| 發表的部分SCI論文: (1) Xiong  Xu, et al. Sustainable practice in pavement engineering through  value-added collective recycling of waste plastic and waste tyre rubber[J].  Engineering, 2021, 7(6): 857-867. (中科院1區,中國工程院頂刊,即時影響因子>12) (2) Xiong Xu,  et al. Potential use of recycled concrete aggregate (RCA) for sustainable  asphalt pavements of the future: A state-of-the-art review[J]. Journal of  Cleaner Production,  2022: 130893. (中科院1區,即時影響因子>10) (3) Xiong  Xu,  et al. Value-added use of waste PET in rubberized asphalt materials for  sustainable pavement[J].  Applied Sciences, 2022: 871. (4) Xiong  Xu,  et al. Rubber–bitumen interaction of plant-blended rubberized bitumen  prepared under various blending conditions[J]. Journal of  Testing and Evaluation, 2022, 50(2): 20210206. (5)Xiong Xu, et al. The  rheological behavior of rejuvenated SBS modified asphalt incorporating oil  slurry and tri-epoxide[J]. Petroleum Science and Technology, 2019, 1-6.   (6) Xiong  Xu, et al. Effect of reactive rejuvenating system on physical properties  and rheological characteristics of aged SBS modified bitumen[J]. Construction  and Building Materials, 2018, 176: 35-42. (7) Xiong  Xu, et al. Road performance of reaction-rejuvenated SBS modified bitumen  mixture[J]. Construction and Building Materials, 2018, 183: 523-533. (8) Xiong  Xu, et al.  Structure and performance evaluation on aged SBS modified bitumen with bi- or  tri-epoxy reactive rejuvenating system[J]. Construction and Building  Materials, 2017, 151: 479-486.  (9) Xiong  Xu, et al.  Effect of reactive rejuvenators on structure and properties of UV-aged SBS  modified bitumen[J]. Construction and Building Materials, 2017, 155: 780-788.   (10) Xiong  Xu, et al.  Investigation of molecular structure and thermal properties of  thermo-oxidative aged SBS in blends and their relations[J]. Materials, 2017,  10, 768.  |