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Journal ArticleDOI

Hydrolysis of Cellulose by Amorphous Carbon Bearing SO3H, COOH, and OH Groups

TLDR
The carbon catalyst can be readily separated from the saccharide solution after reaction for reuse in the reaction without loss of activity, and the catalytic performance of the carbon catalyst is attributed to the ability of the material to adsorb beta-1,4 glucan, which does not adsorb to other solid acids.
Abstract
The hydrolysis of cellulose into saccharides using a range of solid catalysts is investigated for potential application in the environmentally benign saccharification of cellulose. Crystalline pure cellulose is not hydrolyzed by conventional strong solid Bronsted acid catalysts such as niobic acid, H-mordenite, Nafion and Amberlyst-15, whereas amorphous carbon bearing SO 3H, COOH, and OH function as an efficient catalyst for the reaction. The apparent activation energy for the hydrolysis of cellulose into glucose using the carbon catalyst is estimated to be 110 kJ mol (-1), smaller than that for sulfuric acid under optimal conditions (170 kJ mol (-1)). The carbon catalyst can be readily separated from the saccharide solution after reaction for reuse in the reaction without loss of activity. The catalytic performance of the carbon catalyst is attributed to the ability of the material to adsorb beta-1,4 glucan, which does not adsorb to other solid acids.

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Citations
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Journal ArticleDOI

Hydrolytic hydrogenation of cellulose with hydrotreated caesium salts of heteropoly acids and Ru/C

TL;DR: Geboers et al. as mentioned in this paper evaluated the potential of the insoluble non-stoichiometric caesium salts of HPAs, viz. CsPW and CsSiW, in combination with Ru on carbon (Ru/C) for the conversion of cellulose.
Journal ArticleDOI

A new hypercrosslinked supermicroporous polymer, with scope for sulfonation, and its catalytic potential for the efficient synthesis of biodiesel at room temperature.

TL;DR: Upon sulfonation HMP-1 yielded a very efficient solid acid catalyst for the production of biodiesels via esterification/transesterification of free fatty acids (FFA)/esters at room temperature.
Journal ArticleDOI

Amorphous Nb2O5 as a Selective and Reusable Catalyst for Furfural Production from Xylose in Biphasic Water and Toluene

TL;DR: In this article, aqueous-phase dehydration of xylose into furfural was studied in the presence of amorphous Nb2O5 with water-compatible Bronsted and Lewis acid sites.
Journal ArticleDOI

Recent advances in hydrothermal carbonisation: from tailored carbon materials and biochemicals to applications and bioenergy

TL;DR: In this paper, the authors present an overview on the latest trends in hydrothermal carbonisation including biomass to bioenergy conversion, upgrading of hydro-thermal carbons to fuels over heterogeneous catalysts, advanced carbon materials and their applications in batteries, electrocatalysis and heterogeneous catalysis and finally an analysis of the chemicals in the liquid phase as well as a new family of fluorescent nanomaterials formed at the interface between the liquid and solid phases.
Journal ArticleDOI

One-pot depolymerization of cellulose into glucose and levulinic acid by heteropolyacid ionic liquid catalysis

TL;DR: A series of heteropolyacid (HPA) ionic liquids [C4H6N2(CH2)3SO3H]3−nHnPW12O40 ([MIMPSH]nH3−NPW 12O40, n = 1, 2 3, abbreviated as [MIMRSH] nH3+nPw] as discussed by the authors was used to catalyze one-pot depolymerization of cellulose into glucose.
References
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Journal ArticleDOI

Interpretation of Raman spectra of disordered and amorphous carbon

TL;DR: In this paper, a model and theoretical understanding of the Raman spectra in disordered and amorphous carbon is given, and the nature of the G and D vibration modes in graphite is analyzed in terms of the resonant excitation of \ensuremath{\pi} states and the long-range polarizability of the long range bonding.
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Spectrometric identification of organic compounds

TL;DR: In this paper, a sequence of procedures for identifying an unknown organic liquid using mass, NMR, IR, and UV spectroscopy is presented, along with specific examples of unknowns and their spectra.
Journal ArticleDOI

The path forward for biofuels and biomaterials

TL;DR: The integration of agroenergy crops and biorefinery manufacturing technologies offers the potential for the development of sustainable biopower and biomaterials that will lead to a new manufacturing paradigm.
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Toward an aggregated understanding of enzymatic hydrolysis of cellulose: noncomplexed cellulase systems.

TL;DR: It is suggested that it is timely to revisit and reinvigorate functional modeling of cellulose hydrolysis and that this would be highly beneficial if not necessary in order to bring to bear the large volume of information available on cellulase components on the primary applications that motivate interest in the subject.
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Bio-ethanol--the fuel of tomorrow from the residues of today.

TL;DR: This review gives an overview of the new technologies required and the advances achieved in recent years to bring lignocellulosic ethanol towards industrial production.
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