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首页> 外文期刊>Journal of Cleaner Production >Integrating wastewater treatment and incineration plants for energy- efficient urban biomass utilization: A life cycle analysis
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Integrating wastewater treatment and incineration plants for energy- efficient urban biomass utilization: A life cycle analysis

机译:废水处理和焚化厂的整合,以提高城市生物质的能源利用效率:生命周期分析

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Sewage sludge and municipal solid waste, defined as urban biomass, are promising energy sources with the potential to lower fossil fuel consumption and reduce carbon dioxide emissions. However, the current process of extracting useable energy from urban biomass has two problems that must be addressed in order to achieve greater energy efficiency: (1) significant fossil fuel consumption is currently needed to dry sewage sludge in wastewater treatment plants, and (2) a huge amount of exhaust heat from incineration plants remains unused. One promising solution is to integrate wastewater treatment and incineration plants. In this way, total energy efficiency could be enhanced by utilizing the exhaust heat generated in the incineration plant to dry sewage sludge in the companion wastewater treatment plant. Aiming to clarify sustainable conditions for integrating the two plants, this paper proposes a method for conducting a life cycle analysis for urban biomass utilization. The proposed method combines scenario storylines and quantitative assessment to provide a better understanding of critical factors and their rationales. Each scenario is quantified by process network modeling and then evaluated in terms of their economic profit and carbon dioxide emissions. A case study involving a Japanese waste water treatment plant and a nearby incineration plant is conducted. The results show that the integration scenario reduces total annual costs by 35% and total annual carbon dioxide emissions by 1% relative to the status quo scenario. This is mainly due to the elimination of several system components, including a digestion tank, made possible by the integration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:污水污泥和城市固体废物(被定义为城市生物质)是有前途的能源,具有降低化石燃料消耗和减少二氧化碳排放的潜力。但是,当前从城市生物质中提取可用能源的过程有两个必须解决的问题才能实现更高的能源效率:(1)目前需要大量化石燃料消耗来干燥废水处理厂中的污水污泥,(2)焚烧厂产生的大量废热尚未使用。一种有前途的解决方案是将废水处理和焚化厂整合在一起。这样,通过利用焚化厂产生的废热来干燥配套废水处理厂中的污水污泥,可以提高总能效。为了阐明整合这两种植物的可持续条件,本文提出了一种对城市生物质利用进行生命周期分析的方法。所提出的方法结合了情节故事情节和定量评估,以更好地理解关键因素及其基本原理。通过过程网络建模对每种情况进行量化,然后根据其经济利润和二氧化碳排放进行评估。进行了涉及日本废水处理厂和附近焚烧厂的案例研究。结果表明,与当前情景相比,集成情景可将年度总成本降低35%,并将二氧化碳年度总排放量降低1%。这主要是由于集成消除了一些系统组件,包括消化池。 (C)2019 Elsevier Ltd.保留所有权利。

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