Potentials of the waste-to-energy sector for an unconventional district heating system

Q2 Social Sciences
M. Ragazzi, K. Ferrari, L. Adami, M. Schiavon, E. Rada
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引用次数: 2

Abstract

In spite of being a process that exploits a renewable source of energy, the combustion of wood-based biomass contributes to deteriorate outdoor and indoor air quality. Critical situations for human exposure may occur in mountainous areas, where wood-based biomass is usually abundant and the complex morphology may favour the stagnation of air pollutants in valleys. Replacing wood/pellet stoves with centralised systems would reduce the impact, but the construction of district heating systems may not be convenient in areas with low density of houses. A possible solution could rely on direct electrical heating (DEH) systems, preferably fed by thermochemical processes that help achieve environmental goals for the local community, like the reduction of waste landfilling and the valorisation of the energy content of waste. This paper aims at presenting a comparison between the impacts expected by household wood/pellet stoves and by a modern waste-to-energy (WtE) plant, in terms of emissions of air pollutants into the atmosphere, when replacing wood stoves with a DEH system fed by the electric energy generated by the WtE plant. The comparison shows that the replacement of household stoves with an equivalent DEH system would be beneficial in terms of impacts on the local air quality. Such an approach could be considered to reduce the health impacts from biomass burning in critical areas like the Alpine region.
非常规区域供暖系统的废物转化能源部门潜力
尽管这是一种利用可再生能源的过程,但燃烧木质生物质会导致室外和室内空气质量恶化。人类接触的危急情况可能发生在山区,那里以木材为基础的生物量通常丰富,复杂的形态可能有利于空气污染物在山谷中停滞。以集中系统取代木质/颗粒炉会减少影响,但在房屋密度低的地区,建造区域供热系统可能不方便。一种可能的解决方案是依靠直接电加热(DEH)系统,最好是由热化学过程提供,这有助于实现当地社区的环境目标,比如减少垃圾填埋和提高垃圾的能源含量。本文旨在比较家用木材/颗粒炉和现代废物转化为能源(WtE)工厂在将木材炉替换为由WtE工厂产生的电能提供的DEH系统时,对大气污染物排放的影响。比较表明,用等效DEH系统取代家用炉灶对当地空气质量的影响是有益的。可以考虑采用这种方法,以减少高山地区等关键地区生物质燃烧对健康的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Energy Production and Management
International Journal of Energy Production and Management Social Sciences-Sociology and Political Science
CiteScore
2.20
自引率
0.00%
发文量
24
审稿时长
26 weeks
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