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May 9, 2026Construction and Building Materials in Transportation0 citationsOpen Access

Kraft Lignin-Modified Bitumen: A Comprehensive Analysis via Rheology, FTIR and ¹H-NMR Spectroscopy

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SKStavros KalampokisJMJohannes MirwaldAKAlexis D. Kouvelas

Key Points

  • The study aims to analyze the rheological and physicochemical properties of bitumen modified with Kraft lignin and evaluate its short-term aging susceptibility.
  • Characterization of binders with 5%, 10%, and 15% lignin content using Dynamic Shear Rheometer (DSR).
  • FTIR and ¹H-NMR spectroscopy were utilized for structural analysis of the binders before and after Rolling Thin Film Oven Test (RTFOT).
  • Aging susceptibility quantified through two rheological and four physicochemical indexes.
  • Bio-modified bitumen shows enhanced resistance to rutting but reduced fatigue performance due to Kraft lignin.
  • FTIR findings correlate with mechanical characteristics, improved by using a subtraction computational approach.
  • Increased aging susceptibility across chemorheological indexes observed with all lignin-modified binders.

Abstract

The present study focuses on the characteristic, rheological and physicochemical properties as well as the short-term aging susceptibility of Kraft lignin-modified bitumen. The reference binder was a 70/100 penetration grade bitumen, from which three lignin-modified binders with different lignin content per weight (5%, 10% and 15% lignin content) were produced. The rheological characterization was conducted via a Dynamic Shear Rheometer (DSR). The sulfoxide and carbonyl functional groups of the binders were explored via Fourier Transform Infrared (FTIR) spectroscopy and the molecular structure of the binders was inspected via Proton Nuclear Magnetic Resonance ( 1 H-NMR) spectroscopy. The aforementioned testing protocols were assessed before and after Rolling Thin Film Oven Test (RTFOT) aging to assess the impact of lignin on bitumen during short-term aging, a crucial process during the production stage. Two rheological and four physicochemical aging indexes were calculated to quantify the short-term aging susceptibility of bitumen. A notable reinforcement of bitumen’s resistance to rutting and permanent deformation was observed following bio-modification, albeit with a compromise in fatigue performance. Kraft lignin contributed to increased aging susceptibility of bitumen across all chemorheological aging metrics. Additionally, the sulfoxide FTIR region correlated significantly with the mechanical characteristics of bitumen, especially when determined via the subtraction computational approach. Finally, the two spectroscopic techniques should be applied complementarily, as each provides unique, non-redundant structural information. • The bio-modification causes structural changes based on the FTIR and NMR findings. • The bio-modified binders have superior high temperature performance. • FTIR and DSR results correlate better when the FTIR subtraction method is implemented. • Kraft lignin deteriorates the short-term ageing resistance of bitumen.

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Cite This Study

Kalampokis et al. (2026) studied this question.

synapsesocial.com/papers/69fecf94b9154b0b8287684ahttps://doi.org/10.1016/j.jcbmtr.2026.100009
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