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首页> 外文期刊>The Science of the Total Environment >Potential environmental benefits of direct electric heating powered by waste-to-energy processes as a replacement of solid-fuel combustion in semi-rural and remote areas
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Potential environmental benefits of direct electric heating powered by waste-to-energy processes as a replacement of solid-fuel combustion in semi-rural and remote areas

机译:直接电加热的潜在环境益处通过垃圾到能源工艺作为替代半农村和偏远地区的固体燃料燃烧

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摘要

The combustion of wood-based biomass for domestic heating, which is common in rural and mountainous regions of Europe, entails significant local impacts on air quality. Worse conditions occur in low-income countries where the use of coal in household stoves is a common practice. The present paper aims at demonstrating that the combination of waste-to-energy (WtE) plants (based on direct or indirect waste combustion technologies) and direct electric heating (DEH) would be beneficial to reduce air pollution and, meanwhile, optimize the local waste management. Specifically, a WtE plant powering a DEH network will be compared with two reference scenarios of domestic heating: the use of wood/pellet stoves and coal stoves. The results show that shifting to a DEH system, powered by the nearby WtE plant, would reduce the emissions of total suspended particles, NOx, CO, VOCs, dioxins, PAHs and heavy metals by >99%, 27%, 97%, 96%, 93%, 94% and 32%, respectively, with respect to the use of solid fuel in household stoves. In addition, the higher degree of atmospheric dispersion of the off-gas from the stack of the WtE plant is expected to further reduce the impacts in terms of air quality, as estimated by an approach based on the concept of dilution factors. The avoided transportation of waste to other waste facilities outside the region would reduce the greenhouse gas emissions with respect to coal combustion and biomass burning, by 63% and 3%, respectively. The integration of local WtE and DEH could be also "mild", opening to scenarios that could improve the local air quality without renouncing totally to the habits of domestic wood combustion in mountainous regions. Mild-DEH could be designed to integrate the domestic use of wood with electrical heaters, reducing fuel use and air pollution.
机译:基于木材的生物量用于国内供暖的燃烧,这在欧洲农村和山区常见的情况下,对空气质量产生了重大的局部影响。在低收入国家发生的情况发生较差的条件,其中在家用炉子中使用煤炭是一种常见的做法。本文旨在证明废物对能量(WTE)植物(基于直接或间接废物燃烧技术)和直接电加热(DEH)的组合将有利于减少空气污染,同时优化当地废物管理。具体而言,将与国内供暖的两种参考场景进行比较,将DEH网络供电的WTE工厂:使用木材/颗粒炉和煤炉。结果表明,由附近的WTE工厂提供动力的DEH系统,将减少总悬浮颗粒,NOx,CO,VOC,二恶英,PAHS和重金属的排放> 99%,27%,97%,96分别在家用炉灶中使用固体燃料,分别为93%,94%和32%。此外,预期从基于稀释因子概念估计的空气质量方面的较高气体的大气分散的较高程度的基础植物的分散。避免将废物运输到该地区以外的其他废物设施将减少与煤燃烧和生物质燃烧的温室气体排放,分别为63%和3%。本地WTE和DEH的整合也可能是“轻度”,开放到可能会改善本地空气质量的情况,而不会完全放松山区的国内木燃烧的习惯。 Mild-Deh可以设计用于将家用木材与电加热器集成,减少燃料使用和空气污染。

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