代表性研究成果
[1]DING, Y., XI Y., GAO, H., WANG, J., WEI, W., ZHANG, R. Porosity of municipal solid waste incinerator bottom ash effects on asphalt mixture performance, Journal of Cleaner Production (SCI, IF=11.072, JCR一区), 2022
[2]DING, Y., SHAN, B., CAO, X., LIU, Y., HUANG, M., TANG, B. Development of bio oil and bio asphalt by hydrothermal liquefaction using lignocellulose, Journal of Cleaner Production (SCI, IF=11.072, JCR一区), 2021
[3]DING, Y., WYCKOFF, KRISTEN N., HE, Q., CAO, X., Huang, B. Biodegradation of waste asphalt shingle by white rot fungi, Journal of Cleaner Production (SCI, IF=11.072, JCR一区), 2021
[4]DING, Y., HUANG, B., & SHU, X., HU, W., YU, M. Utilizing recycled asphalt shingle into pavement by extraction method, Journal of Cleaner Production (SCI, IF=11.072, JCR一区), 2019
[5]DING, Y., LI, D., WANG, Y., WEI, W. Prediction of the Rejuvenator Diffusion Coefficient in Aged Asphalt Based on Free Volume Theory, ACS Sustainable Chemistry & Engineering (SCI, IF=9.224, JCR一区), 2022
[6]DING, Y., DENG, M., CAO, X., TANG, B. Investigation of mixing effect and molecular aggregation between virgin and aged asphalt. Construction and Building Materials (SCI, IF=7.693, JCR一区), 2019
[7]DING, Y., HUANG, B., & SHU, X. Blending efficiency evaluation of plant asphalt mixtures using fluorescence microscopy. Construction and Building Materials (SCI, IF=7.693, JCR一区), 2017
[8]DING, Y., HUANG, B., & SHU, X. Characterizing blending efficiency of plant produced asphalt paving mixtures containing high RAP. Construction and Building Materials (SCI, IF=7.693, JCR一区), 2016
[9]DING, Y., HUANG, B., & SHU, X. Investigation of function group distribution of asphalt using liquid chromatography transform and prediction of molecular model, Fuel (SCI, IF=7.67, JCR一区), 2018
[10]DING, Y., HUANG, B., SHU, X., ZHANG, Y. & WOODS, M. E. Use of molecular dynamics to investigate diffusion between virgin and aged asphalt binders. Fuel (SCI, IF=7.67, JCR一区), 2016