** vi CI 10 Desulfovibrio vulgaris 6. SR humic acid? hematite $ 6 7 pH 3 4 8 9 10 Fig. 7-12. Comparison of U(VI) binding to three surface types, as a function of pH. I=0.01 M. Rela tive sorption intensity is expressed in terms of partitioning coefficient in which the data are norma- ized to site concentration (L moie-). Desulfinibrio vulgaris: a Gram-negative bacteria in a resing stage (from Landkamer et al. 2000, unpublished datal; Suwannee River humic acid (data from Lenhrt. 1997); hematite (data from Lenhart & Honeyman, 1999), log (P (L mole"))

Principles of Instrumental Analysis
7th Edition
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Chapter26: An Introduction To Chromatographic Separations
Section: Chapter Questions
Problem 26.16QAP
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Describe and explain the sorption of uranium as shown in figure 7-12. SR stands for Suwanee River, and all abbreviations are explained in the figure caption.
10
Desulfovibrio vulgaris'
6.
SR humic
acid?
hematite
$ 6 7 8 9
pH
3
4
10
Fig. 7-12. Comparison of U(VI) binding to three surface types, as a function of pH. I=0.01 M. Rela
tive sorption intensity is expressed in terms of partitioning coefficient in which the data are sorma-
ized to site concentration (L mole-). Desulfenibrio vulgaris: a Gram-negative bacteria in a resing
stage (from Landkamer et al. 2000, unpublished data); Suwannee River humic acid (data from Lenhrt.
1997); hematite (data from Lenhart & Honeyman, 1999).
log (P (L mole")]
Transcribed Image Text:10 Desulfovibrio vulgaris' 6. SR humic acid? hematite $ 6 7 8 9 pH 3 4 10 Fig. 7-12. Comparison of U(VI) binding to three surface types, as a function of pH. I=0.01 M. Rela tive sorption intensity is expressed in terms of partitioning coefficient in which the data are sorma- ized to site concentration (L mole-). Desulfenibrio vulgaris: a Gram-negative bacteria in a resing stage (from Landkamer et al. 2000, unpublished data); Suwannee River humic acid (data from Lenhrt. 1997); hematite (data from Lenhart & Honeyman, 1999). log (P (L mole")]
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