Application of lignin as bioasphalt in pavement engineering: a review on production, characterisation, and performance evaluation

沥青 环境科学 废物管理 木质素 化石燃料 原材料 温室气体 可再生能源 制浆造纸工业 车辙 水分 碳足迹 相容性(地球化学) 牙髓(牙) 石油 生物能源 生物燃料 可再生资源 能源消耗 沥青路面 全球变暖潜力 可再生燃料 滤饼过滤器 工程类 生命周期评估 燃料效率 环境友好型 道路施工 替代能源
作者
Ravindra Kumar,Sachin Dhakal,Geir Næss,Mette Sørensen
出处
期刊:Biomass Conversion and Biorefinery [Springer Nature]
卷期号:16 (7)
标识
DOI:10.1007/s13399-026-07116-8
摘要

Reducing greenhouse gas emissions is one of the United Nations’ Sustainable Development Programme’s agendas, and net-zero emissions will be the ultimate objective by 2050. In this context, the use of biobased fuels, chemicals, and materials is being promoted globally, as biobased products emit fewer emissions. Lignin is a potent, abundantly available biobased material derived from plants. It is the by-product of the pulp and paper industry and the second-generation ethanol production process. Of lignin, only 2% is valorised to produce biobased products, and the rest, 98%, is burnt to produce heat and power for local use. Therefore, lignin is being explored as an alternative to bioasphalt in pavement engineering. Bioasphalt is a black, viscous material obtained from crude petroleum, which consequently leads to massive emissions. In order to achieve net-zero emissions, the International Renewable Energy Agency (IRENA) ‘s goal of stopping fossil fuel use by 2050. Therefore, bitumen will not be available by the year 2050. The finite availability of crude petroleum is also a cause for concern. It is reported that 85% of the bitumen consumed globally is used in pavement engineering, estimated at 100 million tons per year. Numerous studies show that bio-asphalt prepared by mixing lignin can achieve performance comparable to conventional asphalt in terms of fatigue, rutting resistance, and moisture susceptibility when properly formulated. In addition, its compatibility with warm mix asphalt results in lower production temperatures, lowering energy consumption and emissions during construction. Therefore, this review summarises the literature on the use of lignin as an alternative to bitumen in asphalt production, characterisation, and performance evaluation.
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