Feasibility Of Basic Oxygen Furnace Slags As Roadway Materials In Kazakhstan
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Nazarbayev University School of Engineering and Digital Sciences
Abstract
The goal of the Republic of Kazakhstan of becoming an international transit hub within the
framework of the global “One Belt, One Road” initiative presents key challenges, particularly the
need for sustainable expansion and modernization of the national road infrastructure. This study
investigates the technical feasibility and efficiency of Basic Oxygen Furnace (BOF) slag as both
aggregate and filler in asphalt concrete (AC) mixtures for road construction in Kazakhstan.
The initial step involves an extensive material characterization of fresh and stockpiled BOF slags
sourced from a local steel plant. Laboratory testing of BOF slag-modified AC mixtures includes
measurements of water absorption, low-temperature cracking resistance, compressive strength at
various temperatures, and other key parameters. The BOF slag content in coarse and fine aggregates,
as well as in mineral fillers (including blends with conventional MP1 filler), is varied in the
experimental design. Additionally, the study investigates the use of performance-enhancing polymer
additives, and a poly-phosphoric acid ester-based binder in the BOF-enhanced AC mixtures. A
particular emphasis is placed on evaluating sulfur-modified bitumen for the wearing course, as
earlier findings of this thesis research suggest that BOF slag alone does not fully address low-
temperature cracking issues. It is established that optimized mixes containing 10% BOF slag in the
coarse fraction and 50% in the fine fraction, in combination with sulfur-modified bitumen, meet
national standards and offer improved performance characteristics. Furthermore, promising results
are achieved in the binder course, where higher proportions of stockpiled BOF slag are used as both
coarse and fine aggregates, producing compliant mixtures with enhanced cohesion, water resistance,
and mechanical strength.
Building upon experimental results, the study employs advanced numerical and machine learning
techniques. Data-driven optimization is performed using the XGBoost machine learning algorithm
and Bayesian optimization via Tree-structured Parzen Estimation (TPE) to predict performance
characteristics, identify key variables influencing cracking resistance and durability, and determine
optimal mix formulations for the wearing course.
In parallel, Finite Element Modelling (FEM) evaluates the structural response of BOF-modified
pavement layers under realistic loading conditions.
This thesis highlights the need for full-scale pilot projects to validate laboratory and simulation
findings, including long-term monitoring of chemical stability, volumetric expansion, and durability.
Revisions to Kazakhstan’s technical regulations and quality assurance protocols for BOF slag and
sulfur-modified binders are also necessary. Future work should include trial road sections, broader
mix design variations, studies of alternative additives, and life-cycle assessments of environmental
and economic impacts.
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Nugmanova, A. (2026). Feasibility of basic oxygen furnace slags as roadway materials in Kazakhstan (Doctoral Dissertation). Nazarbayev University School of Engineering and Digital Sciences
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