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OIL AND GAS
CCNY researchers develop eco-friendly oil spill solution
by Staff Writers
New York NY (SPX) Jul 01, 2015


File image.

City College of New York researchers led by chemist George John have developed an eco-friendly biodegradable green "herding" agent that can be used to clean up light crude oil spills on water.

Derived from the plant-based small molecule phytol abundant in the marine environment, the new substance would potentially replace chemical herders currently in use. According to John, professor of chemistry in City College's Division of Science, "the best known chemical herders are chemically stable, non-biodegradable, and hence remain in the marine ecosystem for years."

"Our goal was to develop an eco-friendly herding molecule as an alternative to the current silicone-based polymers," said John.

Herding agents are surface-active molecules (surfactants) that when added to a liquid, such as seawater, reduce the surface tension. In the case of oil spills, when they are added along the periphery of an oil spill slick, they contract and thicken the slick or push slicks together so that they can be collected or burned.

"Understanding the interfacial behavior is crucial to design the next generation eco-friendly herding agents" said Charles Maldarelli, a professor of chemical engineering in CCNY's Benjamin Levich Institute for Physico-Chemical Hydrodynamics who participated in the study.

John's research team also included Deeksha Gupta, a postdoctoral student now at the Royal Society of Chemistry, and Vijay John of Tulane University.


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OIL AND GAS
Argonne analysis shows increased carbon intensity from Canadian oil sands
Argonne IL (SPX) Jul 01, 2015
The U.S. Department of Energy's Argonne National Laboratory this week released a study that shows gasoline and diesel refined from Canadian oil sands have a higher carbon impact than fuels derived from conventional domestic crude sources. The research, which was conducted in collaboration with Stanford University and the University of California at Davis, shows variability in the increase ... read more


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