In order to better understand bacterial depolymerization of lignin, a new analytical approach was proposed using Pseudomonas putida KT2440 as delignifying bacterium and Escherichia coli as non-delignifying control. Two different types of lignins, technical Kraft lignin and synthetic dehydrogenopolymer (DHP), were submitted to a bioconversion kinetic study over 7 days. The concomitant analysis of the supernatant acid-precipitable lignin fraction and water-soluble extractives by high-performance size-exclusion chromatography (HPSEC) and gas chromatography – mass spectrometry (GC–MS) highlighted the specific action of P. putida towards these substrates, with the transitory formation of phenolic metabolites (dihydroferulic acid for Kraft lignin...
In this study, we have investigated the possibility of membrane filtration as a means for obtaining ...
Lignin is a highly complex phenolic matrix that acts as a binder in plants conferring them structura...
In Nature, powerful oxidative enzymes secreted by white rot fungi and some bacteria catalyze lignin ...
37 p.-6 fig.-2 tab.-1 graph. abst.In order to better understand bacterial depolymerization of lignin...
Abstract Background Lignin is a potential feedstock for microbial conversion into various chemicals....
BackgroundLignin is a potential feedstock for microbial conversion into various chemicals. However, ...
Abstract Lignin is the most abundant aromatic substrate on Earth and its valorization technologies a...
The most prominent aromatic feedstock on Earth is lignin, however, lignin valorization is still an u...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Abstract Background To expand on the range of products which can be obtained from lignocellulosic bi...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Lignin valorization offers significant potential to enhance the economic viability of lignocellulosi...
Lignin valorization offers significant potential to enhance the economic viability of lignocellulosi...
In this study, we have investigated the possibility of membrane filtration as a means for obtaining ...
Lignin is a highly complex phenolic matrix that acts as a binder in plants conferring them structura...
In Nature, powerful oxidative enzymes secreted by white rot fungi and some bacteria catalyze lignin ...
37 p.-6 fig.-2 tab.-1 graph. abst.In order to better understand bacterial depolymerization of lignin...
Abstract Background Lignin is a potential feedstock for microbial conversion into various chemicals....
BackgroundLignin is a potential feedstock for microbial conversion into various chemicals. However, ...
Abstract Lignin is the most abundant aromatic substrate on Earth and its valorization technologies a...
The most prominent aromatic feedstock on Earth is lignin, however, lignin valorization is still an u...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Abstract Background To expand on the range of products which can be obtained from lignocellulosic bi...
Background - To expand on the range of products which can be obtained from lignocellulosic biomass, ...
Lignin valorization offers significant potential to enhance the economic viability of lignocellulosi...
Lignin valorization offers significant potential to enhance the economic viability of lignocellulosi...
In this study, we have investigated the possibility of membrane filtration as a means for obtaining ...
Lignin is a highly complex phenolic matrix that acts as a binder in plants conferring them structura...
In Nature, powerful oxidative enzymes secreted by white rot fungi and some bacteria catalyze lignin ...