David Lippincott
6 articles
United States
APTIM
Biography
David Lippincott is the Remediation Geologist and researcher in the Biotechnology Development and Applications Group at APTIM in Lawrenceville, NJ with over 25 years of experience in the environmental field. David’s current areas of research include the development of in situ technologies for recalcitrant and emerging groundwater contaminants, including PFAS, chlorinated solvents, EDB, NDMA and 1,4-dioxane. He earned bachelor’s degrees in Geology and Business from Stockton University in Galloway, NJ.
Publications by Year
Showing 6 of 6
Lysimeters to Evaluate PFAS Leaching at AFFF-Impacted Sites
CS
Charles Schaefer
CDM Smith
SH
Shilai Hao
Colorado School of Mines
NG
Nicholas Gonda
Colorado School of Mines
CZ
+5 more
Chuhui Zhang
Colorado School of Mines
I3.: PFAS Fate and Transport (Platform)
13th International Conference on Remediation of Chlorinated and Recalcitrant Compounds
In Situ Sorption of PFAS Using Colloidal Activated Carbon
AD
Anthony Danko
NAVFAC EXWC
PH
Paul Hatzinger
APTIM
GL
Graig Lavorgna
APTIM
DL
+1 more
David Lippincott
APTIM
Attachment
B4.: In Situ Activated Carbon-Based Amendments: Assessing Effectiveness and Performance (Platform)
13th International Conference on Remediation of Chlorinated and Recalcitrant Compounds
(Group 1, Poster Board #182) Passive In Situ PFAS Immobilization and Removal Using a Novel Funnel and Gate System
DL
David Lippincott
APTIM
PH
Paul Hatzinger
APTIM
GL
Graig Lavorgna
APTIM
SF
+3 more
Sara Foxwell
APTIM
E2. In Situ PFAS Treatment Approaches (Poster)
Poster
E2.: In Situ PFAS Treatment Approaches (Poster)
13th International Conference on Remediation of Chlorinated and Recalcitrant Compounds
Passive In Situ PFAS Capture and Removal Using a Novel Funnel and Gate System
DL
David Lippincott
APTIM
GL
Graig Lavorgna
APTIM
SF
Sara Foxwell
APTIM
BC
+2 more
Brett Caron
APTIM
A1. Innovative Treatment Technologies for PFAS In Situ (Platforms)
Platform
Attachment
A1.: Innovative Treatment Technologies for PFAS In Situ (Platforms)
2025 Bioremediation Symposium
(Group 1, Poster Board #63) Mechanisms Controlling PFAS Leaching at AFFF-Impacted Sites
CS
Charles Schaefer
CDM Smith
CP
Conrad Pritchard
Colorado School of Mines
SH
Shilai Hao
Colorado School of Mines
CZ
+3 more
Chuhui Zhang
Colorado School of Mines
C3. Emerging Contaminants: Detection, Degradation, Fate and Transport (Posters)
Poster
C3.: Emerging Contaminants: Detection, Degradation, Fate and Transport (Posters)
2025 Bioremediation Symposium
Long-Term PFAS Rebound in the Vadose Zone following In Situ Flushing
CS
Charles Schaefer
CDM Smith
SH
Shilai Hao
Colorado School of Mines
CP
Conrad Pritchard
Colorado School of Mines
CZ
+3 more
Chuhui Zhang
Colorado School of Mines
C2. PFAS Fate and Transport Properties (Platforms)
Platform
Attachment
C2.: PFAS Fate and Transport Properties (Platforms)
14th International Conference on Remediation of Chlorinated and Recalcitrant Compounds