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Effect of hydration/solvation of organic matter on sorption of organic compounds: Conception and sorption isotherm model
Year:
2003
Authors :
Borisover, Mikhail
;
.
Graber, Ellen
;
.
Volume :
Co-Authors:
Facilitators :
From page:
54
To page:
64
(
Total pages:
11
)
Abstract:

The effect of hydration of mineral surfaces on sorption of organic compounds is well known
and documented [1–3]. In the dry state, minerals have high sorption capacity for organic
compounds. Upon hydration however, water molecules are preferentially adsorbed to
mineral surfaces, reducing mineral sorption capacity for organic compounds substantially. In
fact, because of this effect, natural organic matter is by far the most important sorbent for
organic compounds in hydrated systems [4]. Yet surprisingly, and in contrast to the …

Note:

Chapter 7

Related Files :
Hydration
hydrogeology
isotherm
Natural organic matter (NOM)
Organic compounds
Organic matter
solvation
Sorption
Show More
Related Content
More details
DOI :
Article number:
0
Affiliations:
Database:
Google Scholar
Publication Type:
Book chapter
;
.
Language:
English
Editors' remarks:
ID:
38306
Last updated date:
02/03/2022 17:27
Creation date:
09/12/2018 15:04
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Scientific Publication
Effect of hydration/solvation of organic matter on sorption of organic compounds: Conception and sorption isotherm model
Effect of hydration/solvation of organic matter on sorption of organic compounds: Conception and sorption isotherm model

The effect of hydration of mineral surfaces on sorption of organic compounds is well known
and documented [1–3]. In the dry state, minerals have high sorption capacity for organic
compounds. Upon hydration however, water molecules are preferentially adsorbed to
mineral surfaces, reducing mineral sorption capacity for organic compounds substantially. In
fact, because of this effect, natural organic matter is by far the most important sorbent for
organic compounds in hydrated systems [4]. Yet surprisingly, and in contrast to the …

Chapter 7

Scientific Publication
You may also be interested in