Title of article :
Organic matter sequestered in potential energy fields predicted by 3-D clay microstructure model: Direct observations of organo-clay micro- and nanofabric
Author/Authors :
Bennett، نويسنده , , Richard H. and Hulbert، نويسنده , , Matthew H. and Curry، نويسنده , , Kenneth J. and Curry، نويسنده , , Ann and Douglas، نويسنده , , Jessica، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
7
From page :
108
To page :
114
Abstract :
Transmission Electron Microscopy (TEM) observations confirm theoretical predictions of the location of organic matter (OM) sequestered in fine-grained sediment. Organo-clay micro- and nanoscale fabric images validate for the first time the protective adsorption model of OM preservation. Preservation of OM against enzymatic digestion is demonstrated predominately at locations consistent with our model of the potential energy field that is developed through interactions of clay minerals, the OM, and pore water chemistry. Pores observed in 2-D fabric TEM images of clay muds commonly appear to be totally encapsulated. However, the great majority of these pores are clearly demonstrated to be open in one or more directions when observed in rotated 3-D images. Despite the scarcity of completely closed pores, OM is preserved against enzymatic attack in those locations where the predicted 3-D potential energy of interaction between clay domains and OM is attractive.
Keywords :
Clay microstructure , clay domains , potential energy fields , carbon sequestering , nanofabric , Organic matter , Microfabric , MODELING
Journal title :
Marine Geology
Serial Year :
2012
Journal title :
Marine Geology
Record number :
2258102
Link To Document :
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