物质脂质含量。结果显示,在9.9 m(3)m(-2)h(-1)的吸收塔中,液体再循环速率下,模拟沼气的CO 2去除效率为99 m,同时氮和磷的去除效率分别为100%和82%,在7天的水力停留时间内使用1:70稀释的离心液。无论操作条件如何,收获的藻类细菌生物质的脂质含量均保持较低(2.9-11.2%),并且随时间没有特别的趋势。藻类细菌絮凝物的良好沉降特性导致收获效率超过95%,与传统的物理化学技术相比,这是藻类生物质再利用的经济有效替代方案。最后,无论操作条件如何,都发现了高微藻生物多样性。

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