نتایج جستجو برای: nano lignocellulose

تعداد نتایج: 52532  

2013
Catherine I. Lacayo Mona S. Hwang Shi-You Ding Michael P. Thelen

Plant lignocellulose constitutes an abundant and sustainable source of polysaccharides that can be converted into biofuels. However, the enzymatic digestion of native plant cell walls is inefficient, presenting a considerable barrier to cost-effective biofuel production. In addition to the insolubility of cellulose and hemicellulose, the tight association of lignin with these polysaccharides in...

Journal: :Reviews in Environmental Science and Bio/Technology 2002

2013
Tim van der Weijde Claire L. Alvim Kamei Andres F. Torres Wilfred Vermerris Oene Dolstra Richard G. F. Visser Luisa M. Trindade

With the advent of biorefinery technologies enabling plant biomass to be processed into biofuel, many researchers set out to study and improve candidate biomass crops. Many of these candidates are C4 grasses, characterized by a high productivity and resource use efficiency. In this review the potential of five C4 grasses as lignocellulosic feedstock for biofuel production is discussed. These in...

1997
K. E. Hammel

Of all naturally produced organic chemicals, lignin is probably the most recalcitrant. This is consistent with its biological functions, which are to give vascular plants the rigidity they need to stand upright and to protect their structural polysaccharides (cellulose and hemicelluloses) from attack by other organisms. Lignin is the most abundant aromatic compound on earth, and is second only ...

Journal: :Molecular biology and evolution 2016
László G Nagy Robert Riley Andrew Tritt Catherine Adam Chris Daum Dimitrios Floudas Hui Sun Jagjit S Yadav Jasmyn Pangilinan Karl-Henrik Larsson Kenji Matsuura Kerrie Barry Kurt Labutti Rita Kuo Robin A Ohm Sukanta S Bhattacharya Takashi Shirouzu Yuko Yoshinaga Francis M Martin Igor V Grigoriev David S Hibbett

Evolution of lignocellulose decomposition was one of the most ecologically important innovations in fungi. White-rot fungi in the Agaricomycetes (mushrooms and relatives) are the most effective microorganisms in degrading both cellulose and lignin components of woody plant cell walls (PCW). However, the precise evolutionary origins of lignocellulose decomposition are poorly understood, largely ...

2012
Marie-Jean Meurs Caitlin Murphy Ingo Morgenstern Gregory Butler Justin Powlowski Adrian Tsang René Witte

BACKGROUND Biofuels produced from biomass are considered to be promising sustainable alternatives to fossil fuels. The conversion of lignocellulose into fermentable sugars for biofuels production requires the use of enzyme cocktails that can efficiently and economically hydrolyze lignocellulosic biomass. As many fungi naturally break down lignocellulose, the identification and characterization ...

Journal: : 2022

Lignocellulose is the most abundant biopolymer on earth. The hydrolysis of lignocellulose to fermentable sugars a prerequisite for its successful use as substrate large-scale production value-added industrial products. Enzymatic carried out by cellulases, hemicellulases, and ligninases in synergy or individually. review describes enzymatic cellulose, hemicellulose, lignin. Information solid-pha...

Journal: :iranian journal of aquatic animal health 0
h ahari

nowadays, the use of innovative nano-technology in the food industry quality control has significantly increased and it is widely employed in numerous fields such as diagnosis of microbial toxin of foods using nano-biosensors, increasing food shelf-life with the help of nano-clay and nano-silver packaging, as well as changing some of the unpleasant organoleptic properties such as taste, color, ...

2016
Yu-Wei Wu Brendan Higgins Chaowei Yu Amitha P Reddy Shannon Ceballos Lawrence D Joh Blake A Simmons Steven W Singer Jean S VanderGheynst

Ionic liquid (IL) pretreatment is a promising approach for the conversion of lignocellulose to biofuels. The toxicity of residual IL, however, negatively impacts the performance of industrial enzymes and microorganisms in hydrolysis and fermentation. In this study, a thermophilic microbial community was cultured on switchgrass amended with various levels of the ionic liquid 1-ethyl-3-methylimid...

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