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The effects of flow rate and concentration on nitrobenzene removal in abiotic and biotic zero-valent iron columns
Weizhao Yin, Jinhua Wu, Weilin Huang, Yongtao Li, Gangbiao Jiang
Section for Organismal Biology
13
Citations (Scopus)
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Dive into the research topics of 'The effects of flow rate and concentration on nitrobenzene removal in abiotic and biotic zero-valent iron columns'. Together they form a unique fingerprint.
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Engineering & Materials Science
Nitrobenzene
100%
Iron
52%
Flow rate
43%
Aniline
22%
Microorganisms
11%
Coprecipitation
7%
Recovery
6%
Remediation
6%
Groundwater
5%
Porous materials
4%
Adsorption
4%
Impurities
4%
Hydraulics
3%
Chemical Compounds
Nitrobenzene
60%
Flow Kinetics
44%
Column Like Crystal
34%
Aniline
12%
Reduction
6%
Chemical Transformation
6%
Groundwater
5%
Remediation
4%
Coprecipitation
4%
Adsorption
2%
Earth & Environmental Sciences
iron
38%
removal
30%
rate
19%
effect
13%
microorganism
9%
porous medium
5%
remediation
5%
adsorption
4%
hydraulics
4%
groundwater
3%
pollutant
3%