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August 22, 2025Minerals5 citationsOpen Access

Effect of Mixing Water Temperature on the Thermal and Microstructural Evolution of Cemented Paste Backfill in Underground Mining

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ASA. SafariCTCody TennantAGAliakbar Gholampour

Key Points

  • Moderate mixing water temperatures improve hydration and mechanical strength, while excessive temperatures increase thermal cracking risk.
  • Mixing water temperatures between 20–35 °C optimized hydration, with 50 °C mixes reaching peak temperatures of 85.6 °C.
  • Assessment using thermal finite element modelling and thermogravimetric analysis analyzed the thermal profile of five CPB mixtures.
  • Findings highlight that regulating mixing water temperature can enhance the design of paste plants, reducing binder consumption.

Abstract

Cemented paste backfill (CPB) gains strength through the hydration of the binder constituent of the CPB, where mix temperature is a key influencing factor. Both rate of strength development and ultimate strength are influenced by the overarching temperature conditions in which the binder hydration occurs. This study investigates the influence of mixing water temperature on the thermal behaviour, hydration kinetics, and microstructural development of CPB using a combination of thermal finite element modelling, thermogravimetric analysis (TGA), scanning electron microscopy (SEM), and energy-dispersive X-ray spectroscopy (EDS). Five CPB mixtures were prepared, with water temperatures ranging from 5 °C to 50 °C, and tested under controlled conditions to isolate the effects of the initial thermal input. Results show that moderate mixing water temperatures (20–35 °C) optimize hydration and mechanical strength, while excessive temperatures (≥50 °C) increase the risk of thermal cracking due to generation of excessive heat. The thermal modelling results demonstrated that the highest temperatures were observed in the bottom section of the fill mass, in contact with the surrounding rock, where the combined effects of mix-generated heat and rock conduction were most pronounced. The 50 °C mix reached a peak internal temperature of 85.6 °C with a thermal gradient of 40.5 °C, while the 5 °C mix recorded a much lower peak of 55.7 °C and a gradient of 16.8 °C. These results highlight that higher mixing water temperatures accelerate early hydration reactions and significantly influence the internal thermal profile during the first 21 days of curing. Based on these findings, the design of paste plants can be improved by incorporating a heating/cooling system for the mixing water tank—firstly, to ensure the water temperature does not exceed 50 °C and secondly, to maintain water within an optimal temperature range, potentially reducing binder consumption.

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Cite This Study

Safari et al. (2025) studied this question.

synapsesocial.com/papers/68af541fad7bf08b1eadb7cdhttps://doi.org/10.3390/min15090887
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