3,4-dimethylphenol

 

Topic mentions per year

Topic mentions per year

1977-2017
01219772017

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2006
2006
The design of a new tyrosinase biosensor with improved stability and sensitivity is reported. The biosensor design is based on… (More)
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2003
2003
Denitrification is a feasible alternative for the treatment of phenolic bearing-wastewaters. The aim of this study was to… (More)
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2002
2002
The biodegradation of 3,4, 2,4, 2,3, 2,6 and 3,5-dimethylphenol in combination with phenol and p-cresol by axenic and mixed… (More)
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1996
1996
In order to study the toluene and o-xylene catabolic genes of Pseudomonas stutzeri OX1, a genomic library was constructed. A 28… (More)
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1995
1995
2,3-, 2,4-, 2,5-, 3,4-, and 3,5-dimethylphenols were cometabolized by 2,4-dichlorophenoxyacetate-grown Alcaligenes eutrophus JMP… (More)
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1994
1994
Plasmid pRO1957, which contains a 26.5-kb fragment from the chromosome of Pseudomonas pickettii PKO1, allows P. aeruginosa PAO1… (More)
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Highly Cited
1992
Highly Cited
1992
The meta-cleavage pathway for catechol is one of the major routes for the microbial degradation of aromatic compounds… (More)
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1992
1992
The phenol-degrading strain Pseudomonas putida EKII was isolated from a soil enrichment culture and utilized phenol up to 10.6 mM… (More)
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1989
1989
Pseudomonas strain CF600 is able to utilize phenol and 3,4-dimethylphenol as sole carbon and energy source. We demonstrate that… (More)
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1987
1987
A Pseudomonas stutzeri strain capable of growing on o-xylene was isolated from enrichment cultures. The organism grew on 2,3- and… (More)
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