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Keyphrases
Hg(II)
76%
Smectite
64%
Desulfovibrio Desulfuricans ND132
54%
Fe(III)
46%
MeHg
43%
Methylmercury
41%
Structural Fe(II)
36%
Illite
36%
Microbial Methylation
35%
Mercury Methylation
34%
Geobacter Sulfurreducens PCA
34%
Bioreduction
31%
Cysteine
28%
Methylation
26%
Thiols
24%
Hg(II) Methylation
23%
Biochar
23%
Microbial Community
23%
Microbial Reduction
22%
Nitrate Reduction
21%
Dissolved Organic Matter
21%
Sorption
20%
Low Temperature
20%
Mercury Hg
20%
Methylmercury Production
19%
Microbes
19%
Mercury
18%
Nontronite
17%
Gypsum
17%
Synergic
17%
Methanogens
17%
Thermophilic
17%
Fe(II) Oxidation
17%
Nitrate Removal
17%
Methanothermobacter Thermautotrophicus
17%
High-Mg Calcite
17%
Microbial nutrients
17%
Luoma Lake
17%
Nutrient Factors
17%
Sedimentary Microbial Community
17%
Biochar-derived Dissolved Organic Matter
17%
Microeukaryotes
17%
Cystine
17%
Methylation Potential
17%
Thiolate Ligands
17%
Feldspar
17%
Light-independent
17%
Microbial Biomass
17%
Acetic Acid Bacteria
17%
Mercury Adsorption
17%
Earth and Planetary Sciences
Bacterium
100%
Montmorillonite
93%
Clay Mineral
53%
Methylation
51%
Nontronite
43%
Illite
38%
Microbial Community
34%
Organic Matter
34%
Nitrate Reduction
34%
Scanning Electron Microscopy
30%
Principal Component Analysis
21%
United States of America
21%
Illinois
19%
Carbon Dioxide
17%
Diatom
17%
Benthic foraminifera
17%
Salinity
17%
Desorption
17%
Pressure Effect
17%
Calcite
17%
Dolomite
17%
Environmental Change
17%
Biomineralization
17%
Biochar
17%
Polypropylene
17%
Microbial Ecology
17%
Marine Environment
17%
Hazardous Substance
17%
Ore Deposit
17%
Coevolution
17%
Crystal Defect
17%
Inductively Coupled Plasma Method
17%
Diagenesis
17%
Marine Chemistry
17%
Marine Sediment
17%
Atmospherics
17%
Alkalinity
17%
Lipid
17%
Saline Spring
17%
Ammonia
17%
Bioaugmentation
17%
Sorption
17%
Transmission Electron Microscopy
16%
X Ray Diffraction
16%
Physical Environment
14%
Hematite
12%
Aquatic Environment
12%
Heavy Metal
11%
Interlayer
11%
Nitrite
10%