期刊文献+
共找到1,309篇文章
< 1 2 66 >
每页显示 20 50 100
A sustainable process to 100%bio-based nylons integrated chemical and biological conversion of lignocellulose
1
作者 Ruijia Hu Ming Li +9 位作者 Tao Shen Xin Wang Zhuohua Sun Xinning Bao Kequan Chen Kai Guo Lei Ji Hanjie Ying Pingkai Ouyang Chenjie Zhu 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第2期390-402,共13页
Considerable progress has been made in recent years to the development of sustainable polymers from bio-based feedstocks.In this study,100%bio-based nylons were prepared via an integrated chemical and biological proce... Considerable progress has been made in recent years to the development of sustainable polymers from bio-based feedstocks.In this study,100%bio-based nylons were prepared via an integrated chemical and biological process from lignocellulose.These novel nylons were obtained by the melt polymerization of 3-propyladipic acid derived from lignin and 1,5-pentenediamine/1,4-butanediamine derived from carbohydrate sugar.Central to the concept is a three-step noble metal free catalytic chemical funnelling sequence(Raney Ni mediated reductive catalytic fractionation-reductive funnelling-oxidative funnelling),which allowed for obtaining a single component 3-propyladipic acid from lignin with high efficiency.The structural and thermodynamic properties of the obtained nylons have been systematically investigated,and thus obtained transparent bio-based nylons exhibited higher Mw(>32,000)and excellent thermal stability(Td5%>265℃).Considering their moderate Tg and good melt strength,these transparent bio-based nylons could serve as promising functional additives or temperature-responsive materials. 展开更多
关键词 lignocellulose LIGNIN Reductive catalytic fractionation Bio-based nylon
下载PDF
Co@CoO:An efficient catalyst for the depolymerization and upgrading of lignocellulose to alkylcyclohexanols with cellulose intact
2
作者 Shuang Xiang Lin Dong +5 位作者 Zhiqiang Wang Xue Han Yong Guo Xiaohui Liu Xue-Qing Gong Yanqin Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期191-199,I0006,共10页
The depolymerization and upgrading of lignin from raw biomass,while keeping cellulose intact is important in biorefinery and various metal-based catalysts have been used in reductive catalytic fractionation,a key meth... The depolymerization and upgrading of lignin from raw biomass,while keeping cellulose intact is important in biorefinery and various metal-based catalysts have been used in reductive catalytic fractionation,a key method in"lignin-first"strategy,Recently,we found that a core-shell structured Co@CoO catalyst with CoO shell as the real active site had excellent performance in the hydrogenolysis of 5-hydromethylfurfural to 2,5-dimethylfuran due to its unique ability to dissociate H_(2)and yield active H^(δ-)species(Xiang et al.,2022).In this work,we report a one-pot depolymerization and upgrading of lignocellulose to alkylcyclohexanols,a flavour precursor,with intact cellulose over this unique core-shell structured catalyst,Co@CoO.Lignin model compounds(β-O-4,4-O-5,α-O-4)were first used to clarify the activity of Co@CoO catalyst.Then,the one-pot conversion of various organosolv lignin(birch,pine and poplar)to alkylcyclohexanols was realized with the mass yield of alkylcyclohexanols up to25.8 wt%from birch lignin under the reaction condition of 210℃,1 MPa H_(2),16 h.Finally,the corresponding woody sawdusts were used as feedstocks and found that the Co@CoO catalyst indeed preferentially depolymerized and upgraded the lignin part and obtained the same alkylcyclohexanols products with the retention of cellulose-rich pulp.The collected alkylcyclohexanols were further esterified to obtain valueadded esters,which can be used as flavors.This work will inspire the design of new efficient metal oxide catalysts in lignin fractionation and depolymerization to high-value-added chemicals with intact cellulose. 展开更多
关键词 lignocellulose LIGNIN DEPOLYMERIZATION Co@CoO Alkylcyclohexanols
下载PDF
The case-dependent lignin role in lignocellulose nanofibers preparation and functional application-A review
3
作者 Xiya Zhang Lili Zhang +1 位作者 Yimin Fan Zhiguo Wang 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第6期1553-1566,共14页
Lignocellulose nanofibers(LCNFs) as a new material is attracting extensive attention. The pretreatment and mechanical fibrillation are the two main stages involved in the preparation of LCNFs, and lignin plays the imp... Lignocellulose nanofibers(LCNFs) as a new material is attracting extensive attention. The pretreatment and mechanical fibrillation are the two main stages involved in the preparation of LCNFs, and lignin plays the important role of these two stages. This review discussed the interaction between lignin and chemicals in the pretreatment stage, and discovered the general law of the effect of lignin in the mechanical fibrillation stage.Lignin exhibits both promotion and inhibition effects on mechanical fibrillation, and the mutual competition between the two effects ultimately affects the energy consumption, morphology and yield of LCNFs. Furthermore, the recent research progress related to the contributions of lignin on the functional application of LCNFs was summarized, aiming to provide profound guidance for the preparation and application of LCNFs. 展开更多
关键词 lignocellulose nanofibers LIGNIN FIBRILLATION CELLULOSE PRETREATMENT
下载PDF
Advances in catalytic conversion of lignocellulose to chemicals and liquid fuels 被引量:6
4
作者 Jiping Ma Song Shi +4 位作者 Xiuquan Jia Fei Xia Hong Ma Jin Gao Jie Xu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第9期74-86,共13页
In response to the awareness of limited fossil resources and environmental concerns,catalytic conversion of renewable lignocellulose biomass to value-added chemicals and fuels is of great significance and attractive f... In response to the awareness of limited fossil resources and environmental concerns,catalytic conversion of renewable lignocellulose biomass to value-added chemicals and fuels is of great significance and attractive for sustainable chemistry.Division of Biomass Conversion and Bio-Energy attached to Dalian National Laboratory for Clean Energy has devoted themselves to valorization of lignocellulose biomass since launched in 2011.Our research interests focus on breeding of biomass resources(inulin and microalgae),exploration of catalytic and biological technologies,and production of energy chemicals and fuels.Although lignocellulose biomass is renewable and abundant,the way of utilization should be reasonable according to its structural characteristics in view of efficiency and economy.In this review,to celebrate the DICP's 70 th anniversary,we will highlight the major fundamental advances in DICP about the conversion of lignocellulose to value-added chemicals and liquid fuels.Particular attention will be paid to the transformation of cellulose and its derivatives to glycols,acids and nitrogen-containing chemicals,hemicellulose-derived platform molecule furfural to jet fuels and lignin to aromatics using catalytic technologies. 展开更多
关键词 CATALYSIS lignocellulose Gycols FURAN derivatives AROMATICS
下载PDF
Oscillating Cellulase Adsorption and Enhanced Lignocellulose Hydrolysis upon Ultrasound Treatment 被引量:3
5
作者 Rongxin Su Renjun Yang +4 位作者 Yang Jifeng Ruoyu Du Renliang Huang Wei Qi Zhimin He 《Transactions of Tianjin University》 EI CAS 2017年第1期11-19,共9页
We investigated the effects of ultrasound treatment on cellulase adsorption and lignocellulose hydrolysis.The activity of cellulase remained constant upon lowpower ultrasound treatment(<120 W) and decreased using h... We investigated the effects of ultrasound treatment on cellulase adsorption and lignocellulose hydrolysis.The activity of cellulase remained constant upon lowpower ultrasound treatment(<120 W) and decreased using high-power ultrasound(>280 W).Oscillating cellulase adsorption occurred upon ultrasound treatment with any intensity.The maxima for desorption and adsorption were41.9 and 83.1%,respectively,during 1 h of 90 W ultrasound treatment at 50 °C.A comparison between the shorttime with long-time ultrasound experiments indicated that ultrasound treatment tended to desorb cellulase from substrate.However,ultrasound treatment also led to further surface erosion of biomass,which increased cellulase accessibility.These joint actions of ultrasound treatment induced the oscillating adsorption of cellulase.The increase in cellulase accessibility caused by ultrasound treatment led to a significant enhancement in lignocellulose hydrolysis. 展开更多
关键词 lignocellulose CELLULASE ULTRASOUND ADSORPTION DESORPTION HYDROLYSIS
下载PDF
Lignocellulose as an insoluble fiber source in poultry nutrition:a review 被引量:2
6
作者 Ilen Röhe Jürgen Zentek 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2021年第4期1237-1251,共15页
Extensive research in recent years into the use of various fiber sources in poultry nutrition has led to the perception that dietary fiber is more than a simple diet diluent.Several studies showed that the feeding of ... Extensive research in recent years into the use of various fiber sources in poultry nutrition has led to the perception that dietary fiber is more than a simple diet diluent.Several studies showed that the feeding of insoluble fiber sources such as oat hulls,sunflower hulls or wood shavings may affect digestive physiology and function improving chickens health and growth performance.In this context,the effect of lignocellulose as an insoluble dietary fiber source is increasingly being investigated.Lignocellulose is a component of plant cell walls and consists mainly of the insoluble carbohydrate polymers cellulose and hemicelluloses as well as the phenolic polymer lignin.Lignocellulose is chemically and physicochemically different from other insoluble fiber sources and thus possibly has different effects on poultry compared to traditional fiber sources.Several studies investigated the effect of dietary lignocellulose on growth performance,nutrient digestibility,gastrointestinal tract development and intestinal microbiota in broilers and laying hens.Studies differed in terms of feed formulation and lignocellulose inclusion level as well as products of different suppliers were used.The results obtained are inconsistent;beneficial,indifferent or detrimental effects of feeding lignocellulose were observed,so that a final assessment of lignocellulose as a“novel”insoluble fiber source is difficult.This review article summarizes the results of studies in connection with the feeding of lignocellulose to poultry,compares them with those that have used other insoluble fiber sources and illuminates the possible mechanisms of action. 展开更多
关键词 FIBER Growth performance Gut health Gut morphology lignocellulose MICROBIOTA Nutrient digestibility POULTRY
下载PDF
Top-down strategy for bamboo lignocellulose-derived carbon heterostructure with enhanced electromagnetic wave dissipation
7
作者 Shaoxiang Cai Han Yan +3 位作者 Qiuyi Wang He Han Ru Li Zhichao Lou 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2022年第3期360-369,共10页
Biomass-derived residue carbonization has been an important issue for"carbon fixation"and"zero emission",and the carbonized products have multiple application potentials.However,there have been no ... Biomass-derived residue carbonization has been an important issue for"carbon fixation"and"zero emission",and the carbonized products have multiple application potentials.However,there have been no specific research to study the differences in macro-and micro-morphology,electrical properties and many other aspects of the products obtained from carbonization of pure cellulose,pure lignin or their complex,lignocellulose.In this work,lignocellulose with cellulose to lignin mass ratio of 10:1 is obtained using p-toluenesulfonic acid hydrolysis followed by homogenization process at a controlled condition.Then,carbon heterostructure with fibers and sheets(CH-10)are obtained by pyrolysis at 1500℃.Detailed results imply that the fiber-like carbon structure possesses high crystallinity and low defect density,coming from carbonization of the cellulose content in lignocellulose(LC)nanofibers.Correspondingly,the graphite-like carbon sheet with high defect density and low crystallinity comes from carbonization of the lignin content in LCs.Further investigation indicates CH-10 possesses enhanced polarization and moderate impedance matching which makes it an ideal candidate for electromagnetic wave(EMW)absorption.CH-10 exhibits an excellent EMW absorption performance with a minimum RL value of-50.05 dB and a broadest absorption bandwidth of 4.16 GHz at a coating thickness as thin as 1.3 mm. 展开更多
关键词 Carbon heterostructure Conductive loss Pyrolysis Interface Bamboo lignocellulose NANOSTRUCTURE
下载PDF
Dynamic Changes of Microbial Community for Degradation of Lignocellulose
8
作者 LI Wenzhe LIU Shuang WANG Chunying ZHENG Guoxiang 《Journal of Northeast Agricultural University(English Edition)》 CAS 2010年第4期60-65,共6页
Dynamic changes of a microbial community for lignocellulose degradation were explored in details. Community composition and development were investigated by the means of denaturing gradient gel electrophoresis (DGGE),... Dynamic changes of a microbial community for lignocellulose degradation were explored in details. Community composition and development were investigated by the means of denaturing gradient gel electrophoresis (DGGE), and results showed that the microbial community was constituted of 14 kinds of bacteria and presented the fluctuation in some degrees with fermentation. Furthmore, the result of cluster analysis of DGGE pattern was accordant with growth curve, and the degradation process was divided into three stages: initial stage (0-12 h), intermediate stage (24-144 h) and end stage (144-216 h). 展开更多
关键词 lignocellulose microbial community dynamic change
下载PDF
Selective hydrolysis of lignocelluloses from corn stalk in an ionic liquid
9
作者 YIN WeiPing 1 , 2 , LI Xin 1 , REN YunLai 1 , ZHAO Shuang 1 , 2 , WANG JianJi 1 , 2 ( 1 School of Chemical Engineering and Pharmaceutics , Henan University of Science and Technology , Luoyang 471003 , Henan , China 2 The key laboratory for biomass clean energy , Henan University of Science and Technology , Luoyang 471003 , Henan , China ) 《化工进展》 EI CAS CSCD 北大核心 2012年第S1期528-528,共1页
Although lots of basic studies , such as the hydrolysis and dissolution of lignocelluloses has made great progress in recent years , the hydrolysates containing complex mixture of pentose and hexose are very hard to b... Although lots of basic studies , such as the hydrolysis and dissolution of lignocelluloses has made great progress in recent years , the hydrolysates containing complex mixture of pentose and hexose are very hard to be separated , and these process sometimes cause serious environmental problems in practical application of cellulose polymer degradation science.Herein , an efficient two-stage method for selective hydrolysis of lignocelluloses biomass is being developed in this paper by controlling of pH in an ionic liquid.The lignin-hemicelluloses matrix in corn stalk was hydrolyzed into xylose in 23.1% yield in the first stage ; and cellulose-rich residues from the first stage was by farther hydrolyzed to provide a glucose in 26.9%yield.Structure of the products were identified by 13 C NMR.It should be mentioned that , the ionic liquid which can be regenerated and reused throughout the process. The present work significantly opens an a new path to utilize each component of lignocellulose as raw materials producing biofuels , renewable energy and fine chemicals. 展开更多
关键词 Selective hydrolysis of lignocelluloses from corn stalk in an ionic liquid
下载PDF
Transcriptome Analysis of White-Rot Fungi in Response to Lignocellulose or Lignocellulose-Derived Material Using RNA Sequencing Technology
10
作者 Yixing Zhang Koichi Yamaura 《Advances in Bioscience and Biotechnology》 2020年第8期355-368,共14页
White-rot fungi are the only organisms that can completely degrade all components of lignocellulosic biomass, including the recalcitrant lignin polymer. Lignin degradation is important for the industrial application o... White-rot fungi are the only organisms that can completely degrade all components of lignocellulosic biomass, including the recalcitrant lignin polymer. Lignin degradation is important for the industrial application of lignocellulosic biomass as a raw material for producing value-added chemicals and </span><span style="font-family:Verdana;">materials. Therefore, elucidating the lignin degradation mechanism in white-rot</span><span style="font-family:Verdana;"> fungi will help researchers develop efficient and eco-friendly methods enabling the production of value-added chemicals from lignocellulosic biomass. A transcriptome analysis is an effective way to compare gene expression patterns between different samples under diverse conditions and can provide insights into biological processes. The democratization of next-generation sequencing technology, especially RNA-sequencing, has made transcriptome sequencing and analysis a common research approach for many laboratories. </span><span style="font-family:Verdana;">In this review, we focus on the transcriptome profiles of two well-characterized</span><span style="font-family:Verdana;"> white-rot fungi (</span><i><span style="font-family:Verdana;">Phanerochaete</span></i><span style="font-family:Verdana;"> <i>chrysosporium</i></span><span style="font-family:Verdana;"> and </span><i><span style="font-family:Verdana;">Dichomitus</span></i><span style="font-family:Verdana;"> <i>squalens</i></span><span style="font-family:Verdana;">) in response to various lignocellulosic materials. The application of RNA-seq technology combining with other techniques remains the best approach for investigating fungal secretomes and elucidating the mechanisms of fungal responses to lignocellulose. 展开更多
关键词 TRANSCRIPTOME RNA-SEQ White-Rot Fungi Lignocellulosic Biomass
下载PDF
Adsorption of Congo Red onto Lignocellulose/Montmorillonite Nanocomposite
11
作者 赵亚红 王丽 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2012年第5期931-938,共8页
Lignocellulose/montmorillonite (LNC/MMT) nanocomposites were prepared and characterized by FTIR and XRD. The adsorption of congo red (CR) on LNC/MMT nanocomposite was studied in detail. The effects of contact temperat... Lignocellulose/montmorillonite (LNC/MMT) nanocomposites were prepared and characterized by FTIR and XRD. The adsorption of congo red (CR) on LNC/MMT nanocomposite was studied in detail. The effects of contact temperature, pH value of the dye solutions, contact time and concentration of dye solutions on the adsorption capacities of lignocellulose (LNC), montmorillonite (MMT) and the nanocomposite were investigated. The adsorption kinetics and isotherms and adsorption thermodynamics of the nanocomposite for CR were also studied. The results show that the adsorption capacity of LNC/MMT nanocomosite is higher than that of LNC and MMT. All the adsorption processes fit very well with the pseudo-second-order and the Langmuir equation. From thermodynamic studies, it is seen that the adsorption is spontaneous and endothermic. 展开更多
关键词 纳米复合材料 木质纤维素 吸附容量 蒙脱土 刚果红 LANGMUIR方程 吸附热力学 染料溶液
原文传递
In-situ polymerization of lignocelluloses of autohydrolysis process with acrylamide
12
作者 Haosong Zhao Weijue Gao Pedram Fatehi 《Journal of Bioresources and Bioproducts》 EI CSCD 2023年第3期235-245,共11页
In the present study,the hydrolysates generated via autohydrolysis of spruce wood chips were di-rectly used as feedstock for producing coagulants.The in-situ polymerization of acrylamide(AM)and lignocellulose(LC)of hy... In the present study,the hydrolysates generated via autohydrolysis of spruce wood chips were di-rectly used as feedstock for producing coagulants.The in-situ polymerization of acrylamide(AM)and lignocellulose(LC)of hydrolysates was successfully conducted.The reaction was optimized to generate lignocellulose-acrylamide(LC-AM)with the highest molecular weight(41,060 g/mol)and charge density(-0.25 meq/g)under the optimum conditions,which were 3 h,60◦C,4%(w)initiator based on the dried mass of hydrolysate,and an AM/LC molar ratio of 5.63.A nuclear magnetic resonance(NMR)spectroscopy confirmed the grafting of acrylamide on LC.Other prop-erties of LC-AM were characterized by the elemental analyzer,zeta potential analyzer,gel per-meation chromatography(GPC),and particle charge detector(PCD).The LC-AM was applied as a coagulant for removing ethyl violet dye from a simulated dye solution.The results indicated that 47.2%dye was removed from the solution at a low dosage of 0.2 g/g.The dual flocculation of LC-AM with other polymers for dye removal is suggested to further improve its effectiveness. 展开更多
关键词 POLYMERIZATION HYDROLYSATE lignocellulose ACRYLAMIDE BIOREFINING
下载PDF
不同生长期香菇培养料中木质纤维素的变化特征
13
作者 刘丽娜 李顺峰 +5 位作者 许方方 崔国梅 高帅平 王安建 田广瑞 魏书信 《河南农业科学》 2024年第3期110-117,共8页
为探究不同生长期香菇培养料中木质纤维素的变化特征,促进其高效降解利用,以香菇培养料为研究对象,采用范式抽提法、X-射线衍射法、傅里叶变换红外光谱法和光学显微成像法对各生长期香菇培养料的木质纤维素含量、纤维素结晶度、木质纤... 为探究不同生长期香菇培养料中木质纤维素的变化特征,促进其高效降解利用,以香菇培养料为研究对象,采用范式抽提法、X-射线衍射法、傅里叶变换红外光谱法和光学显微成像法对各生长期香菇培养料的木质纤维素含量、纤维素结晶度、木质纤维素相关的官能团和纤维形态变化进行分析。结果表明,随着香菇生长进程的推进,木质纤维素各组分含量显著下降,纤维素生殖生长阶段降解较多,半纤维素、木质素、综纤维素降解具有明显的阶段性,进入转色后降解速度加快。二茬菇时纤维素、半纤维素、木质素和综纤维素含量分别比原料降低了34.73%、61.58%、57.15%、42.33%。各生长期的香菇培养料均具有典型的纤维素X射线衍射特征,纤维素结晶区被破坏,典型衍射峰的结晶度持续减少。傅里叶变换红外光谱显示,木质纤维素的红外光谱特征官能团主要吸收峰的位置未发生改变,但振动强度减弱,与木质纤维素各组分的降解利用规律一致;特征峰比值I1723/I1510、I1383/I1510、I1157/I1510呈现不断减少趋势,而I897/I1510在转色和一茬菇呈增大趋势,表明香菇对木质纤维素各组分的降解程度不同,该生长期木质素相比纤维素有着更快的降解速率。纤维长度及宽度总体上呈现降低的趋势,二茬菇与其他生长期存在显著性差异。经显微镜观察,二茬菇纤维壁及内腔遭到破坏,明显区别于原料。因此,香菇对培养料木质纤维素具有较强的持续的降解作用,可显著降低木质纤维素含量,破坏纤维素结晶区,使得红外光谱吸收峰及纤维形态发生改变。 展开更多
关键词 香菇 木质纤维素 培养料 结晶度 红外光谱 纤维形态
下载PDF
氯化胆碱类低共熔溶剂用于木质纤维素预处理的研究进展
14
作者 薛智敏 闫何恋 《林业工程学报》 CSCD 2024年第1期32-44,共13页
丰富、可再生的木质纤维素生物质在代替化石资源制备化学品和功能材料方面具有巨大的潜力,但是,木质纤维素生物质的天然抗降解性严重制约着其有效利用,需要通过预处理打破木质纤维素的天然抗降解屏障,才能更好利用木质纤维素生物质。以... 丰富、可再生的木质纤维素生物质在代替化石资源制备化学品和功能材料方面具有巨大的潜力,但是,木质纤维素生物质的天然抗降解性严重制约着其有效利用,需要通过预处理打破木质纤维素的天然抗降解屏障,才能更好利用木质纤维素生物质。以低共熔溶剂(DESs)为溶剂的预处理技术是新兴的生物质预处理技术,在木质纤维素预处理方面展现出良好的应用前景。笔者综述了近年来氯化胆碱(ChCl)基DESs用于生物质预处理的研究概况,讨论了ChCl基DESs的物化性质与预处理性能之间的关联性,系统总结了以羧酸、醇、氨基或者酰胺基为氢键供体的DESs在木质纤维素预处理方面的应用,重点分析了预处理温度及时间、氢键供体的结构及其与ChCl的物质的量比、固液比等因素对预处理性能的影响。此外,还讨论了ChCl基DESs与其他辅助技术结合在生物质预处理中的应用、ChCl基DESs的回收、预处理后木质纤维素各组分的再生等。最后,展望了DESs预处理技术面临的挑战及可能的发展方向。 展开更多
关键词 低共熔溶剂 生物质预处理 木质纤维素 木质素 氯化胆碱
下载PDF
Preparation of Nanolignocellulose/Chitin Composites with Superior Mechanical Property and Thermal Stability
15
作者 Yushan YANG Huajie SHEN +1 位作者 Xian WANG Jian QIU 《Journal of Bioresources and Bioproducts》 EI 2019年第4期251-259,共9页
To resolve the issues of special processing equipment, cumbersome process flow and high cost of thecomposite material. The poplar wood fiber was used as the raw material, which were effectively crosslinked with chitin... To resolve the issues of special processing equipment, cumbersome process flow and high cost of thecomposite material. The poplar wood fiber was used as the raw material, which were effectively crosslinked with chitin bythe simple mechanical thermal rubber milling method, then the high performance nanolignocellulose/chitin compositewere obtained by the binderless hot-press method. The nanostructure, chemical structure, surface composition, andthermal stability of nanolignocellulose/chitin composites were investigated by the scanning electron microscopy (SEM),Fourier transform infrared spectroscopy (FT-IR), X-ray photoelectron spectroscopy (XPS) and thermogravimetric/differential thermogravimetric (TG-DTG), respectively. Results turned out that the nanolignocellulose was laminated bythe grinding and the composite material appeared layered structure after the binderless hot-pressing. Chitin/chitosan fromcrab shell powder can be effectively crosslinked with nanofibrillarized lignocellulose to increase the contact area ofsurface hydroxyl groups. The static bending strength (MOR), modulus of elasticity (MOE) and internal bonding strengthof the nanolignocellulose/chitin composite were 34.13 MPa, 7072 MPa and 0.97 MPa, respectively. Meanwhile, theswelling value of thickness after water absorption was only 9.27%, demonstrating the dimensional stability. According tothe profile density distribution, the density of nano-lignocellulose/chitin composites was relatively uniform, whichindicates that the preparation process is reasonable. The nanolignocellulose/chitin composite has excellent thermalstability, since the mass loss of pyrolysis process is lower than the untreated binderless fiberboard. In this study, a new andeffective methods for preparing composite materials was proposed, which provides some research ideas and theoreticalguidance for the efficient development of new nanolignocellulose composite and waste marine arthropod materials. 展开更多
关键词 poplar wood lignocellulose CHITIN nanolignocellulose composite profile density mechanical properties
下载PDF
Comparison and rapid prediction of lignocellulose and organic elements of a wide variety of rice straw based on near infrared spectroscopy 被引量:2
16
作者 Abdoulaye Aguibou Diallo Zengling Yang +3 位作者 Guanghui Shen Jinyi Ge Zichao Li Lujia Han 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2019年第2期166-172,共7页
Rice straw is a major kind of biomass that can be utilized as lignocellulosic materials and renewable energy.Rapid prediction of the lignocellulose(cellulose,hemicellulose,and lignin)and organic elements(carbon,hydrog... Rice straw is a major kind of biomass that can be utilized as lignocellulosic materials and renewable energy.Rapid prediction of the lignocellulose(cellulose,hemicellulose,and lignin)and organic elements(carbon,hydrogen,nitrogen,and sulfur)of rice straw would help to decipher its growth mechanisms and thereby improve its sustainable usages.In this study,364 rice straw samples featuring different rice subspecies(japonica and indica),growing seasons(early-,middle-,and late-season),and growing environments(irrigated and rainfed)were collected,the differences among which were examined by multivariate analysis of variance.Statistic results showed that the cellulose content exhibited significant differences among different growing seasons at a significant level(p<0.01),and the contents of cellulose and nitrogen had significant differences between different growing environments(p<0.01).Near infrared reflectance spectroscopy(NIRS)models for predicting the lignocellulosic and organic elements were developed based on two algorithms including partial least squares(PLS)and competitive adaptive reweighted sampling-partial least squares(CARS-PLS).Modeling results showed that most CARS-PLS models are of higher accuracy than the PLS models,possibly because the CARS-PLS models selected optimal combinations of wavenumbers,which might have enhanced the signal of chemical bonds and thereby improved the predictive efficiency.As a major contributor to the applications of rice straw,the nitrogen content was predicted precisely by the CARS-PLS model.Generally,the CARS-PLS models efficiently quantified the lignocellulose and organic elements of a wide variety of rice straw.The acceptable accuracy of the models allowed their practical applications. 展开更多
关键词 rice straw near infrared reflectance spectroscopy models rapid prediction competitive adaptive reweighted sampling partial least-squares lignocellulose
原文传递
In situ fabrication of Na3V2(PO4)3 quantum dots in hard carbon nanosheets by using lignocelluloses for sodium ion batteries 被引量:1
17
作者 Qihao Zhang Xudong Zhang +5 位作者 Wen He Guogang Xu Manman Ren Jinhua Liu Xuena Yang Feng Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第10期2396-2403,共8页
The rational assembly of quantum dots on two-dimensional(2 D) carbonaceous materials is very promising to produce materials, but remains a challenge. Here, we develop an assembly strategy of growing Na3 V2(PO4)3 quant... The rational assembly of quantum dots on two-dimensional(2 D) carbonaceous materials is very promising to produce materials, but remains a challenge. Here, we develop an assembly strategy of growing Na3 V2(PO4)3 quantum dots with superlattice structure(NVP-QDs-SL) for obtaining precise control of the size, distribution and crystallinity. The multifunctional lignocelluloses(LCs) used as a hard carbon source induce heterogeneous nucleation and confined growth of NVP-QDs-SL, leading to the uniform distribution of NVP-QDs-SL in H/S-doped hard carbon ultra-thin nanosheets(HCS). Detailed electrochemical analysis results from sodium-ion batteries of NVP-QDs-SL show that NVP-QDs-SL could trap the electrons inside HCS, significantly enhancing Na ion storage and transfer kinetics. Compared to the common Na3 V2(PO4)3 nanoparticle cathode, the NVP-QDs-SL/HCS cathode exhibits a high reversible capacity of 149.2 m A h g^-1 at a 0.1 C rate, which is far beyond the theoretical capacity of Na3 V2(PO4)3(117.6 m A h g^-1).At the ultrahigh current rate of 100 C, this cathode still remains a high discharge capacity of 40 m A h g-1.Even after cycling at 20 C over 3000 cycles, an ultrahigh coulombic efficiency close to 100% is still obtained,highlighting its excellent long cycling life, remarkable rate performance and energy density. 展开更多
关键词 lignocellulose Hard carbon NANOSHEET Na3V2(PO4)3 quantum DOT SUPERLATTICE structure
原文传递
Processing and valorization of cellulose,lignin and lignocellulose using ionic liquids 被引量:2
18
作者 Zhenghao Xia Jinyang Li +3 位作者 Jinming Zhang Xiaocheng Zhang Xuejing Zheng Jun Zhang 《Journal of Bioresources and Bioproducts》 EI 2020年第2期79-95,共17页
Cellulose,lignin and lignocellulose are important bioresources in the nature.Their effective and environmentally friendly utilization not only reduces dependence on fossil resources but also protects the environment.R... Cellulose,lignin and lignocellulose are important bioresources in the nature.Their effective and environmentally friendly utilization not only reduces dependence on fossil resources but also protects the environment.Recently,a class of novel eco-friendly solvents,ionic liquids,is employed to dissolve and process these bioresources.In this mini-review,we summarized the recent advances of processing and valorization of cellulose,lignin and lignocellulose in ionic liquids.It is expected that this up-to-date survey provides a comprehensive information of this field,and accelerates the development and utilization of the renewable plant biomass resources. 展开更多
关键词 lignocellulose CELLULOSE LIGNIN High-performance material Ionic liquid
下载PDF
木质纤维素预处理实现组分综合利用
19
作者 曹玉连 庄伟 +5 位作者 唐成伦 单军强 李明 沈涛 朱晨杰 应汉杰 《生物加工过程》 CAS 2024年第2期119-130,共12页
随着可降解材料相关产业的发展,人们对木质纤维素中的纤维素、半纤维素以及木质素等组分材料化及综合利用的关注与日俱增。木质纤维素在经过预处理后,可分离纯化获得的纤维素、半纤维素以及木质素等近单一成分,其本身及衍生物可进一步... 随着可降解材料相关产业的发展,人们对木质纤维素中的纤维素、半纤维素以及木质素等组分材料化及综合利用的关注与日俱增。木质纤维素在经过预处理后,可分离纯化获得的纤维素、半纤维素以及木质素等近单一成分,其本身及衍生物可进一步被应用于化工、材料以及生物医药等领域。笔者总结了不同预处理方法,包括:物理法、化学法、生物法、物理化学法以及联合预处理法等,分析了这几种方法作用于生物质,以克服木质纤维素复杂结构的顽固性对后续综合利用工艺的影响。同时,从分离纯化后的化学修饰及其衍生物的应用等角度进行系统分析,以期为开发不同的木质纤维素利用路径提供指导。 展开更多
关键词 木质纤维素 预处理 综合利用
下载PDF
球磨与蒸汽联合处理玉米秸秆提高水解效率的研究
20
作者 黄其田 RASOOL Kamal +3 位作者 陆洪斌 张珺璐 龚志伟 赵宗保 《湖南师范大学自然科学学报》 CAS 2024年第1期10-15,共6页
为了开发绿色且高效的木质纤维素处理新技术,以玉米秸秆为模型原料,将球磨预处理与蒸汽预处理相结合用以提高玉米秸秆水解效率。研究结果表明:球磨预处理可显著提高秸秆水解效率,在10%固载量条件下,4 mm秸秆经过球磨预处理后,水解后葡... 为了开发绿色且高效的木质纤维素处理新技术,以玉米秸秆为模型原料,将球磨预处理与蒸汽预处理相结合用以提高玉米秸秆水解效率。研究结果表明:球磨预处理可显著提高秸秆水解效率,在10%固载量条件下,4 mm秸秆经过球磨预处理后,水解后葡萄糖和还原糖的回收率分别由38%和36%提高至65%和58%;在球磨预处理的基础上,将秸秆浸入6 g·L-1NaOH并在121℃条件下蒸汽预处理1 h,水解后葡萄糖和还原糖的回收率均达到100%,且在此预处理条件下,当固载量由10%增加至30%时,葡萄糖和还原糖的回收率仍可达到77.14%和75.82%;另外,TOC和TN分析表明,在预处理条件优化和水解效率显著提高的同时,秸秆中的非糖副产物的水解率也显著提高,圆红酵母最高可在秸秆固载量为20%时获得的水解液中进行生长和油脂发酵,生物量、油脂产量和油脂含量分别为16.00 g·L-1,6.00 g·L-1和35.61%。 展开更多
关键词 木质纤维素 预处理 酶法水解 圆红酵母 油脂
下载PDF
上一页 1 2 66 下一页 到第
使用帮助 返回顶部