International Journal of Hydrogen Energy, Journal Year: 2025, Volume and Issue: 115, P. 146 - 156
Published: March 10, 2025
Language: Английский
International Journal of Hydrogen Energy, Journal Year: 2025, Volume and Issue: 115, P. 146 - 156
Published: March 10, 2025
Language: Английский
International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 62, P. 979 - 993
Published: March 16, 2024
Language: Английский
Citations
19International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: unknown
Published: May 1, 2024
Language: Английский
Citations
19International Journal of Thermofluids, Journal Year: 2025, Volume and Issue: unknown, P. 101119 - 101119
Published: Feb. 1, 2025
Language: Английский
Citations
3Journal of Cleaner Production, Journal Year: 2023, Volume and Issue: 429, P. 139585 - 139585
Published: Nov. 1, 2023
Language: Английский
Citations
28International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 65, P. 95 - 111
Published: April 4, 2024
Language: Английский
Citations
13International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 68, P. 929 - 939
Published: May 1, 2024
Language: Английский
Citations
12Journal of Building Engineering, Journal Year: 2024, Volume and Issue: 90, P. 109414 - 109414
Published: April 22, 2024
Language: Английский
Citations
10International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 86, P. 275 - 292
Published: Aug. 30, 2024
Language: Английский
Citations
10Physics of Fluids, Journal Year: 2025, Volume and Issue: 37(2)
Published: Feb. 1, 2025
Compared to macroscopic bubbles, nanobubbles have unique physicochemical properties that make them highly promising for scientific research. Hydrogen (HNBs), in particular, combine hydrogen's with nanobubble-specific effects, offering significant applications energy, water treatment, and medicine. This study systematically investigated the stability dynamics of HNBs using molecular simulations. The results show sustained formation requires hydrogen reach supersaturation. Bubbles diameters between 1.1 2.8 nm exhibit pressures ranging from 969.5 406.6 atm. Theoretical solubility, calculated Henry's law based on pressure, remains valid at nanoscale. An electrical double layer was observed gas–liquid interface, resulting reorientation molecules. electrostatic force generated by counteracts ultra-high Laplace aiding nanobubbles. dynamic properties, such as diffusion coefficients water, decrease HNB size increases. viscosity solution containing different sizes decreases 6.64%, 8.14%, 14.16%, 19.29%, 27.08%, respectively. These findings provide valuable insights advancing research application HNBs.
Language: Английский
Citations
1Journal of Energy Storage, Journal Year: 2025, Volume and Issue: 114, P. 115790 - 115790
Published: Feb. 15, 2025
Language: Английский
Citations
1