Effect of Substrate Concentration and Organic and Inorganic Compounds on the Occurrence and Rate of Mineralization and Cometabolism
- 1 June 1984
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 47 (6) , 1195-1200
- https://doi.org/10.1128/aem.47.6.1195-1200.1984
Abstract
Isopropyl N -phenylcarbamate (IPC) at 400 pg and 1 μg/ml was mineralized in samples of sewage, but only the lower concentration was mineralized in lake water samples in a 50-day period. IPC at 1 μg/ml disappeared from lake water, but it was converted to organic products. Mineralization of IPC at 400 pg/ml in lake water was enhanced by additions of inorganic nutrients or a mixture of nonchlorinated water pollutants but not by yeast extract or mixtures containing aromatic compounds or excretions of primary producers. The mineralization of 200 pg of 2,4-dichlorophenoxyacetate per ml of lake water was not affected by additions of low levels of yeast extract or compounds excreted by primary producers but was enhanced by low concentrations of mixtures of water pollutants. It is suggested that some chemicals that are found to be converted only to organic products, presumably by cometabolism, in tests using the concentrations commonly employed in laboratory evaluations may be mineralized at the lower concentrations prevailing in natural waters.This publication has 11 references indexed in Scilit:
- Rates of Mineralization of Trace Concentrations of Aromatic Compounds in Lake Water and Sewage SamplesApplied and Environmental Microbiology, 1982
- Kinetics and Extent of Mineralization of Organic Chemicals at Trace Levels in Freshwater and SewageApplied and Environmental Microbiology, 1982
- Empirical test of the association between gross contamination of wells with toxic substances and surrounding land useEnvironmental Science & Technology, 1982
- Biodegradation of Chemicals of Environmental ConcernScience, 1981
- Degradation of the herbicide 2,4-D in river water—II. The role of suspended sediment, nutrients and water temperatureWater Research, 1980
- Effect of Concentration on Decomposition of Some 14C‐labeled Phenolic Compounds, Benzoic Acid, Glucose, Cellulose, Wheat Straw, and Chlorella Protein in SoilSoil Science Society of America Journal, 1979
- Effect of Concentration of Organic Chemicals on Their Biodegradation by Natural Microbial CommunitiesApplied and Environmental Microbiology, 1979
- Degradation of Gamma-BHC in Flooded Soils Enriched with PeptoneAgricultural and Biological Chemistry, 1978
- Water Pollution: Organic Compounds in the Charles River, BostonScience, 1972
- PERSISTENCE OF ISOPROPYL N-PHENYL CARBAMATE IN SOILSSoil Science, 1948