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Bioremediation of chlorinated ethenes in aquifer thermal energy storage
Z. Ni
Environmental Technology
WIMEK
Research output
:
Thesis
›
internal PhD, WU
Overview
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Dive into the research topics of 'Bioremediation of chlorinated ethenes in aquifer thermal energy storage'. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Bioremediation
100%
Dechlorination
100%
Ethylene
100%
Dehalococcoides
66%
Flow Rate
33%
Biostimulation
20%
Oxidation Reduction Potential
20%
Cryopreservation
13%
Conditioning
13%
Biodegradation
13%
Biological Activity
13%
Solution and Solubility
6%
Microorganism
6%
Biological Phenomena and Functions Concerning the Entire Organism
6%
Bacterial Growth
6%
Low Drug Dose
6%
Sulfate
6%
Dry Mass
6%
Ascorbic Acid
6%
Renewable Energy
6%
Earth and Planetary Sciences
Heat Storage
100%
Ethylene
100%
Bioremediation
100%
Dechlorination
41%
Volatile Organic Compound
16%
Flow Velocity
13%
Natural Attenuation
13%
Borehole
8%
Redox Potential
8%
Redox Condition
5%
Liquid Phase
5%
Biological Activity
5%
In Situ Bioremediation
5%
Bioaugmentation
5%
Netherlands
2%
Renewable Energy
2%
Laboratory Experiment
2%
Field Study
2%
Limiting Factor
2%
Energy Supply
2%
Reactive Transport
2%
Oxidant
2%
Geochemistry
2%
Groundwater Contamination
2%
Metal Oxide
2%
Groundwater Remediation Technique
2%
Exchanging
2%
Environmental Quality
2%
Organic Acid
2%
Biological Process
2%
Iron
2%
Redox Fluctuation
2%
Immunology and Microbiology
Bioremediation
100%
Dechlorination
100%
Dehalococcoides
66%
Flow Rate
33%
Inoculum
20%
Oxidation Reduction Potential
20%
Biodegradation
13%
Bioaugmentation
13%
Conditioning
13%
Cryopreservation
13%
Biological Activity
13%
Microbiology
6%
Solution and Solubility
6%
Biological Phenomena and Functions Concerning the Entire Organism
6%
Low Drug Dose
6%
Bacterial Growth
6%
Ascorbic Acid
6%
Dry Mass
6%
Microorganism
6%
Renewable Energy
6%
Engineering
Aquifer Thermal Energy Storage
100%
Bioremediation
100%
Combined System
21%
Subsurface
15%
Natural Attenuation
15%
Flow Velocity
15%
Flow Rate
12%
Thermal Energy Storage System
12%
Column System
12%
Borehole Thermal Energy Storage
9%
Microbial
6%
Biodegradation
6%
In Situ Bioremediation
6%
Bioaugmentation
6%
Soil Matrix
6%
Liquid Phase
6%
Bioactivity
6%
Biomass Concentration
3%
Environmental Biotechnology
3%
Negative Impact
3%
Removal Rate
3%
Mols
3%
Column Experiment
3%
Biochemicals
3%
Initial Stage
3%
Design Alternative
3%
Conversion Rate
3%
Constant Temperature
3%
Engineering Tool
3%
Electron Donor
3%
Limiting Factor
3%
Cold Condition
3%
Process Factor
3%
Influence Zone
3%
Liquid Velocity
3%
Fermenter
3%
Pressure Drop
3%
Pressure Buildup
3%
Complete Model
3%
Field Study
3%
Underground Thermal Energy Storage
3%
Renewable Energy
3%
Iron
3%
Chemical Engineering
Ethylene
100%
Biodegradation
50%
Ascorbic Acid
25%
Carboxylic Acid
25%
Organic Acid
25%
Groundwater Remediation Technique
25%