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A Self-Perpetuating Catalyst for the Production of Complex Organic Molecules in Protostellar NebulaeThe formation of abundant carbonaceous material in meteorites is a long standing problem and an important factor in the debate on the potential for the origin of life in other stellar systems. Many mechanisms may contribute to the total organic content in protostellar nebulae, ranging from organics formed via ion-molecule and atom-molecule reactions in the cold dark clouds from which such nebulae collapse, to similar ion-molecule and atom-molecule reactions in the dark regions of the nebula far from the proto star, to gas phase reactions in sub-nebulae around growing giant planets and in the nebulae themselves. The Fischer-Tropsch-type (FTT) catalytic reduction of CO by hydrogen was once the preferred model for production of organic materials in the primitive solar nebula. The Haber-Bosch catalytic reduction of N2 by hydrogen was thought to produce the reduced nitrogen found in meteorites. However, the clean iron metal surfaces that catalyze these reactions are easily poisoned via reaction with any number of molecules, including the very same complex organics that they produce and both reactions work more efficiently in the hot regions of the nebula. We have demonstrated that many grain surfaces can catalyze both FTT and HB-type reactions, including amorphous iron and magnesium silicates, pure silica smokes as well as several minerals. Although none work as well as pure iron grains, and all produce a wide range of organic products rather than just pure methane, these materials are not truly catalysts.
Document ID
20110007075
Acquisition Source
Goddard Space Flight Center
Document Type
Extended Abstract
Authors
Nuth, Joseph A.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Johnson, N. M.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
August 25, 2013
Publication Date
July 10, 2010
Subject Category
Exobiology
Meeting Information
Meeting: Meteoritical Society Meeting
Location: Nancy
Country: France
Start Date: July 10, 2009
End Date: July 18, 2009
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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