Published 1995 | Version v1
Book

Nitrogen fate model for gas-phase ammonia-enhanced in situ bioventing

  • 1. Woodward-Clyde Consultants, Santa Ana, CA (United States)

Description

Subsurface bioremediation of contaminants is sometimes limited by the availability of nitrogen. Introduction of gaseous ammonia to the subsurface is a feasible and economical approach to enhance biodegradation in some environments. A gaseous nutrient source may be a practical option for sites where surface application of liquid nutrients is not possible, such as sites with shallow groundwater or sites with surface operations. A conceptual nitrogen fate model was developed to provide remediation scientists and engineers with some practical guidelines in the use of ammonia-enhanced bioventing. Ammonia supplied to the subsurface dissolves readily in soil moisture and sorbs strongly to soil particles. The ammonium ion is the preferred nutrient form of many microorganisms. Some of the ammonia will be converted to nitrate by ammonia-oxidizing organisms. Field monitoring data from an operating ammonia-enhanced bioventing remediation site for diesel fuel contamination are presented. Conservative additions of ammonia promoted appreciable increases in evolved carbon dioxide and rate of oxygen utilization. An overabundance of added ammonia promoted formation of methane from likely anaerobic hydrocarbon degradation in the presence of nitrate as the electron acceptor

Additional details

Publishing Information

Publisher
Battelle Press.
Imprint Place
Columbus, OH (United States)
ISBN
1-57477-003-9
Imprint Title
In situ aeration: Air sparging, bioventing, and related remediation process
Imprint Pagination
630 p.
Series
Bioremediation, Volume 3(2).
Journal Page Range
p. 351-359.

Conference

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

Optional Information

Secondary number(s)
CONF-950483--.