Stability Assessment of Ultrasound-Assisted Dispersion of Boron as a High-Energy-Density Particle in Hydrocarbon Fuel: A Response Surface Methodology Approach

Author:

Pregnapuram Dilipkumar1,Sonawane Shirish H.1ORCID,Suranani Srinath1ORCID

Affiliation:

1. Department of Chemical Engineering, National Institute of Technology, Warangal, Telangana 506004, India

Funder

Defence Research and Development Organisation

Publisher

American Chemical Society (ACS)

Reference34 articles.

1. Boron materials for energy applications

2. Synthesis and characterization of aviation turbine kerosene nanofuel containing boron nanoparticles

3. National Academies of Sciences, Division on Engineering Physical Sciences, Aeronautics, Space Engineering Board, Committee on Propulsion, Energy Systems to Reduce Commercial Aviation Carbon Emissions. Commercial aircraft propulsion and energy systems research: reducing global carbon emissions. National Academies Press; 2016 Aug 9. ISBN, 978–0-309–44096–7.

4. The potential of future aircraft technology for noise and pollutant emissions reduction

5. Development of High-Energy-Density Liquid Aerospace Fuel: A Perspective

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