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Polymer-based membranes offer alternative to thermal processes for separating hydrocarbon and crude oil mixtures

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Polymer-based membranes developed at KAUST could enable greener and cheaper industrial separation approaches. Their stability and selectivity can be tuned by thermal crosslinking to separate simple hydrocarbon mixtures and complex crude oil fractions. A paper on the work is published in Science. —Chisca et al. Vasylevskyi, S.,

Polymer 186
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EU research project IDEALFUEL seeks to develop marine low-sulfur heavy fuel oils from biomass; Bio-HFO

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In an EU-funded research project, an international consortium is aiming to develop new production methods for sustainable marine fuels to replace heavy fuel oils in shipping. However, HFOs are banned in the national waters of many countries. Although cleaner fuels are available, many companies opt for HFOs due to their low cost.

Mariner 273
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NSF announces $55M toward national research priorities; intersection of food, energy and water systems

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The National Science Foundation (NSF) has made 11 awards totaling $55 million aimed at building research capacity to develop new innovations at the intersection of food, energy and water systems and to address fundamental questions about the brain. Research at the nexus of food, energy and water. Lead organization. Description.

Water 150
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Thordon Bearings Retrofitting Ocean-Going Vessels With Seawater-Lubricated Propeller Shaft Bearings To Reduce Stern-Tube Oil Pollution; Annual Leaks Estimated at About 2x Exxon Valdez Spill

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At last week’s Ocean Innovation 2009 conference in Victoria, British Columbia, Craig Carter, Director of Marketing and Customer Service at Thordon Bearings detailed the company’s progress in the retrofitting of large ocean-going vessels with seawater-lubricated propeller shaft bearings to reduce waterborne pollution. or higher.

Oil 220
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Penn State team develops more environmentally friendly method for separating bitumen or oil from sands using ionic liquids

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Separation of bitumen from a Canadian oil sand sample using an ionic liquid. A team of researchers at Penn State has developed a new, more environmentally friendly method of separating bitumen from oil sands utilizing ionic liquids (IL). The separation takes place at room temperature without the generation of waste process water.

Oil-Sands 257
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Carbon Nanotube Sponges Can Absorb Oils and Solvents up to 180x Their Own Weight; Potential for Enhanced Oil Spill Cleanup

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Researchers at Peking University and Tsinghua University have developed a carbon nanotube (CNT)-based sponge that can soak up organic pollutants—such as oils and solvents—from the surface of water. No water is absorbed and the sponge can then be wrung out and reused, like an ordinary household sponge.

Oil 199
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EPA announces 2011 Presidential Green Chemistry Challenge Awards; green chemistry market opportunity projected to be $98.5B by 2020, about 2% of total market

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The awards recognize pioneering chemical technologies developed by leading researchers and industrial innovators who are making significant contributions to pollution prevention in the United States. Fermentation requires no organic solvent, and the water used is recycled. billion in 2011 to $98.5 billion by 2020. per million Btu.

Green 236