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Characterization of effects of thermal property of aggregate on the carbon footprint of asphalt industries in China 被引量:1

Characterization of effects of thermal property of aggregate on the carbon footprint of asphalt industries in China
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摘要 In this study, the effects of the thermal properties of asphalt binders and aggregate ma- terials were characterized in terms of the specific heat capacity (C) for energy consumption and environmental footprints of hot mix asphalt (HMA) and warm mix asphalt (WMA). Asphalt mixes produced using low-C aggregate are found to be more energy-efficient and environmental friendly, irrespective of the binder type and construction technology. Therefore, different fractions of aggregate blends were replaced with the aggregate pro- vided from a ]ow-C source or sustainable source. Analysis of energy consumption clearly indicated that the specific energy and environmental footprints decrease linearly as the low-C aggregate content increases. The amount of energy saving realized in the asphalt industries by the use of low-C aggregate is significant on a national scale in China. In this regard, China was chosen as a case study. Analysis of fuel requirement clearly indicated that the production of WMA using high thermal sensitivity aggregate can yield significant energy saving sufficient to fuel 44,007 to 664,880 Chinese households per year. Therefore, use of low C aggregate in asphalt mix production can be adopted as a strategy to produce WMA and HMA. In this study, the effects of the thermal properties of asphalt binders and aggregate ma- terials were characterized in terms of the specific heat capacity (C) for energy consumption and environmental footprints of hot mix asphalt (HMA) and warm mix asphalt (WMA). Asphalt mixes produced using low-C aggregate are found to be more energy-efficient and environmental friendly, irrespective of the binder type and construction technology. Therefore, different fractions of aggregate blends were replaced with the aggregate pro- vided from a ]ow-C source or sustainable source. Analysis of energy consumption clearly indicated that the specific energy and environmental footprints decrease linearly as the low-C aggregate content increases. The amount of energy saving realized in the asphalt industries by the use of low-C aggregate is significant on a national scale in China. In this regard, China was chosen as a case study. Analysis of fuel requirement clearly indicated that the production of WMA using high thermal sensitivity aggregate can yield significant energy saving sufficient to fuel 44,007 to 664,880 Chinese households per year. Therefore, use of low C aggregate in asphalt mix production can be adopted as a strategy to produce WMA and HMA.
出处 《Journal of Traffic and Transportation Engineering(English Edition)》 2017年第2期118-130,共13页 交通运输工程学报(英文版)
基金 the Japan Society for the Promotion of Science(JSPS) Fellows(grant number:26.04058)
关键词 Sustainable pavement Low-energy asphalt Warm mix asphalt Greenhouse gas emission Sustainable pavement Low-energy asphalt Warm mix asphalt Greenhouse gas emission
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