Acetate enhances the specific consumption rate of toluene under denitrifying conditions

Arch Environ Contam Toxicol. 2009 Nov;57(4):679-87. doi: 10.1007/s00244-009-9321-z. Epub 2009 Apr 22.

Abstract

Toluene is usually present in the environment as a contaminant along with other carbon sources which may influence its removal. In this work we studied the effect of a readily consumable carbon source such as acetate on toluene mineralization under denitrifying conditions. Continuous and batch cultures with stabilized denitrifying sludge were carried out. An upflow anaerobic sludge blanket reactor (UASB) was fed with several ratios of acetate-C/toluene-C loading rates (mg C/L-day: 100/0, 75/25, 50/50, and 0/100). Batch assays with different acetate-C/toluene-C ratios (10/70, 30/50, 50/30, and 65/20 mg C/L) were also done. As the acetate loading rate decreased in the culture, the carbon and nitrate consumption efficiency decreased by 40% and 34%, respectively. HCO(3) (-) and N(2) yields also decreased by 43%. Analysis of the denitrifying community using the denaturing gradient gel electrophoresis technique indicated that there was no clear relationship between its population profile and the metabolic pattern. In batch assays, when the acetate concentration was higher than that of toluene (65 mg acetate-C/L vs 20 mg toluene-C/L), the specific consumption rate of toluene (q(T)) was two times higher than in assays with 20 mg toluene-C/L as the sole electron source (0.006 mg C/mg volatile suspended solids-day). It is proposed that acetate can act by enhancing the growth of microbial populations and as a biochemical enhancer. The results show that acetate addition can be useful to improve the consumption rate of toluene in contaminated water.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Acetates / chemistry*
  • Aerobiosis
  • Anaerobiosis
  • DNA, Bacterial / analysis
  • Nitrates / analysis*
  • Oxidation-Reduction
  • Sewage* / chemistry
  • Sewage* / microbiology
  • Toluene / analysis*
  • Water Pollutants, Chemical / analysis*
  • Water Purification / methods*

Substances

  • Acetates
  • DNA, Bacterial
  • Nitrates
  • Sewage
  • Water Pollutants, Chemical
  • Toluene