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EBP2R-An innovative enhanced biological nutrient recovery activated sludge system to produce growth medium for green microalgae cultivation

机译:EBP2R-一种创新的增强型生物营养物回收活性污泥系统,可生产绿色微藻培养用生长培养基

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Current research considers wastewater as a source of energy, nutrients and water and not just a source of pollution. So far, mainly energy intensive physical and chemical unit processes have been developed to recover some of these resources, and less energy and resource demanding alternatives are needed. Here, we present a modified enhanced biological phosphorus removal and recovery system (referred to as EBP2R) that can produce optimal culture media for downstream micro-algal growth in terms of N and P content. Phosphorus is recovered as a P-stream by diversion of some of the effluent from the upstream anaerobic reactor. By operating the process at comparably low solids retention times (SRT), the nitrogen content of wastewater is retained as free and saline ammonia, the preferred form of nitrogen for most micro-algae. Scenario simulations were carried out to assess the capacity of the EBP2R system to produce nutrient rich organic-carbon depleted algal cultivation media of target composition. Via SRT control, the quality of the constructed cultivation media can be optimized to support a wide range of green micro-algal growth requirements. Up to 75% of the influent phosphorus can be recovered, by diverting 30% of the influent flow as a P-stream at an SRT of 5 days. Through global sensitivity analysis we find that the effluent N-to-P ratio and the P recovered are mainly dependent on the influent quality rather than on bioldnetics or stoichiometry. Further research is needed to demonstrate that the system performance predicted through the model-based design can be achieved in reality. (C) 2014 Elsevier Ltd. All rights reserved.
机译:当前的研究认为废水不仅是能源,营养和水的来源,而且不仅仅是污染的来源。迄今为止,已经开发出主要耗能的物理和化学单元工艺来回收其中的一些资源,并且需要更少的能源和对资源有需求的替代品。在这里,我们提出了一种改良的增强型生物除磷和回收系统(称为EBP2R),该系统可以生产出用于氮和磷含量方面的下游微藻生长的最佳培养基。通过转移上游厌氧反应器中的部分废水,磷可以作为P流回收。通过以相对较低的固体保留时间(SRT)进行操作,废水中的氮含量被保留为游离氨和盐水氨,这是大多数微藻类首选的氮形式。进行了场景模拟,以评估EBP2R系统生产目标成分丰富的富含营养的有机碳藻类培养基的能力。通过SRT控制,可以优化构建的培养基的质量,以支持各种绿色微藻生长要求。通过在5天的SRT上将30%的进水流量作为P流分流,最多可以回收75%的进水磷。通过全局敏感性分析,我们发现污水中的氮磷比和回收的磷主要取决于进水质量,而不是依赖于双线性或化学计量。需要进一步的研究来证明通过基于模型的设计预测的系统性能可以在现实中实现。 (C)2014 Elsevier Ltd.保留所有权利。

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