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posted by Fnord666 on Tuesday February 25 2020, @05:18AM   Printer-friendly
from the olestra dept.

Chemists develop safer hydrogenation processes

Safe and environmentally-friendly hydrogen gas on demand could be on the horizon following a new "hydrogenation" chemical process in development at The City College of New York. Led by Mahesh K. Lakshman, the research uniquely bypasses the need for an external source of hydrogen gas to accomplish a wide range of hydrogenations. It appears as an inside cover feature in the 2020 issue #1 of journal "Advanced Synthesis and Catalysis."

[...] "[Hydrogenation] also needs a source of hydrogen gas, which to date is available from compressed hydrogen gas cylinders. These compressed hydrogen gas cylinders are not only expensive but they pose an extreme explosion and fire hazard." [...] The research developed in CCNY's Division of Science eliminates the need for this compressed gas and results in a safer operational procedure.

"What we have found is that we can mix two stable materials together in the presence of palladium on charcoal and this produces a mixture capable of "hydrogenation," without requiring an external source of compressed hydrogen gas," said Lakshman. "This work was inspired by a publication from the Benjamin Stokes labs at University of California -- Merced. Stokes used water as the source of hydrogen atoms but there were certain things that did not seem achievable under his conditions. Our conditions seem much broader in that many different types of hydrogenations can be accomplished."

Among its other applications, Lakshman pointed that this new process of hydrogenation could be useful in undergraduate chemistry teaching modules. It would allow labs to dispense with compressed hydrogen gas cylinders. "In addition, we have also developed conditions for introducing the heavier isotope (deuterium) by understanding the underlying mechanistic aspects. The concept of heavy drugs utilizes deuterium in place of hydrogen to slow down metabolism, with beneficial medicinal applications," added Lakshman.

Catalytic Reductions Without External Hydrogen Gas: Broad Scope Hydrogenations with Tetrahydroxydiboron and a Tertiary Amine (open, DOI: 10.1002/adsc.201901099) (DX)


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  • (Score: 0) by Anonymous Coward on Tuesday February 25 2020, @01:55PM

    by Anonymous Coward on Tuesday February 25 2020, @01:55PM (#962349)

    Wow! that website makes my eyes bleed with all the lavender it shoves into them.