26 / 2023-05-14 22:30:36
Preparation and characterization of a mine dust suppressant via response surface methodology
Dust suppressant; Single factor test; Compound solution; Response surface analysis; Performance characterization
Abstract Accepted
天勤 周 / 北京科技大学
娜 高 / 北京科技大学
This study determined through sedimentation experiments that the wetting agent components for the optimized formula of dust suppressants are a mixture of 2% TX-100 and 0.5% SDBS solution; Determine the optimized binder component E412 through viscosity measurement experiments; Determine the water retention agent component of the optimized formula as PAAS through water retention experiments; After determining the composite raw materials, fifteen reagent ratios were designed using design expert 13 for the mixture. The settling rate, anti evaporation performance, surface tension, and contact angle values of the reagents on coal dust were experimentally measured. Based on this, response surface analysis was conducted on the four factors affecting the dust suppression effect of the reagents. Based on the response surface results, the optimal ratio was determined as sodium dodecylbenzene sulfonate: triton: guar gum: sodium polyacrylate=39.8:53:3.9:3.3. The infrared spectrum results indicate that dust suppressants have a significant impact on the changes in the hydroxyl content of the hydrophilic functional groups in coal dust. The SEM experimental results indicate that the dust suppressant has good wetting and binding effects on coal dust, and the toxicity test shows that the sample does not have the acute inhalation toxicity characteristics of hazardous waste. Dust suppression experiments in similar spaces have shown that the dust suppression efficiency of the reagent is 95.3%, which is 41.8% and 12% higher than that of natural sedimentation and water spraying, respectively.
Important Date
  • Conference Date

    Aug 18

    2023

    to

    Aug 20

    2023

  • Jul 07 2023

    Draft paper submission deadline

  • Aug 20 2023

    Registration deadline

Sponsored By
International Committee of Mine Safety Science and Engineering
Organized By
Heilongjiang University of Science and Technology
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