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Environ Toxicol Chem


Title:Volatile organic sulfur compounds in anaerobic sludge and sediments: biodegradation and toxicity
Author(s):van Leerdam RC; de Bok FA; Lomans BP; Stams AJ; Lens PN; Janssen AJ;
Address:"Wageningen University, Subdepartment of Environmental Technology, Bomenweg 2, 6703 HD Wageningen, The Netherlands. robin.vanleerdam@wur.nl"
Journal Title:Environ Toxicol Chem
Year:2006
Volume:25
Issue:12
Page Number:3101 - 3109
DOI: 10.1897/06-106r.1
ISSN/ISBN:0730-7268 (Print) 0730-7268 (Linking)
Abstract:"A variety of environmental samples was screened for anaerobic degradation of methanethiol, ethanethiol, propanethiol, dimethylsulfide, and dimethyldisulfide. All sludge and sediment samples degraded methanethiol, dimethylsulfide, and dimethyldisulfide anaerobically. In contrast, ethanethiol and propanethiol were not degraded by the samples investigated under any of the conditions tested. Methanethiol, dimethylsulfide, and dimethyldisulfide were mainly degraded by methanogenic archaea. In the presence of sulfate and the methanogenic inhibitor bromoethane sulfonate, degradation of these compounds coupled to sulfate reduction occurred as well, but at much lower rates. Besides their biodegradability, also the toxicity of methanethiol, ethanethiol, and propanethiol to methanogenesis with methanol, acetate, and H2/CO2 as the substrates was assessed. The 50% inhibition concentration of methanethiol on the methane production from these substrates ranged between 7 and 10 mM. The 50% inhibition concentration values of ethanethiol and propanethiol for the degradation of methanol and acetate were between 6 and 8 mM, whereas hydrogen consumers were less affected by ethanethiol and propanethiol, as indicated by their higher 50% inhibition concentration (14 mM). Sulfide inhibited methanethiol degradation already at relatively low concentrations: methanethiol degradation was almost completely inhibited at an initial sulfide concentration of 8 mM. These results define the operational limits of anaerobic technologies for the treatment of volatile organic sulfur compounds in sulfide-containing wastewater streams"
Keywords:"Anaerobiosis Biodegradation, Environmental Biomass Organic Chemicals/*metabolism/*toxicity Sewage/*chemistry Sulfates/metabolism Sulfhydryl Compounds/metabolism/toxicity Sulfides/metabolism Volatilization;"
Notes:"Medlinevan Leerdam, Robin C de Bok, Frank A M Lomans, Bart P Stams, Alfons J M Lens, Piet N L Janssen, Albert J H eng Research Support, Non-U.S. Gov't 2007/01/16 Environ Toxicol Chem. 2006 Dec; 25(12):3101-9. doi: 10.1897/06-106r.1"

 
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