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A model for enzymatic binding of pollutants in the soil
Jean Marc Bollag,
Wendy B. Bollag
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Scopus citations
Overview
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Dive into the research topics of 'A model for enzymatic binding of pollutants in the soil'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Amines
24%
Aniline Compounds
42%
Binding Sites
18%
Environmental Pollutants
53%
ferulic acid
33%
Guaiacol
35%
Humic Substances
80%
Laccase
37%
Monophenol Monooxygenase
59%
Oxidative Coupling
44%
Peroxidases
36%
Phenols
63%
Poisons
17%
Soil
51%
Soil Pollutants
100%
Xenobiotics
25%
Agriculture & Biology
aniline
28%
aromatic amines
32%
catechol oxidase
24%
chemical reactions
26%
copolymerization
29%
cross-coupling reactions
40%
ferulic acid
25%
guaiacol
30%
humic acids
27%
humic substances
31%
humus
55%
laccase
25%
monophenol monooxygenase
28%
peroxidases
27%
phenols
45%
pollutants
45%
soil pollution
55%
toxic substances
22%
toxicity
16%
xenobiotics
24%
Chemical Compounds
Aniline
19%
Aromatic Amine
24%
Chemical Reactivity
24%
Copolymerization
19%
Coupling Reaction
21%
Detoxification
26%
Environment
26%
Environmental Pollutant
38%
Ferulic Acid
28%
Guaiacol
30%
Humic Acid
25%
Humus
72%
Monomer
13%
Oxidative Coupling Reaction
32%
Peroxidase
21%
Phenol
34%
Soil
39%
Toxic Substance
25%
Xenobiotic Agent
27%
Engineering & Materials Science
Acids
21%
Amines
27%
Aniline
36%
Chemical reactivity
36%
Copolymerization
34%
Detoxification
38%
Humic Substances
81%
Monomers
27%
Peroxidases
50%
Phenols
59%
Soils
36%
Substrates
16%
Toxicity
27%
Xenobiotics
43%
Earth & Environmental Sciences
acid
9%
amine
16%
chemical
23%
complex formation
19%
detoxification
17%
effect
3%
humic acid
15%
humic substance
17%
humus
34%
material
6%
phenol
29%
pollutant
27%
product
15%
soil
20%
substrate
10%
toxicity
11%
xenobiotics
18%
Social Sciences
efficiency
11%
migration
10%
pollutant
53%
Toxic compounds
28%