48
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Characterising the modifying efficiency of polyphosphoric acid to bitumens with different oil sources

, , &
Article: 2308170 | Received 16 Jun 2023, Accepted 16 Jan 2024, Published online: 01 Feb 2024

References

  • Aflaki, S., and Hajikarimi, P, 2012. Implementing viscoelastic rheological methods to evaluate low temperature performance of modified asphalt binders. Construction and Building Materials, 36, 110–118. Available from: https://www.sciencedirect.com/science/article/pii/S0950061812002784.
  • Alam, S., and Hossain, Z, 2017. Changes in fractional compositions of ppa and sbs modified bitumen binders. Construction and Building Materials, 152, 386–393.
  • Arnold, T.S., and Youtcheff, J, 2012. Use of phosphoric acid as modifier for hot-mix asphalt. Minneapolis Minnesota: Transportation Research Board of The National Academies.
  • Baldino, N., et al., 2013. Rheological effects on bitumen of polyphosphoric acid (ppa) addition. Construction and Building Materials, 40, 397–404.
  • Baumgardner, G.L., et al., 2005. Polyphosphoric acid modified bitumen: proposed mechanisms. Journal of the Association of Bitumen Paving Technologists, 74, 283–305.
  • Chen, P., Cheng, Z., and Chen, Y, 2020. Ultraviolet aging resistance of polyphosphoric acid/styrene butadiene rubber compound modified bitumen. China Synthetic Rubber Industry, 43 (01), 60–65. (In Chinese).
  • Chen, J., and Huang, X, 2007. Study on hypostasis and relationship between viscosity and consistency of asphalt. Petroleum Asphalt, 4, 40–44. (In Chinese).
  • D’angelo, J.A, 2012. Effect of polyphosphoric acid on asphalt binder properties. Minneapolis Minnesota: Transportation Research Board of The National Academies.
  • Domingos, I., David, M., and Faxina, A.L, 2015. Rheological behaviour of bitumens modified with pe and ppa at different mscr creep-recovery times. International Journal of Pavement Engineering, 16 (9), 771–783.
  • Dong, G., 2018. Performance and mechanism of asphalt modified with polyphosphoric acid and polyphosphoric acid/polymer. Thesis (ph.D). Chang'an University. (In Chinese).
  • Gentile, L., et al., 2012. Rheological and h-1-nmr spin-spin relaxation time for the evaluation of the effects of ppa addition on bitumen. Molecular Crystals and Liquid Crystals, 558, 54–63.
  • Jafari, M., et al., 2017. Evaluation of rutting resistance of asphalt binders and asphalt mixtures modified with polyphosphoric acid. Petroleum Science and Technology, 35 (2), 141–147.
  • Li, C., et al., 2016. High and low temperature rheological properties of polyphosphoric acid modified bitumen binder. Journal of Functional Materials, 24 (06), 6022–6028. (In Chinese).
  • Liu, H., et al., 2016. Study on the rheological properties and mechanism of polyphosphoric acid modified asphalt. Journal of Tongji University (Natural Science), 44 (12), 1880–1888. (In Chinese).
  • Liu, X., et al., 2018. BBR and DSR testing of aging properties of polymer and polyphosphoric acid–modified asphalt binders. Journal of Materials in Civil Engineering, 30 (10), 04018249.
  • Liu, X., Zhang, Z., and Yang, X, 2017. Status quo and future prospect of polyphosphoric-acid-modified asphalt. Materials Report, 31 (19), 104–111. (In Chinese).
  • Liu, S., Zhou, S., and Peng, A, 2020. Evaluation of polyphosphoric acid on the performance of polymer modified bi-tumen binders. Journal of Applied Polymer Science, 137 (34), e48984.
  • Loeber, L., et al., 1996. New direct observations of bitumens and bitumen binders by scanning electron microscopy and atomic force microscopy. Journal of Microscopy, 182 (1), 32–39.
  • Masson, J.F, 2008. Brief review of the chemistry of polyphosphoric acid (ppa) and bitumen. Energy & Fuels, 22 (4), 2637–2640. Available from: <Go to ISI>://WOS:000257793200069.
  • Mcgennis, R.B, 2010. Case study: implementation of polyphosphoric acid modification of bitumen binders and related experience. Journal of the Association of Bitumen Paving Technologists, 79, 793–810.
  • Mousavi, M., Kabir, S.F., and Fini, E.H, 2021. Polyphosphoric acid's synergy with bio-modified bituminous composites. Resources Conservation and Recycling, 168, 105301.
  • Nuñez, J.Y.M., Domingos, M.D.I., and Faxina, A.L, 2014. Susceptibility of low-density polyethylene and polyphosphoric acid-modified bitumen binders to rutting and fatigue cracking. Construction and Building Materials, 73, 509–514.
  • Pei, X., and Fang, W, 2021. Influence of compound modification of oil sands de-oiled bitumen and polyphosphoric acid on high- and low-temperature performance of styrene-butadiene-styrene-modified bitumen. Materials (Basel, Switzerland), 14 (4), 797.
  • Platonov, V.A, 2000. Properties of polyphosphoric acid. Fibre Chemistry, 32 (5), 325–329.
  • Reinke, G., and Glidden, S, 2010. Analytical procedures for determining phosphorus content in bitumen binders and impact of aggregate on quantitative recovery of phosphorus from bitumen binders. Polyphosphoric Acid Modification of Asphalt Binders, 79, 695–717.
  • Rossi, C.O., et al., 2015. Polymer modified bitumen: rheological properties and structural characterization. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 480, 390–397.
  • Sarnowski, M, 2015. Rheological properties of road bitumen binders modified with sbs polymer and polyphosphoric acid. Roads and Bridges Drogi i Mosty, 14 (1), 47–65.
  • Singh, D., et al., 2017. Evaluating performance of ppa-and-elvaloy-modified binder containing wma additives and lime using mscr and las tests. Journal of Materials in Civil Engineering, 29 (8), 04017064.
  • Wan, Z., et al., 2020. Preparation method and performance test of evotherm pre-wet treatment aluminum hydroxide type warm-mixed flame-retardant asphalt. Construction and Building Materials, 262, 120618.
  • Wang, L., Ke, B., and Li, C, 2021. Study on low temperature rheological properties and constitutive relationship of composite polyphosphoric acid modified asphalt mixture. Journal of Building Materials, 24 (04), 842–850. (In Chinese).
  • Xiao, F., et al., 2014. Rheological property investigations for polymer and polyphosphoric acid modified asphalt binders at high temperatures. Construction and Building Materials, 64, 316–323. Available from: https://www.sciencedirect.com/science/article/pii/S0950061814003997.
  • Yan, K., Zhang, H., and Xu, H, 2013. Effect of polyphosphoric acid on physical properties, chemical composition and morphology of bitumen. Construction and Building Materials, 47, 92–98.
  • Yang, J., et al., 2015a. Study on micro-structures of asphalt by using atomic force microscopy. Acta Petrolei Sinica (Petroleum Processing Section), 31 (4), 959–965. (In Chinese).
  • Yang, J., et al., 2015b. Analysis of the microscopic images of asphalt getting from atomic force microscopy. Acta Petrolei Sinica (Petroleum Processing Section), 31 (5), 1110–1115. (In Chinese).
  • Yang, J, 2019. Study on anti-aging ability of polyphosphoric acid /sbr compound modified bitumen at high and low temperature. Journal of China and Foreign High Way, 39 (06), 249–254.
  • Yang, P., Cong, Q., and Liao, K, 2003. Application of solubility parameter theory in evaluating the aging resistance of paving bitumens. Liquid Fuels Technology, 21 (11), 1843–1850.
  • Zapién-Castillo, S., et al., 2016. Physical and rheological properties of bitumen modified with sebs/montmorillonite nanocomposite. Construction and Building Materials, 106, 349–356.
  • Zhang, F., and Hu, C, 2013. The research for sbs and sbr compound modified asphalts with polyphosphoric acid and sulfur. Construction and Building Materials, 43, 461–468. Available from: <Go to ISI>://WOS:000319232900049.
  • Zhou, Y., Huang, W., and Fu, X, 2017. Low-temperature performance of polyphosphoric acid composite modified asphalt. Journal of Building Materials, 20 (6), 996–1000. (In Chinese).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.