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Biosynthesis of xylo-oligosaccharides from wheat straw xylan through the synergistic hydrolysis by xylanase Xyn11A and arabinofuranosidase Abf62A
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作者 HU Die XU Daozhu +3 位作者 LU Zhiyi TANG Wei FAN Bo HE Yucai 《合成生物学》 北大核心 2025年第4期972-986,共15页
Xylo-oligosaccharides(XOSs)are a category of functional oligosaccharides primarily composed of 2-7 xylose units linked byβ-1,4 glycosidic bonds.They are recognized as soluble dietary fibers with prebiotic properties.... Xylo-oligosaccharides(XOSs)are a category of functional oligosaccharides primarily composed of 2-7 xylose units linked byβ-1,4 glycosidic bonds.They are recognized as soluble dietary fibers with prebiotic properties.Recently, there has been significant interest in manufacturing XOSs from xylan extracted from lignocellulosic biomass using enzyme catalysis under mild conditions. In this work, the arabinofuranosidase Abf62A gene was cloned from Aspergillus usamii genomic DNA through sequential molecular processes and expressed in Pichia pastoris X33. The xylan (100 g/L) extracted xylan in wheat straw (WS) was biologically hydrolyzed into 50.32 g/L of XOSs by xylanase Xyn11A (300 U/g substrate) and arabinofuranase Abf62A (20 U/g substrate), which indicated a notable synergistic effect compared to the 34.42 g/L XOSs produced via Xyn11A. The 50.32 g/L of XOSs products comprised xylobiose (31.71 g/L), xylotriose (15.92 g/L), xylotetraose (1.65 g/L) and xylopentaose (1.04 g/L). Notably, the combined content of xylobiose and xylotriose accounted for up to 94.7%. The XOSs purified from the enzyme hydrolysate could effectually scavenge free radicals, and the antioxidant activity was more than 90%. In summary, XOSs were biologically manufactured from wheat straw xylan through the synergistic biocatalysis via xylanase and arabinofuranosidase Abf62A in a green and sustainable way, rending one kind of prebiotic oligosaccharides with substantial positive effects on human and animal health. 展开更多
关键词 ARABINOFURANOSIDASE xylanASE xylo-oligosaccharides xylan BIOSYNTHESIS
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Comparative study on the structural properties and electrochemical performance of xylan-derived char catalyzed by Na_(2)CO_(3) at various concentrations
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作者 LI Yamin GU Yue +1 位作者 WANG Shuang TAN Jun 《燃料化学学报(中英文)》 北大核心 2025年第5期638-645,共8页
In this study,the catalysis function of Na_(2)CO_(3) to the structural properties of xylan char was well investigated with Na_(2)CO_(3) on,and the electrochemical performance of xylan char as an anode material for sod... In this study,the catalysis function of Na_(2)CO_(3) to the structural properties of xylan char was well investigated with Na_(2)CO_(3) on,and the electrochemical performance of xylan char as an anode material for sodium-ion batteries was tested.The characterization of X-ray microscopy and scanning electron microscopy demonstrated that the morphological structure of xylan char was altered due to the addition of Na_(2)CO_(3) catalyst.The increasement of the Na_(2)CO_(3)/xylan ratio resulted in a slenderization of the triangular prism shape of the char skeleton and a reduction in porosity.X-ray diffraction analysis revealed that Na_(2)CO_(3) promoted the growth of the(004)crystal plane of graphite during xylan pyrolysis,while inhibiting the formation of the(100/101)crystal planes.Raman spectroscopy analysis indicated that the presence of Na_(2)CO_(3)had changed the graphitization degree of xylan char.Electrochemical tests further showed that char prepared with a Na_(2)CO_(3)/xylan mass ratio of 1∶1 exhibited the highest sodium storage capacity.This study provides a pathway for the rational design carbon materials derived from xylan for future applications in energy storage devices. 展开更多
关键词 xylan char alkali metal salts biomass CATALYSIS energy storage
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Effects of protein and lignin on cellulose and xylan anaylses of lignocellulosic biomass 被引量:5
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作者 James MacLellan Rui Chen +3 位作者 Zhengbo Yue Robert Kraemer Yan Liu Wei Liao 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第6期1268-1275,共8页
Interactions of lignocellulosic components during fiber analysis were investigated using the highly adopted compositional analysis procedure from the National Renewable Energy Laboratory(NREL),USA.Synthetic feedstoc... Interactions of lignocellulosic components during fiber analysis were investigated using the highly adopted compositional analysis procedure from the National Renewable Energy Laboratory(NREL),USA.Synthetic feedstock samples were used to study the effects of lignin/protein,cellulose/protein,and xylan/protein interaction on carbohydrate analysis.Disregarding structural influence in the synthetic samples,lignin and protein components were the most significant(P〈0.05)factors on cellulose analysis.Measured xylan was consistent and unaffected by content variation throughout the synthetic analysis.Validation of the observed relationships from synthetic feedstocks was fulfilled using real lignocellulosic feedstocks:corn stover,poplar,and alfalfa,in which similar results have been obtained,excluding cellulose analysis of poplar under higher protein content and xylan analysis of alfalfa under higher protein content.The results elucidated that according to their protein and lignin contents of different lignocellulosic materials,accuracy of the NREL method on cellulose and xylan analyses could be improved by applying a stronger extraction step to replace water/ethanol extraction. 展开更多
关键词 lignocellulosic biomass CELLULOSE xylan LIGNIN PROTEIN
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Conversion of xylose and xylan into furfural in biorenewable choline chloride–oxalic acid deep eutectic solvent with the addition of metal chloride 被引量:5
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作者 Lu-Xin Zhang Han Yu +2 位作者 Hong-Bing Yu Ze Chen Lei Yang 《Chinese Chemical Letters》 SCIE CAS CSCD 2014年第8期1132-1136,共5页
An environmentally benign processing approach for furfural production from xylose and xylan under very mild conditions(353–373 K) was developed with the addition of metal chlorides in ChCl–oxalic acid(a deep eute... An environmentally benign processing approach for furfural production from xylose and xylan under very mild conditions(353–373 K) was developed with the addition of metal chlorides in ChCl–oxalic acid(a deep eutectic solvent(DES)) synthesized from cheap and renewable starting materials). ChCl–oxalic acid acted as both a Br?nsted acid catalyst and a reaction medium in this catalytic route. In addition, a biphasic system with methyl isobutyl ketone as an extracting reagent(DES/MIBK) to further increase furfural yield was also proposed. This processing approach for producing furfural eliminated the large energy consumption for high pressure saturated steam and the generation of acidic effluent, which was very difficult to handle. The whole catalytic system was more environmentally friendly compared with the commercial process for furfural production. 展开更多
关键词 FURFURAL XYLOSE xylan
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High Oxygen Nanocomposite Barrier Films Based on Xylan and Nanocrystalline Cellulose 被引量:5
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作者 Amit Saxena Thomas J.Elder +1 位作者 Jeffrey Kenvin Arthur J.Ragauskas 《Nano-Micro Letters》 SCIE EI CAS 2010年第4期235-241,共7页
The goal of this work is to produce nanocomposite film with low oxygen permeability by casting an aqueous solution containing xylan,sorbitol and nanocrystalline cellulose.The morphology of the resulting nanocomposite ... The goal of this work is to produce nanocomposite film with low oxygen permeability by casting an aqueous solution containing xylan,sorbitol and nanocrystalline cellulose.The morphology of the resulting nanocomposite films was examined by scanning electron microscopy and atomic force microscopy which showed that control films containing xylan and sorbitol had a more open structure as compared to xylan-sorbitol films containing sulfonated nanocrystalline cellulose.The average pore diameter,bulk density,porosity and tortuosity factor measurements of control xylan films and nanocomposite xylan films were examined by mercury intrusion porosimetry techniques.Xylan films reinforced with nanocrystalline cellulose were denser and exhibited higher tortuosity factor than the control xylan films.Control xylan films had average pore diameter,bulk density,porosity and tortuosity factor of 0.1730 μm,0.6165 g/ml,53.0161% and 1.258,respectively as compared to xylan films reinforced with 50% nanocrystalline cellulose with average pore diameter of 0.0581 μm,bulk density of 1.1513 g/ml,porosity of 22.8906% and tortuosity factor of 2.005.Oxygen transmission rate tests demonstrated that films prepared with xylan,sorbitol and 5%,10%,25% and 50% sulfonated nanocrystalline cellulose exhibited a significantly reduced oxygen permeability of 1.1387,1.0933,0.8986 and 0.1799 cm^3×μm/m^2×d×k Pa respectively with respect to films prepared solely from xylan and sorbitol with a oxygen permeability of 189.1665 cm^3×μm/m^2×d×k Pa.These properties suggested these nanocomposite films have promising barrier properties. 展开更多
关键词 NANOCOMPOSITES xylan Nanocrystalline cellulose Oxygen barrier
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Paddy Husk as Support for Solid State Fermentation to Produce Xylanase from Bacillus pumilus 被引量:4
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作者 Ranganathan KAPILAN Vasanthy ARASARATNAM 《Rice science》 SCIE 2011年第1期36-45,共10页
To optimize culture conditions for xylanase production by solid state fermentation (SSF) using Bacillus pumilus, with paddy husk as support, solid medium contained 200 g of paddy husk with 800 mL of liquid fermentat... To optimize culture conditions for xylanase production by solid state fermentation (SSF) using Bacillus pumilus, with paddy husk as support, solid medium contained 200 g of paddy husk with 800 mL of liquid fermentation medium [xylan, 20.0 g/L; peptone, 2.0 g/L; yeast extract, 2.5 g/L; K2HPO4, 2.5 g/L; KH2PO4, 1.0 g/L; NaCl, 0.1 g/L; (NH4)2SO4, 2.0 g/L, CaCl2-2H2O, 0.005 g/L; MgCl2.6H2O, 0.005 g/L; and FeCI3, 0.005 g/L] at pH 9.0 was applied. The highest xylanase activity (142.0 ±0.47 U/g DM] was obtained on the 6th day at 30℃ The optimized paddy husk to liquid fermentation medium ratio was 2:9, and the optimized culture temperature was 40℃. When commercial Birchwood xylan was replaced with different concentrations of corncob, xylanase production was maximized (224.2 U/g DM) in the medium with 150 g/L corncob. Xylanase production was increased by sucrose, fructose and arabinose, whereas reduced by glucose, galactose, lactose and amylose. When organic nitrogen sources were replaced with locally available nitrogen sources such as groundnut powder or sesame seedcake powder or coconut seedcake powder or soy meal powder, the highest xylanase production (290.7 U/g DM) was obtained in the medium with soy meal powder and 16.0 g/L of soy meal powder was the optimum (326.5±0.34 U/g DM). Based on the optimization studies, B. pumilus produced 2.3 times higher xylanase activity. The medium cost was reduced from 2 458.3 to 178.3 SLR/kg and the total activity which could be obtained from 1 kg of the medium was increased from 48 624 to 220 253 Units. 展开更多
关键词 Bacillus pumilus solid state fermentation xylanASE paddy husk xylan CORNCOB soymeal
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Optimization of Microwave Assisted Alkaline Extraction of Xylan from Birch Wood Using Response Surface Methodology 被引量:1
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作者 Suhara Panthapulakkal Mohini Sain 《Journal of Materials Science and Chemical Engineering》 2013年第6期38-50,共13页
The main purpose of this study was to optimize microwave assisted alkaline extraction of the hemicellulose, xylan, from birch wood. The simultaneous effects of process variables such as time (10 - 30 minutes), concent... The main purpose of this study was to optimize microwave assisted alkaline extraction of the hemicellulose, xylan, from birch wood. The simultaneous effects of process variables such as time (10 - 30 minutes), concentration of sodium hydroxide solution (4 - 8 wt%), solid to liquid ratio (1:8 to 1:20, g:mL), and sample size (5 - 10 g) on the temperature of the wood slurry, wood dissolution, and yield of extraction were evaluated. A central composite design (CCD) and response surface methodology (RSM) were used for the optimization of the extraction process. Based on the CCD, quadratic models were developed to correlate the extraction process variables with the responses such as temperature of wood slurry, wood dissolution, and yield of xylan and the models were analyzed using appropriate statistical methods (ANOVA). Statistical analysis showed that all the models developed were found to be adequate for the prediction of the respective responses. Optimization of the process was performed using a numerical optimization available in the software to maximize the yield of xylan and the optimum process variables for the maximum yield of xylan was found to be: 10 g of wood fibres, 8 wt% of NaOH solution, 1:10 solid to liquid ratio (g:mL) and 25 minutes of irradiation time. About 72.5% of the xylan present in the birch wood was extracted using the optimized extraction parameters. 展开更多
关键词 BIOMASS OPTIMIZATION MICROWAVE EXTRACTION Hemicelluloses xylan
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Global identification of genes associated with xylan biosynthesis in cotton fiber 被引量:2
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作者 CHEN Feng GUO Yanjun +4 位作者 CHEN Li GAN Xinli LIU Min LI Juan XU Wenliang 《Journal of Cotton Research》 2020年第3期184-198,共15页
Background:Mature cotton fiber secondary cell wall comprises largely of cellulose(>90%)and small amounts of xylan and lignin.Little is known about the cotton fiber xylan biosynthesis by far.Results:To comprehensive... Background:Mature cotton fiber secondary cell wall comprises largely of cellulose(>90%)and small amounts of xylan and lignin.Little is known about the cotton fiber xylan biosynthesis by far.Results:To comprehensively survey xylan biosynthetic genes in cotton fiber,we identified five IRX9,five IRX10,one IRX14,six IRX15,two FRA8,one PARVUS,eight GUX,four GXM,two RWA,two AXY9,13 TBL genes by using phylogenetic analysis coupled with expression profile analysis and co-expression analyses.In addition,we also identified two GT61 members,two GT47 members,and two DUF579 family members whose homologs in Arabidopsis were not functionally characterized.These 55 genes were regarded as the most probable genes to be involved in fiber xylan biosynthesis.Further complementation analysis indicated that one IRX10 like and two FRA8 related genes were able to partially recover the irregular xylem phenotype conferred by the xylan deficiency in their respective Arabidopsis mutant.We conclude that these genes are functional orthologs of respective genes that are implicated in GX biosynthesis.Conclusion:The list of 55 cotton genes presented here provides not only a solid basis to uncover the biosynthesis of xylan in cotton fiber,but also a genetic resource potentially useful for future studies aiming at fiber improvement via biotechnological approaches. 展开更多
关键词 Cotton fiber Secondary cell wall xylan biosynthesis Expression profile CO-EXPRESSION
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Facile Approach for Preparation of Xylan-based Double-network Hydrogels 被引量:1
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作者 Ziwen Lyu Jun Rao +4 位作者 Xianming Qi Ziyi Bai Siyu Jia Zhenhua Su Feng Peng 《Paper And Biomaterials》 CAS 2022年第1期19-27,共9页
In this study,xylan-based double-network(DN)hydrogels(xylanbased DN gels)with excellent mechanical properties were prepared using acrylic acid and acrylamide(AM)based on a DN approach.The first layer network was obtai... In this study,xylan-based double-network(DN)hydrogels(xylanbased DN gels)with excellent mechanical properties were prepared using acrylic acid and acrylamide(AM)based on a DN approach.The first layer network was obtained by grafting and crosslinking polyacrylic acid(PAA)molecular chains onto xylan with ammonium persulfate(APS)as the initiator and N,N'-methylenebisacrylamide(MBA)as the crosslinking agent;this network was subsequently immersed into an aqueous AM monomer in the presence of APS and MBA for the preparation of the second layer network.The results showed that the double networks were crosslinked by covalent bonds and that the mechanical properties of the xylan-based DN gels were enhanced.Thus,the xylan-based DN gels exhibited a maximum compression stress of 24.9 MPa.The xylan-based DN gels could also recover 97%of their original height after 15 repeated compression cycles;this indicates that the xylan-based DN gels possessed high resistance to friction and wear.Therefore,the prepared xylan-based DN gels have considerable potential for tissue engineering applications. 展开更多
关键词 xylan DN gels mechanical property tissue engineering
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The DUF579 proteins GhIRX15s regulate cotton fiber development by interacting with proteins involved in xylan synthesis
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作者 Mengyun Li Feng Chen +6 位作者 Jingwen Luo Yanan Gao Jinglong Cai Wei Zeng Monika S.Doblin Gengqing Huang Wenliang Xu 《The Crop Journal》 SCIE CSCD 2024年第4期1112-1125,共14页
Cotton provides the most abundant natural fiber for the textile industry.The mature cotton fiber largely consists of secondary cell walls with the highest proportion of cellulose and a small amount of hemicellulose an... Cotton provides the most abundant natural fiber for the textile industry.The mature cotton fiber largely consists of secondary cell walls with the highest proportion of cellulose and a small amount of hemicellulose and lignin.To dissect the roles of hemicellulosic polysaccharides during fiber development,four IRREGULAR XYLEM 15(IRX15)genes,GhIRX15-1/-2/-3/-4,were functionally characterized in cotton.These genes encode DUF579 domain-containing proteins,which are homologs of AtIRX15 involved in xylan biosynthesis.The four GhIRX15 genes were predominantly expressed during fiber secondary wall thickening,and the encoded proteins were localized to the Golgi apparatus.Each GhIRX15 gene could restore the xylan deficient phenotype in the Arabidopsis irx15irx15l double mutant.Silencing of GhIRX15s in cotton resulted in shorter mature fibers with a thinner cell wall and reduced cellulose content as compared to the wild type.Intriguingly,GhIRX15-2 and GhIRX15-4 formed homodimers and heterodimers.In addition,the GhIRX15s showed physical interaction with glycosyltransferases GhGT43C,GhGT47A and GhGT47B,which are responsible for synthesis of the xylan backbone and reducing end sequence.Moreover,the GhIRX15s can form heterocomplexes with enzymes involved in xylan modification and side chain synthesis,such as GhGUX1/2,GhGXM1/2 and GhTBL1.These findings suggest that GhIRX15s participate in fiber xylan biosynthesis and modulate fiber development via forming large multiprotein complexes. 展开更多
关键词 Cotton fiber xylan biosynthesis GhIRX15s Protein-protein interaction Protein complexes
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Study on the green extraction of corncob xylan by deep eutectic solvent
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作者 Bingyu Jiao Le Wang +3 位作者 Haitao Gui Zifu Ni Rong Du Yuansen Hu 《Grain & Oil Science and Technology》 CAS 2024年第1期50-59,共10页
Corn as one of the world's major food crops,its by-product corn cob is also rich in resources.However,the unreasonable utilization of corn cob often causes the environmental pollution,waste of resources and other ... Corn as one of the world's major food crops,its by-product corn cob is also rich in resources.However,the unreasonable utilization of corn cob often causes the environmental pollution,waste of resources and other problems.As one of the most abundant polymers in nature,xylan is widely used in food,medicine,materials and other fields.Corn cob is rich in xylan,which is an ideal raw material for extracting xylan.However,the intractable lignin is covalently linked to xylan,which increases the difficulty of xylan extraction.It has been reported that the deep eutectic solvent(DES)could preferentially dissolve lignin in biomass,thereby dissolving the xylan.Then,the xylan in the extract was separated by ethanol precipitation method.The xylan precipitate was obtained after centrifugation,while the supernatant was retained.The components of the supernatant after ethanol precipitation were separated by the rotary evaporator.The ethanol,water and DES were collected for the subsequent extraction of corn cob xylan.In this study,a novel way was provided for the green production of corn cob xylan.The DES was used to extract xylan from corn cob which was used as the raw material.The effects of solid-liquid ratio,reaction time,reaction temperature and water content of DES on the extraction rate of corn cob xylan were investigated by the single factor test.Furthermore,the orthogonal test was designed to optimize the xylan extraction process.The structure of corn cob xylan was analyzed and verified.The results showed that the optimum extraction conditions of corn cob xylan were as follows:the ratio of corn cob to DES was 1:15(g:mL),the extraction time was 3 h,the extraction temperature was 60℃,and the water content of DES was 70%.Under these conditions,the extraction rate of xylan was 16.46%.The extracted corn cob xylan was distinctive triple helix of polysaccharide,which was similar to the structure of commercially available xylan.Xylan was effectively and workably extracted from corn cob by the DES method.This study provided a new approach for high value conversion of corn cob and the clean production of xylan. 展开更多
关键词 CORNCOB Deep eutectic solvent xylan Process optimization EXTRACTION
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Xylanase-producing microflora in Eastern Ghats of Andhra Pradesh,India
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作者 G.Ramanjaneyulu A.Ramya +2 位作者 B.S.Shanthi Kumari Kanderi Dileep Kumar B.Rajasekhar Reddy 《Journal of Forestry Research》 SCIE CAS CSCD 2017年第2期291-298,共8页
We screened soil samples collected from underneath shrubs and/or large trees at different locations in the Eastern Ghats of Andhra Pradesh for xylanase-producing microorganisms. Xylose-utilizing bacteria were numerica... We screened soil samples collected from underneath shrubs and/or large trees at different locations in the Eastern Ghats of Andhra Pradesh for xylanase-producing microorganisms. Xylose-utilizing bacteria were numerically dominant in soils of most locations whereas xylose-and xylan-utilizing actinobacteria were minor components. Xylan-utilizing fungi constituted a major share of total microbial populations in soil samples collected at half of the sites, whereas xylan-utilizing bacteria were predominant at other sampling locations. Some of the isolates of fungi exhibited xylanase activity with a range of400–4000 U/ml, indicating great potential for their uses in paper, pulping and bioethanol industries for producing value-added products. 展开更多
关键词 utilizing producing xylan microbial fungi populations Eastern utilize India letters
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Structural Characteristics of Cellulose and Xylan during in vitro Fermentation by Pig Fecal Bacteria
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作者 Ling Meng ShiLin Cao +3 位作者 XiaoJuan Ma LiHui Chen LiuLian Huang Fang Huang 《Paper And Biomaterials》 2016年第2期8-15,共8页
In this study,cellulose and xylan were in vitro fermented by pig fecal bacteria.Rapid fermentation(40 h) and extended fermentation(eight weeks)were performed.The properties and ultra-structure changes of post-fermente... In this study,cellulose and xylan were in vitro fermented by pig fecal bacteria.Rapid fermentation(40 h) and extended fermentation(eight weeks)were performed.The properties and ultra-structure changes of post-fermented solid residues were studied.In the end effluent,acetic acid,propionic acid,and butyric acid were observed to be the principal short-chain fatty acids(SCFAs) produced by anaerobic fermentation.Xylan was more accessible to bacteria than cellulose,leading to higher SCFA and lactic acid production.In addition,the crystalline structure of cellulose changed,leading to 16.3% and42.1% increases in crystallinity index for rapid and extended fermentation,respectively.Through this research,a systematic and advanced method to study the degradation chemistry of cellulose and xylan during fermentation was developed. 展开更多
关键词 CELLULOSE xylan pig fecal bacteria in vitro fermentation
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Xylan公司首次将IP防火墙功能集成于校园交换网
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《中国计算机用户》 1997年第16期34-34,共1页
美国Xylan公司近日宣布,首次为校园交换网提供IP防火墙功能。这种新功能将被集成于Xylan的Om-ni-Switch系列和Pizza-Switch系列。
关键词 xylan公司 IP防火墙 校园交换网 Om-ni-Switch系列 Pizza-Switch系列
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半纤维素基水凝胶的制备及应用研究进展
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作者 吴美燕 余雪景 +4 位作者 龚润竹 于光 刘超 唐艳军 李滨 《林业工程学报》 北大核心 2025年第2期1-12,共12页
近年来,随着生物质精炼技术和材料科学的不断进步,利用可降解、可再生的木质纤维素资源构筑环境友好的水凝胶材料受到了广泛的关注。半纤维素是木质纤维原料的主要组分之一,是陆地上含量仅次于纤维素的可再生多糖。半纤维素来源广泛、... 近年来,随着生物质精炼技术和材料科学的不断进步,利用可降解、可再生的木质纤维素资源构筑环境友好的水凝胶材料受到了广泛的关注。半纤维素是木质纤维原料的主要组分之一,是陆地上含量仅次于纤维素的可再生多糖。半纤维素来源广泛、成本低廉、生物相容性好,还含有大量亲水性的含氧基团,这种高度分支化和亲水性的特点,赋予其水凝胶材料许多优异的特性。半纤维素基水凝胶作为一种具有三维网络状结构的天然聚合物材料,具有良好的保水性、安全无毒、可生物降解、易于化学改性等优势;因此,其在生物医药、导电传感、环境保护等领域的应用前景十分广阔,有望代替传统的石油基水凝胶材料。笔者简要介绍了半纤维素的种类、结构、性质与提取方法,综述了近年来半纤维素基水凝胶的研究进展,包括从物理交联和化学交联两个方面介绍了半纤维素基水凝胶的制备方法、形成机理和应用性能,并重点阐述了半纤维素基水凝胶在高效吸附、药物控释、组织工程、导电传感、3D打印等领域的应用进展。最后,总结了半纤维素基水凝胶的开发与应用领域所面临的挑战,并展望了该水凝胶材料的应用前景和未来的研究方向。 展开更多
关键词 半纤维素 水凝胶 木聚糖 交联 生物降解
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聚木糖纳米晶的结构﹑制备及应用研究进展
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作者 郝翔 夏强 +1 位作者 李唯 彭锋 《林业科学》 北大核心 2025年第1期1-9,共9页
半纤维素几乎存在于所有植物细胞壁中,是植物细胞壁的三大组分之一,当下半纤维素工业化应用主要通过降解制备低聚木糖、木糖和糠醛的产品。结晶的聚木糖类半纤维素表现出独特的理化性质,并可转化为高附加值多糖纳米晶,是近年来植物多糖... 半纤维素几乎存在于所有植物细胞壁中,是植物细胞壁的三大组分之一,当下半纤维素工业化应用主要通过降解制备低聚木糖、木糖和糠醛的产品。结晶的聚木糖类半纤维素表现出独特的理化性质,并可转化为高附加值多糖纳米晶,是近年来植物多糖转化利用的研究热点。聚木糖纳米晶主要由五碳糖-木糖为重复结构单元构成,分子链间相互作用较弱,通常需要外部如水分子来稳定晶胞结构。聚木糖纳米晶具有球形、片状和棒状等形貌,尺寸一般在几十至几百纳米之间,由不同制备方法决定,聚木糖独特的化学结构导致其制备方法亦与传统生物质纳米晶有所不同。此外,聚木糖纳米晶具有优异的生物相容性和纳米尺寸效应,使其在多领域应用潜力较大。本研究总结典型的聚木糖纳米水合晶、乙酰化聚木糖纳米晶和聚木糖纳米共晶晶胞结构,介绍水分子和聚木糖化学结构对其晶胞参数的影响规律,对聚木糖纳米晶自上而下法和自上而下法进行系统论述,重点分析不同制备方法对聚木糖纳米晶形貌、尺寸、聚合度和产率的影响,概述其在乳化﹑日用化学品和防伪材料等领域的应用,并结合聚木糖纳米晶取得的相关研究成果,提出聚木糖纳米晶现阶段仍需解决的问题,展望其未来发展和应用前景。 展开更多
关键词 结晶多糖 聚木糖纳米晶 自组装 自上而下 双碳
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离子化策略构建木聚糖基室温磷光材料的研究
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作者 李岷钊 鄢正旭 +2 位作者 张鑫媛 吕保中 彭锋 《中国造纸》 北大核心 2025年第12期24-31,共8页
本研究以木聚糖类半纤维素为原料,通过定向氧化还原反应将木聚糖转化为水溶性环外伯羟基木聚糖(RDAX),利用离子键合策略将含共轭结构的芳基羧酸钠发色团锚定于刚性木聚糖骨架,制备了具有颜色可调的长寿命木聚糖基室温磷光(RTP)材料。结... 本研究以木聚糖类半纤维素为原料,通过定向氧化还原反应将木聚糖转化为水溶性环外伯羟基木聚糖(RDAX),利用离子键合策略将含共轭结构的芳基羧酸钠发色团锚定于刚性木聚糖骨架,制备了具有颜色可调的长寿命木聚糖基室温磷光(RTP)材料。结果表明,木聚糖通过定向氧化还原分子重构提供了充足的活性交联位点和刚性环境,重构木聚糖形成的刚性氢键网络可协同离子键稳定三重态激子,使RTP材料的磷光寿命最高达1 293 ms;同时利用RDAX的热塑性,成功开发出柔性RTP防伪薄膜。 展开更多
关键词 室温磷光 木聚糖 定向氧化还原 离子化 防伪
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高效液相色谱-水凝粒子激光计数检测器法测定抗皱类化妆品中玻色因的含量 被引量:1
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作者 于海英 牛水蛟 +3 位作者 张良雨 林钰镓 杨茜 李启艳 《理化检验(化学分册)》 北大核心 2025年第1期28-31,共4页
提出了高效液相色谱-水凝粒子激光计数检测器法测定抗皱类化妆品中玻色因含量的方法。取0.25 g抗皱类化妆品置于50 mL离心管中,加入3 mL甲醇,涡旋1 min,加水至25 mL,超声15 min,摇匀,过0.45μm滤膜,滤液上机分析。以CAPCELL PAK ADME-HR... 提出了高效液相色谱-水凝粒子激光计数检测器法测定抗皱类化妆品中玻色因含量的方法。取0.25 g抗皱类化妆品置于50 mL离心管中,加入3 mL甲醇,涡旋1 min,加水至25 mL,超声15 min,摇匀,过0.45μm滤膜,滤液上机分析。以CAPCELL PAK ADME-HR S5色谱柱为固定相,以不同体积比的0.1%(体积分数)甲酸溶液-乙腈混合液为流动相进行梯度洗脱,水凝粒子激光计数检测器测定。结果表明,玻色因的质量浓度在10~1 000 mg·L^(-1)内与对应的非对映异构体的峰面积之和呈线性关系,检出限(3S/N)为0.013%(质量分数)。样品精密度试验所得测定值的相对标准偏差(n=6)小于2.0%,按照标准加入法进行回收试验,回收率为99.5%~100%。方法用于测定实际抗皱类化妆品中玻色因的含量,检出量为2.33%~9.89%(质量分数)。 展开更多
关键词 高效液相色谱法 水凝粒子激光计数检测器 抗皱类化妆品 玻色因
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长茎葡萄蕨藻多糖分级提取工艺构建及其抗氧化活性
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作者 王少华 晋文慧 +5 位作者 蒋娴 杨青 陈伟珠 方华 杨燊 张怡评 《食品研究与开发》 2025年第20期101-108,共8页
为探究不同提取方式对长茎葡萄蕨藻多糖及体外抗氧化活性的影响,分别以挤压提取、水浴提取及碱提取3种方法依次分级提取长茎葡萄蕨藻多糖,比较通过不同提取方式分级提取的多糖提取率、单糖组成和相对分子质量;通过测定DPPH自由基、ABTS... 为探究不同提取方式对长茎葡萄蕨藻多糖及体外抗氧化活性的影响,分别以挤压提取、水浴提取及碱提取3种方法依次分级提取长茎葡萄蕨藻多糖,比较通过不同提取方式分级提取的多糖提取率、单糖组成和相对分子质量;通过测定DPPH自由基、ABTS+自由基和羟基自由基清除能力考察其抗氧化活性。结果表明:不同提取方式多糖得率由高到低依次为碱提取、水浴提取、挤压提取,所获得的多糖提取率分别为28.83%、5.30%和3.85%,其中挤压提取和水浴提取所获得的多糖单糖组成相似,主要为半乳糖、葡萄糖、木糖和甘露糖,碱提法所得多糖其单糖组成为木糖,经鉴定为β-1,3-木聚糖;不同提取方式所得多糖其抗氧化活性也有一定差异,碱提取得到的多糖对DPPH自由基和羟基自由基的清除能力最强,尤其对羟基自由基的清除能力尤为明显,高达97.60%;水浴提取得到的多糖ABTS+自由基清除能力最强,碱提取次之,挤压提取最弱。经对比发现,β-1,3-木聚糖显示出最佳的抗氧化活性,并呈浓度依赖性。 展开更多
关键词 长茎葡萄蕨藻 多糖 分级提取 β-1 3-木聚糖 抗氧化活性
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乙酰化木聚糖/多壁碳纳米管分散液涂层纸基导电材料的构建及电化学性能
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作者 刘晓欣 邝玥琳 +1 位作者 宋涛 项舟洋 《精细化工》 北大核心 2025年第9期1917-1923,2048,共8页
利用乙酸酐/4-二甲基氨基吡啶(DMAP)/LiCl均相体系对粉单竹经碱提提取的单竹木聚糖进行乙酰化,制备了乙酰化木聚糖(AX),将其作为分散剂配制多壁碳纳米管(MWCNT)分散液,并涂布至纸张表面制成了纸基导电材料。基于1HNMR、GPC、XRD、动态... 利用乙酸酐/4-二甲基氨基吡啶(DMAP)/LiCl均相体系对粉单竹经碱提提取的单竹木聚糖进行乙酰化,制备了乙酰化木聚糖(AX),将其作为分散剂配制多壁碳纳米管(MWCNT)分散液,并涂布至纸张表面制成了纸基导电材料。基于1HNMR、GPC、XRD、动态光散射纳米颗粒分析仪、FESEM表征,考察了AX的乙酰基取代度对MWCNT分散液分散性能的影响,通过电化学工作站评价了导电纸的循环伏安、交流阻抗、恒电流充放电和循环稳定性等电化学性能。结果表明,乙酰基取代度为0.2960时,由乙酸酐加入量为2.4 mL制备的AX4用于分散质量浓度为1 g/L的MWCNT分散液,其分散效率为64.4%,水合粒径为348.8 nm;以AX4为分散剂配制的MWCNT分散液涂布的导电纸电导率最高,为17.89 S/cm,质量比电容为4.37 F/g,循环1000次后比电容保留率为50%。 展开更多
关键词 木聚糖 乙酰化 分散 碳纳米管 纸基导电材料 功能材料
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