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- A new approach could fractionate crude oil using much less . . .
MIT researchers have developed a new membrane that can separate different kinds of fuel by molecular size, which could replace the current energy-intensive crude oil distillation process “Roughly 1 percent of global energy use goes into separating crude oil into gasoline, diesel, and heating oil,” writes Aamir Khollam for Interesting
- MIT chemical engineers make potentially game-changing . . . - Yahoo
A team of chemical engineers at the Massachusetts Institute of Technology has invented a new process to separate crude oil components, potentially bringing forward a replacement that can cut its
- New MIT Tech Could Cut Oil Refining Energy by 90% - SciTechDaily
Turning crude oil into everyday fuels like gasoline, diesel, and heating oil demands a huge amount of energy In fact, this process is responsible for about 6 percent of the world’s carbon dioxide emissions Most of that energy is spent heating the oil to separate its components based on their boiling points
- MIT Chemical Engineers Develop New Way To Separate Crude Oil
Longtime Slashdot reader fahrbot-bot shares a report from the Cool Down: A team of chemical engineers at the Massachusetts Institute of Technology has invented a new process to separate crude oil components, potentially bringing forward a replacement that can cut its harmful carbon pollution by 90% The original technique, which uses heat to
- Polymer membrane separates hydrocarbons, offering alternative . . .
Fractional distillation of crude oil consumes nearly 1% of global energy and accounts for 6% of the world’s carbon emissions In 2016 chemical engineers Ryan Lively and David Sholl at Georgia Institute of Technology in Atlanta, US, placed the isothermal separation of crude oil top of a list of ‘seven chemical separations to change the world’
- Revolutionary Method Promises to Reduce Energy Consumption in . . .
The prospect of reducing the energy required for crude oil fractionation by as much as 90 percent holds promise for transforming global oil processing protocols fundamentally Their work not only demonstrates a potent alternative strategy for hydrocarbon separation, but it also offers a roadmap towards achieving more sustainable industrial
- Crude oil climate toll slashed by 90% in US engineering . . .
A new approach to oil separation MIT’s team created a thin polymer membrane that sieves oil compounds based on shape and size, rather than boiling points This shift could reduce the energy
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