An effective method for corncob saccharification was investigated over a magnetic carbon-based solid acid (MMCSA) catalyst in the aqueous phase. MMCSA was synthesized through a simple and inexpensive impregnation-carbonization-sulfonation process. Under the optimal reaction conditions (150 °C, 2 h, 0.5 g corncob, 0.5 g catalyst and 50 ml deionized water), 74.9% of xylose yield was directly obtained from corncob, with 91.7% cellulose retention in the residue. After reaction, the MMCSA was easily separated from the residue by an external magnet and reused 4 times showing high stability and catalytic activity. The enzymatic digestibility of the pretreated residue reached 95.2%, with a total sugar yield of 90.4%. The morphologic and structural ...
Abstract This study evaluated two hydrolysis strategies that involve a two-step and a one-pot proces...
A facile approach to a corncob biorefinery, focusing on both carbohydrate valorization and lignin st...
A stable solid acid catalyst, SCPR140-1, was synthesized from chloromethyl polystyrene resin (CPR) a...
An effective method for corncob saccharification was investigated over a magnetic carbon-based solid...
An effective method for corncob saccharification was investigated over a magnetic carbon-based solid...
The efficient conversion of hemicellulose and cellulose into reducing sugars remains as one major ch...
A novel magnetic carbon-based solid acid catalyst (C350-Cl) was synthesized through a simple impregn...
In this paper, we disclose a novel saccharification technology for lignocellulosic biomass. A new ca...
Saccharification of lignocellulose is a necessary procedure for deconstructing the complex structure...
Solid acid catalysts show good catalytic depolymerization behavior for lignocellulose. A stable core...
Lignocellulosic biomass is a very important renewable resource that can be used to produce biofuels ...
Lignocellulose is a widely used renewable energy source on the Earth that is rich in carbon skeleton...
Saccharification of sugarcane bagasse is one of the most important process for its conversion to hig...
The drive towards sustainable chemistry has inspired the development of active solid acids as cataly...
A facile approach to a corncob biorefinery, focusing on both carbohydrate valorization and lignin st...
Abstract This study evaluated two hydrolysis strategies that involve a two-step and a one-pot proces...
A facile approach to a corncob biorefinery, focusing on both carbohydrate valorization and lignin st...
A stable solid acid catalyst, SCPR140-1, was synthesized from chloromethyl polystyrene resin (CPR) a...
An effective method for corncob saccharification was investigated over a magnetic carbon-based solid...
An effective method for corncob saccharification was investigated over a magnetic carbon-based solid...
The efficient conversion of hemicellulose and cellulose into reducing sugars remains as one major ch...
A novel magnetic carbon-based solid acid catalyst (C350-Cl) was synthesized through a simple impregn...
In this paper, we disclose a novel saccharification technology for lignocellulosic biomass. A new ca...
Saccharification of lignocellulose is a necessary procedure for deconstructing the complex structure...
Solid acid catalysts show good catalytic depolymerization behavior for lignocellulose. A stable core...
Lignocellulosic biomass is a very important renewable resource that can be used to produce biofuels ...
Lignocellulose is a widely used renewable energy source on the Earth that is rich in carbon skeleton...
Saccharification of sugarcane bagasse is one of the most important process for its conversion to hig...
The drive towards sustainable chemistry has inspired the development of active solid acids as cataly...
A facile approach to a corncob biorefinery, focusing on both carbohydrate valorization and lignin st...
Abstract This study evaluated two hydrolysis strategies that involve a two-step and a one-pot proces...
A facile approach to a corncob biorefinery, focusing on both carbohydrate valorization and lignin st...
A stable solid acid catalyst, SCPR140-1, was synthesized from chloromethyl polystyrene resin (CPR) a...