Lignocellulosic biomass is the only renewable source of carbon for the chemical industry. Alkylmethoxyphenols can be obtained in good yield from woody biomass by reductive fractionation, but these compounds are of limited value for large-scale applications. We present a method to convert lignocellulose-derived alkylmethoxyphenols to phenol that can be easily integrated in the petrochemical industry. The underlying chemistry combines demethoxylation catalyzed by a titania-supported gold nanoparticle catalyst and transalkylation of alkyl groups to a low-value benzene-rich stream promoted by HZSM-5 zeolite. In this way, phenol can be obtained in good yield, and benzene can be upgraded to more valuable propylbenzene, cumene, and toluene. We dem...
A novel hydrogen-free approach is developed to effectively convert phenolic compounds into aromatics...
A simple and efficient hydrodeoxygenation strategy is described to selectively generate and separate...
The situation around the globe is changing dramatically. There are many factors \ud polit...
Lignocellulosic biomass is the only renewable source of carbon for the chemical industry. Alkylmetho...
Obtaining chemical building blocks from biomass is attractive for meeting sustainability targets. He...
Lignin valorization to produce high-value chemicals selectively is an enormous challenge in biorefin...
The invention relates to a demethoxylation process for demethoxylating alkylmethoxyphenols using an ...
The heavy dependency on fossil oil of our society and the greenhouse gases emission linked to the us...
Lignin-derived monomers with methoxy substituents are abundantly present in bioliquids derived from ...
© The Royal Society of Chemistry 2016. Selective conversion of alkylphenols to phenol and olefins is...
Transformation of lignin into high-value chemicals is hampered by the complexity of monomers obtaine...
A catalytic route is developed to synthesize bio-renewable catechol from softwood-derived lignin-fir...
We present and develop alternative catalysts for biomass conversion and specifically lignin conversi...
A novel hydrogen-free approach is developed to effectively convert phenolic compounds into aromatics...
A simple and efficient hydrodeoxygenation strategy is described to selectively generate and separate...
The situation around the globe is changing dramatically. There are many factors \ud polit...
Lignocellulosic biomass is the only renewable source of carbon for the chemical industry. Alkylmetho...
Obtaining chemical building blocks from biomass is attractive for meeting sustainability targets. He...
Lignin valorization to produce high-value chemicals selectively is an enormous challenge in biorefin...
The invention relates to a demethoxylation process for demethoxylating alkylmethoxyphenols using an ...
The heavy dependency on fossil oil of our society and the greenhouse gases emission linked to the us...
Lignin-derived monomers with methoxy substituents are abundantly present in bioliquids derived from ...
© The Royal Society of Chemistry 2016. Selective conversion of alkylphenols to phenol and olefins is...
Transformation of lignin into high-value chemicals is hampered by the complexity of monomers obtaine...
A catalytic route is developed to synthesize bio-renewable catechol from softwood-derived lignin-fir...
We present and develop alternative catalysts for biomass conversion and specifically lignin conversi...
A novel hydrogen-free approach is developed to effectively convert phenolic compounds into aromatics...
A simple and efficient hydrodeoxygenation strategy is described to selectively generate and separate...
The situation around the globe is changing dramatically. There are many factors \ud polit...