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Multi-Objective Optimization of an Integrated Algal and Sludge-Based Bioenergy Park and Wastewater Treatment System

机译:基于集成藻类和污泥的生物能量公园和废水处理系统的多目标优化

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摘要

Given increasing energy demand and global warming potential, the advancements in bioenergy production have become a key factor in combating these issues. Biorefineries have been effective in converting biomass into energy and valuable products with the added benefits of treating wastewater used as a cultivation medium. Recent developments enable relationships between sewage sludge and microalgae that could lead to higher biomass and energy yields. This study proposes a multi-objective optimization model that would assist stakeholders in designing an integrated system consisting of wastewater treatment systems, an algal-based bioenergy park, and a sludge-based bioenergy park that would decide which processes to use in treating wastewater and sludge while minimizing cost and carbon emissions. The baseline run of the model showed that the three plants were utilized in treating both sludge and water for the optimal answer. Running the model with no storage prioritizes water disposal, while having storage can help produce more energy. Sensitivity analysis was performed on storage costs and demand. Results show that decreasing the demand is directly proportional to the total costs while increasing it can help reduce expected costs through storage and utilizing process capacities. Costs of storage do not cause a huge overall difference in costs and directly follow the change.
机译:鉴于增加能源需求和全球变暖潜力,生物能源生产的进步已成为打击这些问题的关键因素。生物猎物在将生物质转化为能量和有价值的产品方面,具有治疗用作培养培养基的废水的额外益处。最近的发展能够实现污水污泥和微藻之间的关系,这可能导致更高的生物量和能量产量。本研究提出了一种多目标优化模型,可以帮助利益相关者设计由废水处理系统,基于藻类的生物能量公园和污泥的生物能源公园组成的综合系统,这些公园将决定用于治疗废水和污泥的过程尽量减少成本和碳排放量。该模型的基线运行表明,用于治疗污泥和水的三种植物进行最佳答案。运行没有存储优先级的模型,储存可以帮助产生更多能量。对储存成本和需求进行敏感性分析。结果表明,降低需求与总成本直接成正比,同时增加它可以通过储存和利用流程能力来降低预期成本。存储费用不会导致成本的巨大差异,直接遵循变化。

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