Multi-walled carbon nano tubes effects for methane hydrate formation
Sung-Seek Park, Nam‐Jin Kim
Abstract
Sung-Seek Park, Nam‐Jin Kim
Abstract
Methane hydrate is considered an excellent way of transporting and storing natural gas in large quantities. However, when methane hydrate is formed artificially, the amount of consumed gas is relatively low due to a slow reaction rate between water and methane gas. Therefore, for the practical purpose in the application, the present investigation focuses on the rapid hydrate formation and the amount of consumed gas by adding MWCNT to pure water. The results show that when the multiwall carbon nano tubes of 0.004 wt% was added to pure water, the amount of consumed gas was about 300% higher than that in pure water and the hydrate formation time decreased at the low subcooling temperature.
OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Methane hydrate is considered an excellent way of transporting and storing natural gas in large quantities. However, when methane hydrate is formed artificially, the amount of consumed gas is relatively low due to a slow reaction rate between water and methane gas. Therefore, for the practical purpose in the application, the present investigation focuses on the rapid hydrate formation and the amount of consumed gas by adding MWCNT to pure water. The results show that when the multiwall carbon nano tubes of 0.004 wt% was added to pure water, the amount of consumed gas was about 300% higher than that in pure water and the hydrate formation time decreased at the low subcooling temperature.
Key concepts: Methane, Subcooling, Hydrate, Clathrate hydrate, Carbon fibers, Natural gas, Chemical engineering, Carbon dioxide