Natural gas has recently drawn considerable attention due to its low emissions upon combustion. Pipeline transmission of natural gas is costly and always encounters different obstacles. Therefore, an effective industrial alternative for the storage and transmission of natural gas is needed. Hydrates, also known as solidified natural gas, have been proven to be a more feasible replacement compared to pipeline transmission, CNG, or LNG. Scientists have introduced promoters to shorten the induction time, increase the storage capacity, and improve the stability of hydrates. Nanostructure materials have demonstrated promising promotion results, suggesting a bright future and a critical step in the industrialization of this technology. Researcher...
Methane hydrate inheres the great potential to be a nature‐inspired alternative for chemical energy ...
Hydrates are ice-like crystalline solids which form under high pressure and low-temperature conditio...
Natural gas hydrates occur widely on the ocean-bed and in permafrost regions, and have potential as ...
Natural methane hydrates are believed to be the largest source of hydrocarbons on Earth. These struc...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Methane hydration is a safe, stable and environmentally friendly technology to bind and utilize exce...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Clathrate hydrates of natural gases show promise for energy in regions traditionally poor of fossil ...
© SGEM2018. Gas hydrates have been represented as a promise technology for many of applications, as ...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Given the increasing demand for clean natural gas energy, solidified natural gas (SNG) is regarded a...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Hydrates are ice-like crystalline solids which form under high pressure and low-temperature conditio...
Natural gas hydrates occur widely on the ocean-bed and in permafrost regions, and have potential as ...
Methane hydrate inheres the great potential to be a nature‐inspired alternative for chemical energy ...
Hydrates are ice-like crystalline solids which form under high pressure and low-temperature conditio...
Natural gas hydrates occur widely on the ocean-bed and in permafrost regions, and have potential as ...
Natural methane hydrates are believed to be the largest source of hydrocarbons on Earth. These struc...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Methane hydration is a safe, stable and environmentally friendly technology to bind and utilize exce...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Clathrate hydrates of natural gases show promise for energy in regions traditionally poor of fossil ...
© SGEM2018. Gas hydrates have been represented as a promise technology for many of applications, as ...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Given the increasing demand for clean natural gas energy, solidified natural gas (SNG) is regarded a...
Methane hydrate nucleation and growth in porous model carbon materials illuminates the way towards t...
Hydrates are ice-like crystalline solids which form under high pressure and low-temperature conditio...
Natural gas hydrates occur widely on the ocean-bed and in permafrost regions, and have potential as ...
Methane hydrate inheres the great potential to be a nature‐inspired alternative for chemical energy ...
Hydrates are ice-like crystalline solids which form under high pressure and low-temperature conditio...
Natural gas hydrates occur widely on the ocean-bed and in permafrost regions, and have potential as ...