Fundamental insights into the macromolecular architecture of plant cell walls will elucidate new structure–property relationships and facilitate optimization of catalytic processes that produce fuels and chemicals from biomass. Here we introduce computational methodology to extract nanoscale geometry of cellulose microfibrils within thermochemically treated biomass directly from electron tomographic data sets. We quantitatively compare the cell wall nanostructure in corn stover following two leading pretreatment strategies: dilute acid with iron sulfate co-catalyst and ammonia fiber expansion (AFEX). Computational analysis of the tomographic data is used to extract mathematical descriptions for longitudinal axes of cellulose microfibrils fr...
Lignocellulosic resources have been recognized to be the most promising sustainable and renewable so...
The cellulose nanofibril aggregate is a fundamental hierarchical structure in many man-made cellulos...
Abstract Background To date, great strides have been made in elucidating the role of thermochemical ...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Lignocellulose biomass has a tremendous potential as renewable biomaterials for fostering the “bio-b...
Deconstruction of lignocellulosic plant cell walls to fermentable sugars by thermochemical and/or bi...
Abstract Determining the shape of plant cellulose microfibrils is critical for understanding plant c...
Cost-effective production of lignocellulosic biofuel requires efficient breakdown of cell walls pres...
International audienceEthanol production using extracted cellulose from plant cell walls (PCW) is a ...
Cost-effective production of lignocellulosic biofuel requires efficient breakdown of cell walls pres...
Abstract Background Enzymatic hydrolysis of lignocellulosic biomass (mainly plant cell walls) is a c...
The woody secondary cell walls of plants are the largest repository of renewable carbon biopolymers ...
A combination of molecular modelling and atomic force microscopy (AFM) techniques was used to study ...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Lignocellulosic resources have been recognized to be the most promising sustainable and renewable so...
The cellulose nanofibril aggregate is a fundamental hierarchical structure in many man-made cellulos...
Abstract Background To date, great strides have been made in elucidating the role of thermochemical ...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
The ultrastructural organization of cellulose elementary fibrils (EFs) in wood cell wall is consider...
Lignocellulose biomass has a tremendous potential as renewable biomaterials for fostering the “bio-b...
Deconstruction of lignocellulosic plant cell walls to fermentable sugars by thermochemical and/or bi...
Abstract Determining the shape of plant cellulose microfibrils is critical for understanding plant c...
Cost-effective production of lignocellulosic biofuel requires efficient breakdown of cell walls pres...
International audienceEthanol production using extracted cellulose from plant cell walls (PCW) is a ...
Cost-effective production of lignocellulosic biofuel requires efficient breakdown of cell walls pres...
Abstract Background Enzymatic hydrolysis of lignocellulosic biomass (mainly plant cell walls) is a c...
The woody secondary cell walls of plants are the largest repository of renewable carbon biopolymers ...
A combination of molecular modelling and atomic force microscopy (AFM) techniques was used to study ...
Abstract Understanding plant cell wall cross-linking chemistry and polymeric architecture is key to ...
Lignocellulosic resources have been recognized to be the most promising sustainable and renewable so...
The cellulose nanofibril aggregate is a fundamental hierarchical structure in many man-made cellulos...
Abstract Background To date, great strides have been made in elucidating the role of thermochemical ...