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Energy Integration in Wastewater Treatment Plants by Anaerobic Digestion of Urban Waste: A Process Design and Simulation Study

机译:城市废物厌氧消化废水处理厂的能量整合:过程设计与仿真研究

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摘要

The process simulation performed in the present study aimed at investigating energetically self-sufficient wastewater treatment plant of 500,000 population equivalents. To implement this, three different scenarios were evaluated using computational tools named GPS-X? and SuperPro?. They were designed based on municipal wastes recovery to energy generation and its utilisation within the facility. An anaerobic/anoxic/oxic process for biological treatment of wastewater was considered and mesophilic anaerobic digestion at different scenarios (1) primary sludge (PS) with waste activated sludge (WAS), (2) PS with thermally hydrolysed WAS, and (3) PS with WAS and organic fractions derived from municipal solid waste. The results from scenario 1 and scenario 2 showed only enough thermal energy to meet their demand (they reach only 44 and 52% of electrical self-sufficiency, respectively), while positive net thermal and electrical energy result in scenario 3 from codigestion of sewage sludge and the organic fraction of municipal solid waste. The main limitation of tools used is their lack of sensitivity to economies of scale and their dependence on real data used for process design to obtain more accurate results.
机译:在本研究中进行的过程模拟,旨在研究500,000个人种群等同物的能量自给力废水处理厂。为实现这一点,使用名为GPS-X的计算工具进行评估三种不同的场景?和superpro?它们是根据市政废物恢复到能源发电及其在设施内的利用而设计的。考虑废水的生物处理的厌氧/缺氧/氧化方法,并在不同场景(1)初级污泥(PS)的嗜培素厌氧消化用废物活性污泥(IS),(2)PS,具有热水解,(3) PS与城市固体废物衍生的有机级分。情景1和场景2的结果仅显示了足够的热能,以满足他们的需求(分别只达到44%和52%的电力自给自足),而积极的净热和电能导致情景3来自污水污泥的CODIGESTION和城市固体废物的有机分数。使用的工具的主要限制是它们对规模经济的缺乏敏感性及其对用于工艺设计的真实数据的依赖,以获得更准确的结果。

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    Department of Chemical Engineering and Environmental Technology University of Valladolid C/Dr. Mergelina sin 47011 Valladolid Spain;

    Department of Chemical Engineering and Environmental Technology University of Valladolid C/Dr. Mergelina sin 47011 Valladolid Spain;

    Department of Chemical Engineering and Environmental Technology University of Valladolid C/Dr. Mergelina sin 47011 Valladolid Spain;

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  • 正文语种 eng
  • 中图分类 化学工业;
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