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Original Articles

Retarding aging of asphalt binders using antioxidant additives and copolymers

ORCID Icon, , , ORCID Icon, &
Pages 1154-1169 | Received 27 Mar 2017, Accepted 13 Oct 2017, Published online: 13 Dec 2017

References

  • AASHTO T 315 , 2012. Standard method of test for determining the rheological properties of asphalt binder using a dynamic shear rheometer (DSR) . American Association of State and Highway Transportation Officials.
  • AASHTO TP 105-13 , 2013. Standard method of test for determining the fracture energy of asphalt mixtures using the semicircular bend geometry (SCB) . American Association of State and Highway Transportation Officials (AASHTO).
  • Al-Qadi, I.L. , et al. , 2015. Testing protocols to ensure performance of high asphalt binder replacement mixes using RAP and RAS . Illinois Center for Transportation/Illinois Department of Transportation.
  • Anderson, R.M. , et al. , 2011. Evaluation of the relationship between asphalt binder properties and non-load related cracking. Asphalt Paving Technology , 80, 615–663.
  • Apeagyei, A. , 2008. Development of antioxidant treatments for asphalt binders and mixtures. PhD dissertation. University of Illinois at Urbana-Champaign.
  • Apeagyei, A. , 2011. Laboratory evaluation of antioxidants for asphalt binders. Construction and Building Materials , 25 (1), 47–53.10.1016/j.conbuildmat.2010.06.058
  • Apeagyei, A. , Buttlar, W. , and Dempsey, B. , 2008. Antioxidant treatment of asphalt binders. US 20080210126 A1. Available from: www.google.com/patents/US20080210126 [Accessed 17 July 2016].
  • Beitchman, B. , 1960. Effects of antioxidants on asphalt durability. Journal of Research of the National Bureau of Standards – C. Engineering and Instrumentation , 64C (1), 13–17.
  • Bell, C. , 1989. Summary report on aging of asphalt-aggregate systems . Strategic Highway Research Program. Washington, DC: National Research Council, Research Report No. SR-OCU-A-003A-89-2, SHRP-A-305.
  • Bell, C. , Wieder, A. , and Fellin, M. , 1994. Laboratory aging of asphalt-aggregate mixtures: field validation . Corvallis, OR: Oregon State University, Research Report SHRP-A-390.
  • Bower, N. , et al. , 2016. Evaluation of the performance of warm mix asphalt in Washington state. International Journal of Pavement Engineering , 17 (5), 423–434.10.1080/10298436.2014.993199
  • Cohen, J. , 1988. Statistical power analysis for the behavioral sciences . 2nd ed. Cambridge, MA: Academic Press.
  • Cohen, J. , 1992. A power primer. Psychological Bulletin , 112 (1), 155–159.10.1037/0033-2909.112.1.155
  • Dessouky, S. and Diaz, M ., 2015. Improving asphalt mixtures performance by mitigating oxidation using anti-oxidants additives. In: I. Karaman , R. Arroyave , and E. Masad , eds. Proceedings of the TMS Middle East - Mediterranean Materials Congress on Energy and Infrastructure Systems, MEMA 2015 . Doha, Qatar: John Wiley & Sons, Inc., Hoboken, New Jersey, 45–54.
  • Glover, C.J. , et al ., 2005. Development of a new method for assessing asphalt binder durability with field evaluation . College Station, TX: Federal Highway Administration and Texas Department of Transportation, Report No. FHWA/TX-05/1872-2.
  • Han, R. , 2011. Improvements to a transport model of asphalt binder oxidation in pavements . College Station: Texas A&M University.
  • Januszke, R. , 1971. Paving asphalt. Additives in durability determination. Industrial & Engineering Chemistry Product Research and Development , 10 (2), 209–214.10.1021/i360038a021
  • Kandhal, P. , 1977. Low-temperature ductility in relation to pavement performance. In: C. Marek , ed. Low-temperature properties of bituminous materials and compacted bituminous paving mixtures , STP27096S. West Conshohocken, PA: ASTM International, 95–106. Doi:10.1520/STP27096S
  • Kim, Y.R. and Wen, H. , 2002. Fracture energy from indirect tension testing. In: Asphalt Paving Technology , 18–20 March 2002, 71 (August), 779–793.
  • Kim, M. , et al. , 2009. Field and laboratory evaluation of fracture resistance of Illinois hot-mix asphalt overlay mixtures. Transportation Research Record: Journal of the Transportation Research Board , 2127, 146–154.10.3141/2127-17
  • King, G. , et al ., 2012. Using black space diagrams to predict age-induced cracking. In: 7th RILEM International Conference on Cracking in Pavements . Dordrecht, 453–463.
  • Lamontagne, J. , et al. , 2001. Comparison by Fourier transform infrared (FTIR) spectroscopy of different ageing techniques: application to road bitumens. Fuel , 80 (4), 483–488.10.1016/S0016-2361(00)00121-6
  • Marasteanu, O. and Anderson, D.A. , 1999. Improved model for bitumen rheological characterization. In: Eurobitume Workshop on Performance Related Properties for Bituminous Binder , Luxembourg, Paper No. 133.
  • Martin, K. , 1968. Laboratory evaluation of antioxidants for bitumen. In: Proceedings of the Fourth conference of the Australian Road Research Board. Vermont South, Victoria, Australia: ARRB Group Limited, 1477–1494.
  • Masad, E. , et al. , 2006. An improved method for the dynamic mechanical analysis of fatigue failure of sand asphalt mixtures . College Station, TX: Texas Transportation Institute, FHWA/473630.
  • Masad, E. , et al. , 2008. A unified method for the analysis of controlled-strain and controlled-stress fatigue testing. International Journal of Pavement Engineering , 9 (4), 233–246.10.1080/10298430701551219
  • Masson, J.-F. , Collins, P. , and Polomark, G. , 2005. Steric hardening and the ordering of asphaltenes in bitumen. Energy & Fuels , 19, 120–122.10.1021/ef0498667
  • Mayzo , 2016a. Antioxidants, BNX 1010 antioxidant and thermal stabilizer . Available from: www.mayzo.com/pdf/BNX1010TF.pdf [Accessed 13 August].
  • Mayzo , 2016b. Antioxidants, BNX DLTDP . Available from: www.mayzo.com/bnx-dltdp.html [Accessed 13 August].
  • NAPA-EAPA , 2011. The asphalt paving industry: a global perspective . 2nd ed. National Asphalt Pavement Association (NAPA) and Europeanl Asphalt Pavement Association (EAPA).
  • Pan, J. and Tarefder, R.A. , 2016. Investigation of asphalt aging behaviour due to oxidation using molecular dynamics simulation. Molecular Simulation , 42 (8), 667–678.10.1080/08927022.2015.1073851
  • Pan, T. , Sun, L. , and Yu, Q. , 2012. Retracted article: an atomistic-based chemophysical environment for evaluating asphalt oxidation and antioxidants. Journal of Molecular Modeling , 18 (12), 5113–5126.10.1007/s00894-012-1512-2
  • Reyes, C. , 2012. Influence of anti-oxidant modifications in asphalt binder physio-chemical properties and mixes performance . (MS thesis). San Antonio, TX: The University of Texas at San Antonio.
  • Rowe, G.M. , 2011. Prepared discussion following the Anderson AAPT paper cited previously. Journal Association of Asphalt Paving Technologists , 80, 649–662.
  • Rowe, G.M. , King, G. , and Anderson, M. , 2014. The influence of binder rheology on the cracking of asphalt mixes in airport and highway projects. Journal of Testing and Evaluation , 42 (5), 1063–1072.
  • Sebaaly, P. , Little, D. , and Epps, J. , 2006. The benefits of hydrated lime in hot mix asphalt . Arlington, VA: National Lime Association.
  • Sirin, O. , et al. , 2017. Effect of aging on asphalt binders in the state of Qatar: a case study. Road Materials and Pavement Design , 1–20.
  • Sousa, P. , et al. , 2013. New design method of fine aggregates mixtures and automated method for analysis of dynamic mechanical characterization data. Construction and Building Materials , 41, 216–223.10.1016/j.conbuildmat.2012.11.038
  • Thalheimer, W. and Cook, S. , 2002. How to calculate effect sizes from published research: a simplified methodology. Work-Learning Research , August, p. 1–9.
  • Thermo Nicolet Corporation , 2001. Introduction to Fourier transform infrared spectrometry [online]. Available from: www.thermonicolet.com.
  • Williams, R.C. , 2008. Using lignin as an asphalt antioxidant . Ames, IA: Center for Transportation Research and Education, Iowa State University.
  • Williams, M.L.. , Landel, R.F. , and Ferry, J.D. , 1955. The temperature dependence of relaxation mechanism in amorphous polymers and other glass forming liquids. Journal of ACS , 77, 3701–3707.
  • Xiao, F. , et al. , 2015. Rheology evaluations of WMA binders using ultraviolet and PAV aging procedures. Construction and Building Materials , 79, 56–64.10.1016/j.conbuildmat.2015.01.046
  • Yao, H. , et al. , 2013. Rheological properties and chemical analysis of nanoclay and carbon microfiber modified asphalt with Fourier transform infrared spectroscopy. Construction and Building Materials , 38, 327–337.10.1016/j.conbuildmat.2012.08.004
  • Zhang, F. , Yu, J. , and Han, J. , 2011. Effects of thermal oxidative ageing on dynamic viscosity, TG/DTG, DTA and FTIR of SBS- and SBS/sulfur-modified asphalts. Construction and Building Materials , 25 (1), 129–137.10.1016/j.conbuildmat.2010.06.048

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