DiStefano et al., Hydrogen as an Electron Donor for Dechlorination of Tetrachloroethene by an Anaerobic Mixed Culture, 11/92, Applied and Environmental Microbiology, vol. 58, No. 11, pp. 3622-3629. |
Rafler, et al., Novel Biodegradable Polyesters, Abstract, American Chemical Society (1992). |
Fennell, et al., Comparative Studies of Hydrogen Donors for Stimulation of Tetrachloroethene Dechlorination, 1997, International In Situ and On-Site Bioremediation Symposium—New Orleans, LA, p. 11. |
Becvar, et al., In Situ Dechlorination of Solvents in Saturated Soils, 1997, International In Situ and On-Site Bioremediation Symposium—New Orleans, LA, pp. 39-44. |
Brennan, et al., Anaerobic Microbial Transformation of Trichloroethylene and Methylene Chloride in Pinellas Soil and Groundwater, 1997, International In Situ and On-Site Bioremediation Symposium—New Orleans, LA, p. 45. |
Dybas, et al., Slow-Release Substrates for Transformation of Carbon Tetrachloride by Pseudomonas Strain KC, 1997, International In Situ and On-Site Bioremediation Symposium—New Orleans, LA, p. 59. |
Acree, et al. Site Characterization Methods for the Design of In-Situ Electron Donor Delivery System, 1997, International In Situ and On-Site Bioremediation Symposium—New Orleans, LA, pp. 261-266. |
Gibson, et al., Stimulation of Reductive Dechlorination of Tetrachloroethene in Anerobic Aquifer Microcosms by Addtion of Short-Chain Organic Acids or Alcohols, 04/92, Applied and Environmental Microbiology, vol. 58, No. 4, pp. 1392 and 1393. |
Smatlak, et al., Comparative Kinetics of Hydrogen Utilization for Reductive Dechlorination of Tetrachloroethene and Methanogenesis in an Anerobic Enrichment Culture. 1996, Environmental Sciences § Technology, 30, pp. 2850-2858. |
Fennell, et al., Comparison of Butyric Acid, Ethanol, Lactic Acid, and Propionic Acid as Hydrogen Donors for the Reductive Dechlorination of Tetrachloroethene, 1997, Environmental Science § Technology, 31, pp. 918-926. |
DiStefano, et al., Reductive Dechlorination of High Concentrations of Tetrachloroethene to Ethene by an Anaerobic Enrichment Culture in the Absence of Methanogenesis, 08/91, Applied and Environmental Microbiology, vol. 57, No. 8, pp. 2287-2292. |
Biodegradable Poly (Lactic Acid) Compositions with Improved Physical Properties, May 7, 1995, Chemical Abstracts, vol. 126, No. 11, p. 637, No. 144978t. |
Shin, et al., Biodegradability of Degradable Plastics Exposed to Anaerobic Digested Sludge and Simulated Landfill Conditions, 1997, Chemical Abstracts, vol. 126, No. 22, p. 1009, No. 297116k. |
Kakizawa, Yasutoshi, Process for the Preparation of Lactic Acid-Based Polyester Compositions, Apr. 2, 1997, Chemical Abstracts, vol. 126, No. 23, p. 563, Nl. 306163c. |
Morse, et al., A Treatability Test for Evaluating the Potential Applicability of the Reductive Anaerobic Biological In Situ Treatment Technology (RABITT) to Remediate Chlorethenes, Aug. 25, 1997, Department of Defense-Technical Protocal (Draft). |
Stover, Michael Augustine, Abstract/Thesis, 1993, No. S8892, Cornell University. |
Smatlak, Concordia Ruth, Abstract/Thesis, 1995, No. S6362, Cornell University. |
Carney, Anna P., Abstact-Ethylene as Inhibitor of Methanogenesis/Thesis, 1995, No. C289, Cornell University. |
Freedman, et al., Biological Reductive Dechlorination of Tetrachloroethylene and Trichloroethylene to Ehtylene under Methanogenic Conditions, 09/89, Applied and Environmental Microbiology, vol. 55, No. 9, pp. 2144-2151. |
Fathepure, et al., Complete Degradation of Polychlorinated Hydrocarbons by a Two-Stage Biofilm Reactor, 12/91, Applied and Environmental Microbiology, vol. 57, No. 12, pp. 3418-3422. |
Fathepure, et al., Anaerobic Bacteria the Dechlorinate Perchloroethene, 11/87, Applied and Environmental Microbiology, vol. 53, No. 11, pp. 2671-2674. |
Ballapragada, et al., Effect of Hydrogen on Reductive Dechlorination of Chlorinated Ethenes, 1997, Environmental Science & Technology, vol. 31, No. 6, pp. 1728-1734. |
Carr, et al., Enrichment of High-Rate PCE Dechlorination and Comparative Study of Lactate, Methanol, and Hydrogen as Electron Donors to Sustain Acitvity, 1998, Environmental Science & Technology, vol. 32, No. 12, pp. 1817-1824. |
Yang, et al., Competition for Hydrogen within a Chlorinated Solvent Dehalogenating Anaerobic Mixed Culture, 1998, Enviornmental Science & Technology, vol. 32, No. 22, pp. 3591-3597. |