2023年5月20日 Highlights. •. Circular economy principles can help in reducing the impact on natural resources. •. Researchers and businesses are showing interest in
More2021年6月1日 Direct conversion of lignocellulosic biomass or its isolated components for electricity by fuel cell technology is a new direction developed in recent years. In this
MoreLignocellulosic biomass has higher amount of oxygen and lower fractions of hydrogen and carbon with respect to petroleum resources. Owing to this compositional variety, more
More2021年3月25日 To address these needs, we present an efficient in situ lignin regeneration approach that can fabricate lignocellulosic bioplastic demonstrating high mechanical
More2017年4月3日 This review focuses on the lignocellulosic biocommodity pathway, with emphasis on cellulase and hemicellulase systems. The paradigm shift towards cell
More2019年11月9日 Lignocellulosic biomass (LCB) is globally available and sustainable feedstock containing sugar-rich platform that can be converted to biofuels and specialty
More2022年7月4日 Lignocellulosic materials are important, cheap and abundantly available biomass feedstock, which include agricultural waste or residues, micro algae, forestry
More2020年2月18日 Lignocellulosic biomass is a complex mixture of biomacromolecules that varies significantly from one specie to the other and even throughout the same specie
More2018年10月18日 The cell walls of plants are mostly composed of lignocellulosic biomass, which itself consists mainly of aligned bundles of partly crystalline and partly amorphous cellulose fibrils embedded in a...
More2017年6月15日 — 1.1.2 Cellulose. Cellulose (i.e. glucan ) is unbranched homopolymers of β-(1,4)-linked D-glucose .Native cellulose molecules in higher plants are in fibril and crystal form, which is named as cellulose I. The visually structures of cellulose are cellulose microfibrils with the diameter of 2~10 nm, which are cross-linked by other components
More2018年10月18日 — The plant cell wall biopolymers lignin, cellulose and hemicellulose are potential renewable sources of clean biofuels and high-value chemicals. However, the complex 3D structure of lignocellulosic ...
More2021年11月10日 — In this review, we highlight our recent developments on the formic acid refining of lignocellulosic biomass and how it can be an innovative way to produce sustainable hydrogen and fuels. There is a worldwide high demand for green energy and green chemistry endeavors to drastically slow down climate change in accord with the
More2021年1月1日 — Hemicellulose is the second most abundant biopolymer after cellulose in lignocellulosic materials, up to one-third of the total plant biomass [54].Hemicelluloses are heteropolysaccharides or heteroglycans formed by different derivatives of furanose and pyranose sugar units with general chemical formulas of (C 5 H 8 O 4) n and (C 6 H 10 O
MoreFungal bioprocessing of lignocellulosic materials for biorefinery. Oscar Fernando Vázquez-VuelvasJose Antonio Cervantes-ChávezFrancisco Javier Delgado-VirgenLaura Leticia Valdez-VelázquezRosa Jazmin Osuna-Cisneros, in Recent Advancement in Microbial Biotechnology, 2021. 10 Conclusions. Lignocellulose represents a vital feedstock for
MoreLignocellulosic biomass (LCB) or lignocellulose (LC) is largely composed of plant cell walls, which are mainly constituted of a complex matrix of the polysaccharides cellulose and hemicelluloses associated with the polyphenolic macromolecule lignin (Kirui et al. 2022).These three components represent approximately 90% of the dry mass of LCB.
More2021年3月25日 — With this high solid-content slurry, we can fabricate lignocellulosic bioplastic films via a simple casting process that can be conducted at large scale (Fig. 2e).After evaporating the water at ...
MoreProduction of Hemicellulolytic Enzymes for Hydrolysis of Lignocellulosic Biomass. Sharma Manju, Bhupinder Singh Chadha, in Biofuels, 2011. 1 Introduction. Lignocellulosics in the form of agroresidues and forestry biomass constitute a potentially enormous source of feedstock for bioconversion into biofuel, feed, and specialty chemicals (Kamm and
More2023年5月20日 — Lignocellulosic biomass is a sustainable and eco-friendly resource for preparing high-performance biochar and other biocomposites for environmental remediation (Table 1). Biochar is a renewable and industrially viable adsorptive material with high surface area, carbon content, and porous structure made by thermochemical treatment of
MoreNelly Badalato, Alain Guillot, Victor Sabarly, Marc Dubois, Nina Pourette, Bruno Pontoire, Paul Robert, Arnaud Bridier, Véronique Monnet, Diana Z. Sousa, Sylvie Durand, Laurent Mazéas, Alain Buléon, Théodore Bouchez, Gérard Mortha, Ariane Bize 2017, ' Whole Proteome Analyses on Ruminiclostridium cellulolyticum Show a Modulation of the
More2021年6月1日 Lignocellulosic biomass is a carbon neutral and renewable resource including a wide range of sources such as agricultural by-products/residues, energy crops, forest residues, grass [6], [7].It mainly consists of carbohydrates (cellulose and hemicellulose) and lignin, in which these three main biopolymers are associated in non
More2020年2月18日 Lignocellulosic biomass is a complex mixture of biomacromolecules that varies significantly from one specie to the other and even throughout the same specie depending on many aspects such as geographical location, season, soil, etc. Cellulose-based material is the most abundant source of renewable carbon on earth and the
More2022年11月1日 To date, a large number of lignocellulosic enzymes have been identified in microorganisms and classified in different families of the Carbohydrate-Active EnZyme database (CAZy, https://cazy), based on their sequence and structural characteristics (Guo et al., 2022).In terms of their enzymatic properties, endoglucanase,
More2023年9月12日 The organic wastes and residues generated from agricultural, industrial, and domestic activities have the potential to be converted to bioenergy. One such energy is biogas, which has already been included in rural areas as an alternative cooking energy source and agricultural activities. It is produced via anaerobic digestion of a wide range
More2015年5月5日 Lignocellulosic biomass: a sustainable platform for the production of bio-based chemicals and polymers F. H. Isikgor and C. R. Becer, Polym.Chem., 2015, 6, 4497 DOI: 10.1039/C5PY00263J This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without
More2023年11月10日 As an emerging green solvent, deep eutectic solvent (DES) was widely used in the pretreatment and high-value-added transformation of lignocellulose due to its unique physical, chemical, and biological advantages. In this paper, based on the introduction of the structural composition and physicochemical properties of DES, the
More2017年3月9日 The physicochemical properties of plant fibres are determined by the fibre morphology and structural features of the cell wall, which is composed of three main layers that differ in chemical ...
More2021年2月2日 Abstract Lignocellulosic materials have huge potential because of their abundance, renewability, and non-edible nature aids to develop it to an eco-friendly bioplastic. These feedstocks can be utilized for extracting lignin and cellulose. Both the materials can easily be tunable by surface modifications and other chemical
MoreThe main component of lignocellulose is cellulose, a beta(1–4)-linked chain of glucose molecules. Hydrogen bonds between different layers of the polysaccharides contribute to the resistance of ...
More2022年8月23日 Lignocellulosic biomass pre-treatment using low-cost ionic liquid for bioethanol production: an economically viable method for wheat straw fractionation. Biomass Bioenerg. 151: 106140. 10.1016/j.biombioe.2021.106140 [Google Scholar] Zoghlami A., Paës G. (2019). Lignocellulosic biomass: understanding recalcitrance and predicting
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