Published 2005 | Version v1
Miscellaneous

Dynamics and role of sphingomonas/mycobacterium populations during bio-remediation of weathered PAH-contaminated soils

  • 1. Flemish Institute for Technological Research-Vito, Mol (Belgium)
  • 2. ENVISAN, Aalst, (Belgium)
  • 3. Catholic University of Leuven-KUL, Leuven (Belgium)

Description

Polycyclic Aromatic Hydrocarbons (PAHs) are major soil pollutants in many industrialized countries. During the last decades, a diversity of PAH-degrading micro-organisms has been isolated, suggesting possibilities for bio-remediation. However, biodegradation of PAHs in contaminated soils is not always successful. The low bio-availability of the PAHs is the major problem, especially in weathered soils. In these soils a tightly sorbed PAH-fraction is present which is in general hardly accessible for microorganisms. In order to bio-remedy PAHs also in weathered soils, stimulation of bacteria which have special strategies to access sorbed organics may be a solution. Sphingomonas and Mycobacterium strains may represent such bacteria as (I) they are often isolated as PAH degraders, (II) they are ubiquitously present in PAH-contaminated soils, and (III) they display features which might promote bioavailability. Lab- and pilot-scale experiments were set up in order (A) to study the dynamics of indigenous Sphingomonas and Mycobacterium populations during bio-remediation, and (B) to evaluate their role in the biodegradation of the less bio-available PAH-fraction during treatment of an historic PAH polluted soil. The soil was treated under natural soil moisture conditions and slurry conditions. The experimental set-ups ranged from 2 g lab-scale test to pilot experiments in 1 ton bio-piles and dry solid reactors (50 kg 70% dry matter soil). Different additives were evaluated for stimulation of the Sphingomonas and Mycobacterium population as a strategy to improve bio-remediation of PAHs. The evolution of this microbial population was followed using culture-independent general and genus-specific PCR-based detection methods targeting the 16S rRNA genes of the eu-bacterial community, Mycobacterium or the Sphingomonas populations, respectively. During the different bio-remediation experiments that were conducted, the Mycobacterium population remained very stable, only minor changes were observed between the test conditions and in time. On the other hand, some additives and also time did lead to changes in the Sphingomonas population and the eu-bacterial population. Under natural soil moisture conditions a reduction of the PAH concentration up to 70% of the initial values was obtained within 10 weeks. Addition of carbon-containing additives initially decreased the PAH-degradation rate explicable by preferential substrate use. This negative effect was not observed anymore later on in the experiments. More sampling events are planned to evaluate the longer term effect of the additives. A reduction of the 'residual PAH-fraction' is targeted. Addition of nutrient had a negative affect on the degradation. Under soil slurry conditions similar trends were seen. (authors)

Availability note (English)

Available from: Forschungszentrum Karlsruhe GmbH, P.O. Box 3640, 76021 Karlsruhe (Germany)

Additional details

Publishing Information

Imprint Pagination
1 p.
Report number
INIS-FR--08-0901

Conference

Title
ConSoil 2005 - 9. international FZK / TNO conference on soil water systems
Dates
3-7 Oct 2005
Place
Bordeaux (France)

INIS

Country of Publication
France
Country of Input or Organization
France
INIS RN
39070111
Subject category
S02: PETROLEUM; S54: ENVIRONMENTAL SCIENCES;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
ADDITIVES; BIODEGRADATION; BIOLOGICAL AVAILABILITY; BIOREMEDIATION; GROWTH; LAND POLLUTION CONTROL; MYCOBACTERIUM; POLYCYCLIC AROMATIC HYDROCARBONS; SOILS; STIMULATION
Descriptors DEC
AROMATICS; BACTERIA; CHEMICAL REACTIONS; CONTROL; DECOMPOSITION; HYDROCARBONS; MICROORGANISMS; ORGANIC COMPOUNDS; POLLUTION CONTROL; REMEDIAL ACTION