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Increasing self-sufficiency of a wastewater treatment plant with integrated implementation of anaerobic co-digestion and photovoltaics

机译:厌氧处理厂的自给自足,通过厌氧共消化和光伏的综合实施

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The transition for a circular economy is considered as a development pillar of European Union, due to the conservation and continued valuation of resources in the economy. This requires an integrated approach addressing energy consumption, use of raw materials, treatment and valorization of resources, new business models and synergies among industrial stakeholders. Managing and adding value to organic residues is a challenge and an opportunity for industries that produce these by-products. If anaerobic digestion is fundamental in this valuation, the quality and quantity of the obtained biogas, as well as the required energy intensity, dictate the participation of these stakeholders in the circular economy. A systemic approach is proposed in this work, fostering the vision of a circular economy in industries that generate organic residues, by considering the potential of renewable energy (photovoltaics) for self-consumption of locally generated electrical energy, and anaerobic co-digestion for improving the efficiency of biofuel production. A wastewater treatment plant is analysed, and the benefits of this integrated approach are highlighted.
机译:由于保护和持续估值在经济中的资源持续估值,循环经济的转型被视为欧盟的发展支柱。这需要一个综合方法解决能源消耗,原材料,资源处理和贪婪,新商业模式和工业利益相关者之间的协同作用。对有机残留物管理和增加价值是一种挑战,并为生产这些副产品的行业提供挑战。如果厌氧消化在该估值中是基础,所获得的沼气的质量和数量以及所需的能源强度,请决定这些利益攸关方在循环经济中的参与。在这项工作中提出了一种系统方法,通过考虑可再生能源(光伏)的潜在局部产生的电能(光伏)的潜力,促进产生有机残留物的循环经济的愿景,以及用于改善的厌氧共同消化生物燃料生产的效率。分析了废水处理厂,突出了这种综合方法的好处。

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