Microbial Transformation and Degradation of Toxic Organic ChemicalsThis book examines the role of microbes, from theoretical, field, and applied perspectives, in the degradation of toxic organic chemicals. |
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Page 155
We shall discuss the distinguishing features of each of these environmental
alteration patterns in turn . 6 . 2 . 1 . Pattern B Pattern B exhibits less complete
removal of meta and para chlorines than either pattern B ' or C ; hence 2 - 3 - CB
and 2 ...
We shall discuss the distinguishing features of each of these environmental
alteration patterns in turn . 6 . 2 . 1 . Pattern B Pattern B exhibits less complete
removal of meta and para chlorines than either pattern B ' or C ; hence 2 - 3 - CB
and 2 ...
Page 156
The levels of 2 - 4 - CB are lower than in pattern B , but higher than in C . This
congener profile is what would be expected from a fairly advanced process M
dechlorination followed by less developed process Q dechlorination . 6 . 2 . 3 .
Pattern ...
The levels of 2 - 4 - CB are lower than in pattern B , but higher than in C . This
congener profile is what would be expected from a fairly advanced process M
dechlorination followed by less developed process Q dechlorination . 6 . 2 . 3 .
Pattern ...
Page 160
tion of process P and , to a lesser extent , N could also give this pattern ( See Figs
. 4 . 6 – 4 . 8 ) . Pattern G appears to be the result of further dechlorination of the
products of pattern F , which culminates in the removal of about 61 % of the meta
...
tion of process P and , to a lesser extent , N could also give this pattern ( See Figs
. 4 . 6 – 4 . 8 ) . Pattern G appears to be the result of further dechlorination of the
products of pattern F , which culminates in the removal of about 61 % of the meta
...
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Contents
MICROBIAL VERSATILITY | 13 |
Norberto J Palleroni | 27 |
CLEANUP OF PETROLEUM HYDROCARBON | 77 |
Copyright | |
14 other sections not shown
Common terms and phrases
acid activity added addition aerobic anaerobic Appl Environ Microbiol application Aroclor aromatic bacteria biodegradation biological bioremediation biphenyl carbon cells changes chemical chlorinated chlorophenols complete compounds concentration congeners contaminated cultures dechlorination dechlorination processes decreases degradation dehalogenation demonstrated detected determine effect electron enrichment environmental enzymes et al example experiments factors field Figure gene Gibson glyphosate groups growth Hudson River hydrocarbons important increased indicated industrial initial involved isolated laboratory Lake levels limited mechanisms meta metabolism methods microbial microorganisms mineralization mixture naphthalene natural observed occur organic oxidation oxygen PAHs pathway pattern phenols populations potential present Pseudomonas reactions recent reductive relative removal reported responsible ring samples sediment selective showed shown sludge soil specific strain structure studies substrate suggested sulfate Table tion toluene toxic transformation treatment Ware waste