Scientists found that a tiny atomic structure that forms on nickel oxide during methane conversion is more effective than the ...
Credit: DICP A hidden atomic structure formed on nickel oxide could enable powerful methane catalysts that use 10 times less nickel. Producing syngas efficiently from methane could become easier with ...
Through a combination of high-pressure experiments and optical spectroscopy, physicists have revealed new insights into the structural forms of solid methane. Led by Mengnan Wang at the University of ...
A catalyst with a hydrophobic cavity that contains an active iron centre has been developed to convert methane into methanol. It has a ‘catch-and-release’ mechanism whereby a hydrophobic methane ...
A nickel oxide surface rebuilt itself into active atomic sites, helping a 0.8% nickel catalyst convert 92% of methane with 87 ...
Partial oxidation of methane (POM) offers a promising industrial route for syngas production. Metallic nickel (Ni) nanoparticles have long been ...
Researchers put dairy emissions in the mix in the hunt for viable metal-organic combinations. Just as New Zealand’s viable gas supplies start to run low, work by a Victoria University researcher may ...
The Daily Galaxy on MSN
Mars air could become rocket fuel as scientists unlock a new way to make methane
Researchers at the University of Mississippi have developed a method that could help future Mars missions produce rocket fuel ...
Ocean sediments are a massive storehouse for the potent greenhouse gas methane. Trapped in ocean sediments near continents lie ancient reservoirs of methane called methane hydrates. These ice-like ...
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