[4] AMINI A, ZIARI H, SAADATJOO S A, et al. Rutting resistance, fatigue properties and temperature susceptibility of nano clay modified asphalt rubber binder[J]. Construction and Building Materials, 2021, 267: 120946.
[5] CONG P L, CHEN B N, ZHAO H. Coupling effects of wasted cooking oil and antioxidant on aging of asphalt binders[J]. International Journal of Pavement Research and Technology, 2020, 13(1): 64-74.
[6] CHEN S C, LIU Q T, WU H J, et al. Simultaneous enhancement of the thermal oxygen and ultraviolet aging resistance of asphalt by incorporating antioxidant intercalated layered double hydroxide[J]. Construction and Building Materials, 2022, 349: 128743.
[7] LI L M, YANG L M, LIN Y L, et al. A compressive review on high- and low-temperature performance of asphalt modified with nanomodifier[J]. Advances in Materials Science and Engineering, 2021, 2021: 1-19.
[9] APOSTOLIDIS P, LIU X Y, KASBERGEN C, et al. Synthesis of asphalt binder aging and the state of the art of antiaging technologies[J]. Transportation Research Record: Journal of the Transportation Research Board, 2017, 2633(1): 147-153.
[10] SIRIN O, PAUL D K, KASSEM E. State of the art study on aging of asphalt mixtures and use of antioxidant additives[J]. Advances in Civil Engineering, 2018, 2018: 1-18.
[11] OUYANG C F, WANG S F, ZHANG Y, et al. Improving the aging resistance of styrene-butadiene-styrene tri-block copolymer modified asphalt by addition of antioxidants[J]. Polymer Degradation and Stability, 2006, 91(4): 795-804.
[12] LI B H, LIU Q C, YU Y J, et al. Influence of composite antioxidants to asphalt anti-aging performance[J]. Advanced Materials Research, 2012, 562/563/564: 380-384.
[13] NHI B D, THAO M T, NGO V D, et al. Synthesis of antioxidant for natural rubber using new heterogeneous catalytic system[J]. Chemical Papers, 2019, 73(12): 3115-3121.
[14] YU S S, WANG Y S, MA Y J, et al. Structure, thermal stability, antioxidant activity and DFT studies of trisphenols and related phenols[J]. Inorganica Chimica Acta, 2017, 468: 159-170.
[18] FENG Z G, YU J Y, ZHANG H L, et al. Preparation and properties of ageing resistant asphalt binder with various anti-ageing additives[C]. Applied Mechanics and Materials, 2011, 71, 1062-1067.
[19] BATISTA K B, PADILHA R P L, CASTRO T O, et al. High-temperature, low-temperature and weathering aging performance of lignin modified asphalt binders[J]. Industrial Crops and Products, 2018, 111: 107-116.
[20] PAN X J, KADLA J F, EHARA K, et al. Organosolv ethanol lignin from hybrid poplar as a radical scavenger: relationship between lignin structure, extraction conditions, and antioxidant activity[J]. Journal of Agricultural and Food Chemistry, 2006, 54(16): 5806-5813.
[21] TAUSTE R, MORENO-NAVARRO F, SOL-SNCHEZ M, et al. Understanding the bitumen ageing phenomenon: a review[J]. Construction and Building Materials, 2018, 192: 593-609.
[22] AN X J, GAO Y, DONG Z Z, et al. Effects of commercial antioxidants on aging resistances of asphalt binders[J]. Advances in Materials Science and Engineering, 2022, 2022: 1-16.
[23] DESSOUKY S, CONTRERAS D, SANCHEZ J, et al. Influence of hindered phenol additives on the rheology of aged polymer-modified bitumen[J]. Construction and Building Materials, 2013, 38: 214-223.
[24] SUN Z L, LI S T, ZHANG J H, et al. Adhesion property of bituminous crack sealants to different asphalt mixtures based on surface energy theory[J]. Construction and Building Materials, 2020, 261: 120006.
[25] KASSEM E, KHAN M S, KATUKURI S, et al. Retarding aging of asphalt binders using antioxidant additives and copolymers[J]. International Journal of Pavement Engineering, 2019, 20(10): 1154-1169.