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Theoretical prediction of collision efficiency between adhesion-deficient bacteria and sediment grain surface
Hailiang Dong
, Tullis C. Onstott
, Chun Han Ko
, Andrew D. Hollingsworth
, Derick G. Brown
, Brian J. Mailloux
Geosciences
Civil & Environmental Engineering
High Meadows Environmental Institute
Princeton Materials Institute
Research output
:
Contribution to journal
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Article
›
peer-review
83
Scopus citations
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Keyphrases
Fe-Al Hydroxides
33%
Interaction Curves
33%
Derjaguin-Landau-Verwey-Overbeek (DLVO) Theory
33%
Energy Interaction
33%
Energy Well
33%
Al Concentration
33%
Bacterial Surface
33%
Fresh Groundwater
33%
Bacterial Attachment
33%
Fe Concentration
33%
Patch-wise
33%
Natural Sediment
33%
Carbon Coating
33%
Comamonas
33%
Hydroxide Minerals
33%
Positive Charge
33%
Mixing Approach
33%
Quartz Surface
33%
Charge Reverse
33%
Separation Distance
33%
Iron Oxide Surface
33%
Mineral Coating
33%
Secondary Energy Minimum
33%
Engineering
Surface Grain
100%
Dissolved Organic Carbon
33%
Derjaguin
33%
Separation Distance
33%
Bacterial Attachment
33%
Earth and Planetary Sciences
Surface Property
100%
Iron Oxide
100%
Chemical Engineering
Organic Carbon
100%