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Applied Biochemistry and Biotechnology|January 1, 1993
Reduction of nitric oxide by denitrifying bacteriaR Shanmugasundram, C M Lee, K L SubletteBiotechnology and Bioengineering|March 5, 1990
Microbial control of the production of hydrogen sulfide by sulfate-reducing bacteriaA D Montgomery, M J McLnerney, K L SubletteApplied Biochemistry and Biotechnology|June 26, 2008
Microbial oxidation of mixtures of methylmercaptan and hydrogen sulfideA Subramaniyan, R Kolhatkar, K L Sublette, et al.Biotechnology Progress|June 2, 2001
Characterization of a novel biocatalyst system for sulfide oxidationC McComas, K L Sublette, G Jenneman, et al.Applied Biochemistry and Biotechnology|June 13, 2000
Biotreatment of refinery spent-sulfidic caustic using an enrichment culture immobilized in a novel support matrixJ A Conner, R R Beitle, K Duncan, et al.Applied Biochemistry and Biotechnology|April 1, 1997
The potential for intrinsic bioremediation of BTEX hydrocarbons in soil/ground water contaminated with gas condensateA P Borole, K L Sublette, K T Raterman, et al.Environmental Science & Technology|August 2, 2005
In situ assessment of biodegradation potential using biotraps amended with 13C-labeled benzene or tolueneR Geyer, A D Peacock, A Miltner, et al.Biotechnology Progress|August 4, 2001
Analysis of a microbial community oxidizing inorganic sulfide and mercaptansK E Duncan, K L Sublette, P A Rider, et al.Applied Biochemistry and Biotechnology|April 1, 1997
Intrinsic bioremediation of gas condensate hydrocarbons : results of over two years of ground water and soil core analysis and monitoringK L Sublette, R V Kolhatkar, A Borole, et al.Microbial Ecology|March 3, 2004
Utilization of microbial biofilms as monitors of bioremediationA D Peacock, Y J Chang, J D Istok, et al.Pageof 3