Published 1998 | Version v1
Journal article

Slurry-phase bioremediation of creosote and petroleum-contaminated soils

  • 1. University of Alberta (Canada). Dept. of REnewable Resources
  • 2. University of Alberta (Canada). Dept. of Chemical and Materials Engineering
  • 3. University of Alberta (Canada). Dept. of Biological Sciences

Description

The objective of this work was to study the extent and pattern of contaminant biodegradation during slurry-phase bioremediation of four industrially-contaminated soils (< 3% contamination) to obtain further insight into the factors which may control biodegradation. Two soils (sand and silty clay) were contaminated with creosote compounds, and two soils (loam and clay) were contaminated with petroleum compounds. Degradation of TEO over 10 weeks was most extensive in the clay soil (43%) and least in the sand soil (25%). The rate of TEO biodegradation slowed, or plateaued, in the clay soil after 2-4 weeks. Degradation of total GC-elutable compounds was 1.4- (sand) to 2.7-fold (loam) greater than TEO degradation, and a plateauing of some GC-elutable component classes occurred in most soils within 10 weeks. Plateauing of contaminant concentrations in soils was attributed to bioavailability limitations due to strong partitioning into the residual contaminant matrix. In addition, microbial competence limited biodegradation in the sand soil. (author)

Additional details

Publishing Information

Journal Title
Environmental Technology
Journal Volume
19
Journal Issue
7
Journal Page Range
p. 683-696
ISSN
0959-3330
CODEN
ENVTEV

INIS

Country of Publication
United Kingdom
Country of Input or Organization
United Kingdom
INIS RN
30018281
Subject category
S02: PETROLEUM;
Descriptors DEI
BIODEGRADATION; BIOREACTORS; CONTAMINATION; CREOSOTE; LAND RECLAMATION; PETROLEUM; POLYCYCLIC AROMATIC HYDROCARBONS; SOILS
Descriptors DEC
AROMATICS; CHEMICAL REACTIONS; DECOMPOSITION; ENERGY SOURCES; FOSSIL FUELS; FUELS; HYDROCARBONS; ORGANIC COMPOUNDS