Published 1995 | Version v1
Book

Effectiveness of bioremediation in reducing toxicity in oiled intertidal sediments

  • 1. Fisheries and Oceans Canada, Mont-Joli, Quebec (Canada). Maurice Lamontagne Inst.
  • 2. INRS-Oceanologie, Rimovski, Quebec (Canada)

Description

A 123-day field study was conducted with in situ enclosures to compare the effectiveness of bioremediation strategies based in inorganic and organic fertilizer additions to accelerate the biodegradation rates and reduce the toxicity of Venture trademark condensate stranded within sand-beach sediments. Comparison of the two fertilizer formulations with identical nitrogen and phosphorus concentrations showed that the organic fertilizer stimulated bacterial productivity within the oiled sediments to the greatest extent. However, detailed chemical analysis indicated that inorganic fertilizer additions were the most effective in enhancing condensate biodegradation rates. The Microtox reg-sign Solid-Phase Test (SPT) bioassay was determined to be sensitive to Venture Condensate in laboratory tests. Subsequent application of this procedure to oiled sediment in the field showed a reduction in sediment toxicity over time. However, the Microtox reg-sign bioassay procedure did not identify significant reductions in sediment toxicity following bioremediation treatment. An observed increase in toxicity following periodic additions of the organic fertilizer was attributed to rapid biodegradation rates of the fertilizer, which resulted in the production of toxic metabolic products

Additional details

Publishing Information

Publisher
Battelle Press.
Imprint Place
Columbus, OH (United States)
ISBN
1-57477-009-8
Imprint Title
Microbial processes for bioremediation
Imprint Pagination
371 p.
Series
Bioremediation, Volume 3(8).
Journal Page Range
p. 117-127.

Conference

Title
3. international in situ and on-site bioreclamation symposium.
Dates
24-27 Apr 1995.
Place
San Diego, CA (United States).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
28059183
Subject category
S02: PETROLEUM;
Resource subtype / Literary indicator
Conference
Descriptors DEI
BIODEGRADATION; FERTILIZERS; FIELD TESTS; HYDROCARBONS; OIL SPILLS; REMEDIAL ACTION; TECHNOLOGY ASSESSMENT; TOXICITY; WATER POLLUTION
Descriptors DEC
ACCIDENTS; CHEMICAL REACTIONS; DECOMPOSITION; ORGANIC COMPOUNDS; POLLUTION

Optional Information