48 results on '"Clarke, Ann N."'
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2. Saturated Zone Remediation of VOCs Through Sparging
3. Thermally Enhanced Vapor Stripping
4. Soil Surfactant Flushing/Washing
5. Quantitative ELISA of polychlorinated biphenyls in an oily soil matrix using supercritical fluid extraction
6. Groundwater Cleanup by In-Situ Sparging. XIV. An Air Channeling Model for Biosparging with a Horizontal Pipe
7. Groundwater Cleanup by In-Situ Sparging. XIII. Random Air Channels for Sparging of Dissolved and Nonaqueous Phase Volatiles
8. Groundwater Cleanup by In-Situ Sparging. X. Air Channeling Model for Biosparging of Nonaqueous Phase Liquid
9. Groundwater Cleanup by In-Situ Sparging. IX. Air Channeling Model for Nonaqueous Phase Liquid Removal
10. A Review of 2,3,7,8-Tetra Chlorinated Dibenzodioxins and Toxicity Equivalencies in Fish in the United States and International Waterways
11. Removal of Semivolatiles from Soils by Steam Stripping. III. Steam Dynamics and the Stripping of Contaminants in a Column
12. Soil Cleanup by In-Situ Aeration. XXI. Effects of Desorption Rates and Equilibria on Remediation Rates
13. Removal of Semivolatiles from Soils by Steam Stripping. II. Effects of Diffusion Kinetics
14. Soil Clean-Up by Surfactant Washing. V. Supplementary Laboratory Testing
15. Soil Clean-Up by Surfactant Washing. IV. Modification and Testing of Mathematical Models
16. Soil Clean-Up by Surfactant Washing. III. Design and Evaluation of the Integrated Pilot-Scale Surfactant Recycle System
17. Soil Clean-Up by Surfactant Washing. II. Design and Evaluation of the Components of the Pilot-Scale Surfactant Recycle System
18. Soil Clean Up byin-situAeration. XII. Effect of Departures from Darcy's Law on Soil Vapor Extraction
19. Removal of Semivolatiles from Soils by Steam Stripping. I. A Local Equilibrium Model
20. Groundwater Cleanup by in-situ Sparging. I. Mathematical Modeling
21. Soil Clean Up byin-situSurfactant Flushing. IV. A Two-Component Mathematical Model
22. Soil Clean-Up by Surfactant Washing. I. Laboratory Results and Mathematical Modeling
23. Results of an investigation of an old manufacturing facility for levels of polychlorinated dibenzofurans and polychlorinated dibenzodioxins
24. Inter- and intra-laboratory comparison of protocols for the congener-specific analysis of polychlorinated dibenzofurans and polychlorinated dibenzodioxins in residues and sediments
25. Mathematical Modeling of In Situ Vapor Stripping of Contaminated Soils
26. Preparation of Hair for Lead Analysis.
27. The Adsorbing Colloid Flotation of Fluoride Ion by Aluminum Hydroxide in Aqueous Media.
28. Electrical Aspects of Foam Flotation: The Streaming Potential.
29. Separation by Flotation.
30. Soil Clean Up by in-situ Aeration. XII. Effect of Departures from Darcy's Law on Soil Vapor Extraction.
31. Soil Clean Up by in-situ Surfactant Flushing. IV. A Two-Component Mathematical Model.
32. Soil Clean Up by in-situ Aeration. III Passive Vent Wells, Recontamination, and Removal of Underlying Nonaqueous Phase Liquid.
33. Soil Clean Up by in-situ Aeration. II. Effects of Impermeable Caps, Soil Permeability, and Evaporative Cooling.
34. Soil Clean Up by in-situ Aeration. I. Mathematical Modeling.
35. Theory of Adsorption by Activated Carbon. I. Microscopic Aspects.
36. Electrical Aspects of Adsorbing Colloid Flotation. X. Pretreatments, Multiple Removals, Interferences, and Specific Adsorption.
37. Theory of Clarifier Operation. IV. Orthokinetic Flocculation in Concentrated Slurries.
38. The Removal of Metallo-Cyanide Complexes by Foam Flotation.
39. Theory of Clarifier Operation. III. Sludge Blanket and Upflow Reactor-Clarifiers.
40. Electrical Aspects of Adsorbing Colloid Flotation. VIII. Specific Adsorption of Ions by Flocs.
41. Lead levels in fresh water mollusk shells.
42. Removal of semivolatiles from soils by steam stripping. III. Steam dynamics and the stripping of contaminants in a column
43. Separation by Flotation
44. Personnel training — hazardous materials and wastes
45. Soil Clean Up byin-situAeration. I. Mathematical Modeling
46. A Static Monitor for Lead in Natural and Waste Waters
47. Reply
48. A new twist on Darcy's Law
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