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A health-based life cycle impact assessment (LCIA) for cement manufacturing: a comparative study of China and Canada

机译:基于健康的水泥生产生命周期影响评估(LCIA):对中国和加拿大的比较研究

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摘要

Life cycle impact assessment methodology was applied to the cement manufacturing sectors in China and Canada for comparative purposes. Primary air emissions of NO (x) , SO2, PM, and CO were evaluated in terms of intensity per tonne of Portland cement and in respect of their contribution to winter smog. The Eco-Indicator 99 impact category for respiratory effects on humans caused by inorganic substances was used as surrogate for winter smog. Impact was assessed in disability-adjusted life years (DALYs), and damage, normalization, and weighting factors followed the egalitarian perspective. Results indicate some ambiguity for emission intensities with China outperforming Canada in NO (x) and SO2 while underperforming in PM and CO. However, in terms of impact to human health, China was more than double that of Canada at 14.2 DALYs per tonne of Portland cement. Highlighted by energy-intensive and trade-exposed industry like cement, environmental performance, and emissions leakage (associated with offshoring production) can have serious ramifications on regional air quality. Modernization and innovation in combination with a strong regulatory framework needs to be implemented in both emerging markets and developed markets to minimize emissions leakage and pollution loading.
机译:为了进行比较,将生命周期影响评估方法应用于中国和加拿大的水泥制造业。根据每吨波特兰水泥的强度及其对冬季烟雾的贡献,评估了NO(x),SO2,PM和CO的主要空气排放量。无机物引起的对人类呼吸系统影响的Eco-Indicator 99影响类别被用作冬季烟雾的替代物。在伤残调整生命年(DALYs)中评估影响,伤害,正常化和权重因子遵循均等主义的观点。结果表明,中国的排放强度存在一些歧义,中国在NO(x)和SO2方面优于加拿大,而PM和CO方面则落后于加拿大。然而,就对人类健康的影响而言,中国每吨波特兰14.2 DALYs是加拿大的两倍以上。水泥。水泥,环境绩效和排放泄漏(与离岸生产相关)等能源密集型和贸易密集型产业所突出表现出来,可能会对区域空气质量产生严重影响。新兴市场和发达市场都需要实施现代化和创新以及强有力的监管框架,以最大程度地减少排放泄漏和污染负荷。

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