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Impact of fly ash content and fly ash transportation distance on embodied greenhouse gas emissions and water consumption in concrete

机译:粉煤灰含量和粉煤灰运输距离对具体温室气体排放量和混凝土耗水量的影响

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摘要

Background, aim and scope Fly ash, a by-product of coal-fired power stations, is substituted for Portland cement to improve the properties of concrete and reduce the embodied greenhouse gas (GHG) emissions. Much of the worldu27s fly ash is currently disposed of as a waste product. While replacing some Portland cement with fly ash can reduce production costs and the embodied emissions of concrete, the relationship between fly ash content and embodied GHG emissions in concrete has not been quantified. The impact of fly ash content on embodied water is also unknown. Furthermore, it is not known whether a global trade in fly ash for use in concrete is feasible from a carbon balance perspective, or if transport over long distances would eliminate any CO(2) savings. This paper aims to quantify GHG emissions and water embodied in concrete (fu27(c)= 32 MPa) as a function of fly ash content and to determine the critical fly ash transportation distance, beyond which use of fly ash in concrete increases embodied GHG emissions.
机译:背景,目的和范围粉煤灰是燃煤发电站的副产品,可代替波特兰水泥以改善混凝土性能并减少温室气体(GHG)的排放。目前,世界上许多粉煤灰均作为废物处理。虽然用粉煤灰代替某些波特兰水泥可以降低生产成本和混凝土的内含排放量,但粉煤灰含量与混凝土中含GHG排放量之间的关系尚未量化。粉煤灰含量对水体的影响也是未知的。此外,从碳平衡的角度来看,全球用于混凝土的粉煤灰贸易是否可行,或者长距离运输是否会消除任何CO(2)节省,尚不知道。本文旨在量化粉煤灰含量与混凝土中所包含的温室气体排放量和水含量(f u27(c)= 32 MPa)的关系,并确定临界粉煤灰的运输距离,超过此距离,混凝土中粉煤灰的使用量将增加温室气体排放量。

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