期刊文献+

废生物油与废机油复配再生沥青及混合料研究 被引量:1

下载PDF
导出
摘要 为探索废生物油与废机油对老化沥青的复配再生应用效果,文章采用正交试验分析了废生物油、废机油及C5石油树脂增粘剂掺量对再生沥青性能的影响,并对制备的废生物油与废机油复配再生沥青拌和的混合料进行路用性能研究。结果表明:废生物油及废机油有利于提高再生沥青低温性能,而树脂有利于提高再生沥青的高温性能和黏度,通过综合分析,确定复配再生沥青制备废生物油、废机油及C5石油树脂的掺量分别为:2.4%、2.0%、0.2%;复配再生沥青混合料的高温性能优于原样沥青混合料,且低温性能与水稳定性能满足规范要求。
作者 黄显全
出处 《西部交通科技》 2021年第8期100-103,共4页 Western China Communications Science & Technology
  • 相关文献

参考文献2

二级参考文献29

  • 1EI-Fadel, M., &Khoury, P,. (2001) . Strategies for vehicle waste - oil management: a case study. Re- sources, Conservation and Recycling, 33, 75 -91.
  • 2Hanmd, RS. ,Rteil,A. A. ,& 173 - fadd,M. (20~). Effect of used engine oil on properties of fresh and hardened concrete. Construction and Building Materials, 17, 311-318. doi: 10. 1016/S09R)-0618 (03) 00002-3.
  • 3Jamshidi, A., Hamzah, M. O., &Shahadan, Z. (2012) . Selection of reclaimed asphalt pavement sources and contents for asphalt mix production based on asphalt binder rheological properties, fuel require- ments and greenhouse gas emissions. Journal of Cleaner Production, 23 ( 1 ), 20 - 27. doi: 10. 1016/j. jclepro. 2011.10. 008.
  • 4Garcia, A. , Schlangen, E. , & Van de Ven, M. (2011) . Properties of capsules containing rejuvena- tors for their use in asphalt. Elsevier, Fuel (90), 583 - 591.
  • 5Romcra, R., Santamafla, A., Pc.'? a, J. J., Mu? oz, M. E. , Barral, M. , Garcfa, E. , &Ja? ez, V. (2006) . Rheological aspects of the rejuvenation ofaged bitumen. PdaeologicaAeta, 45 (4), 474 - 478. doi : 10. 1007/s00397 - 005 - 0078 - 7.
  • 6You, Z. , Mills- beale, J. , Fini, E. , Gob, S. W. , & Colbert, B. (2011) . Evaluation of Low - Tem- perature Binder Properties of Warm - Mix Asphalt , Extracted and Recovered RAP and RAS , and Bioas- phalt. Journal of Materials in Civil Engineering, 23 (11), 1569 - 1574. doi: 10.1061/ (ASCE) MT. 1943 - 5533. 0000295.
  • 7Moghaddam, T. B., Karim, M. I~, &Abdelaziz, M. (2011) . A review on fatigue and rutting perform- mace of asphalt mixes. Scientific Research and Es- says, 6 (4), 670 - 682. doi: 10.5897/ SREI0. 946. ~.
  • 8tang, H., Wang, Q., & Mortimer, S. IL (2012) . Waste eooking oil as an energy resource: Review of Chinese polieies. Renewable and Sustainable Energy Reviews, 16 (7), 5225 - 5231. doi: 10. 1016/ j. rser. 2012. 05. 008.
  • 9Kulkami, M. G. , & Dalai, A. K. (2006) . Waste Cooking OilsAn Economical Source for Biodiesel : A Review. Industrial and Engineering Chemical Re- search, 45 (9), 2901 -2913.
  • 10Gui, M. M., Lee, K. T., & Bhatia, S. (2008) . Feasibility of edible oil vs. non - edible oil vs. waste edible oil as biodiesel feedstock. Energy, 33 ( 11 ) , 1646 - 1653. doi: 10. 1016/j. energy. 2008. 06. 002.

共引文献19

同被引文献14

引证文献1

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部