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1.
Ma H  Burger C  Hsiao BS  Chu B 《Biomacromolecules》2012,13(1):180-186
A multilayered nanofibrous microfiltration (MF) membrane system with high flux, low pressure drop, and high retention capability against both bacteria and bacteriophages (a virus model) was developed by impregnating ultrafine cellulose nanowhiskers (diameter about 5 nm) into an electrospun polyacrylonitrile (PAN) nanofibrous scaffold (fiber diameter about 150 nm) supported by a poly(ethylene terephthalate) (PET) nonwoven substrate (fiber diameter about 20 μm). The cellulose nanowhiskers were anchored on the PAN nanofiber surface, forming a cross-linked nanostructured mesh with very high surface-to-volume ratio and a negatively charged surface. The mean pore size and pore size distribution of this MF system could be adjusted by the loading of cellulose nanowhiskers, where the resulting membrane not only possessed good mechanical properties but also high surface charge density confirmed by the conductivity titration and zeta potential measurements. The results indicated that a test cellulose nanowhisker-based MF membrane exhibited 16 times higher adsorption capacity against a positively charged dye over a commercial nitrocellulose-based MF membrane. This experimental membrane also showed full retention capability against bacteria, for example, E. coli and B. diminuta (log reduction value (LRV) larger than 6) and decent retention against bacteriophage MS2 (LRV larger than 2).  相似文献   

2.
Cellulose II nanowhiskers (CNW-II) were produced by treatment of microcrystalline cellulose with sulfuric acid by both controlling the amount of H(2)SO(4) introduced and the time of addition during the hydrolysis process. The crystalline structure was confirmed by both XRD and (13)C CP-MAS NMR spectroscopy. When observed between crossed polarizers, the cellulose II suspension displayed flow birefringence and was stable for several months. The CNW-II nanowhiskers were significantly smaller than the cellulose I nanowhiskers (CNW-I) and had a rounded shape at the tip. The CNW-II average length and height were estimated by AFM to be 153 ± 66 and 4.2 ± 1.5 nm, respectively. An average width of 6.3 ± 1.7 nm was found by TEM, suggesting a ribbon-shape morphology for these whiskers. The average dimensions of the CNW-II elementary crystallites were estimated from the XRD data, using Scherrer's equation. A tentative cross-sectional geometry consistent with both XRD and NMR data was then proposed and compared with the geometry of the CNW-I nanowhiskers.  相似文献   

3.
The mechanically induced molecular deformation of cellulose nanowhiskers embedded in subpercolation concentration in an epoxy resin matrix was monitored through Raman spectroscopy. Cellulose nanowhiskers isolated by sulfuric acid hydrolysis from tunicates and by sulfuric acid hydrolysis and hydrochloric acid hydrolysis from cotton were used to study how the aspect ratio (ca. 76 for tunicate and 19 for cotton) and surface charges (38 and 85 mmol SO(4)(-)/kg for sulfuric acid hydrolysis of cotton and tunicate, respectively; no detectable surface charges for hydrochloric acid hydrolysis) originating from the isolation process influence stress transfer in such systems. Atomic force microscopy confirmed that uncharged cellulose nanowhiskers produced by hydrochloric acid hydrolysis have a much higher tendency to aggregate than the charged cotton or tunicate nanowhiskers. Each of these nanowhisker types was incorporated in a concentration of 0.7 vol % in a thermosetting epoxy resin matrix. Mechanically induced shifts of the Raman peak initially located at 1095 cm(-1) were used to express the level of deformation imparted to the nanowhiskers embedded in the resin. Much larger shifts of the diagnostic Raman band were observed for nanocomposites with tunicate nanowhiskers than for the corresponding samples comprising cotton nanowhiskers. In the case of nanocomposites comprising nanowhiskers produced by hydrochloric acid hydrolysis, no significant Raman band shift was observed. These results are indicative of different modes of stress transfer, which in turn appear to originate from the different sample morphologies.  相似文献   

4.
Agarose hydrogels filled with cellulose nanowhiskers were strained in uniaxial stretching under different humidity conditions. The orientation of the cellulose whiskers was examined before and after testing with an X-ray laboratory source and monitored in situ during loading by synchrotron X-ray diffraction. The aim of this approach was to determine the process parameters for reorienting the cellulose nanowhiskers toward a preferential direction. Results show that a controlled drying of the hydrogel is essential to establish interactions between the matrix and the cellulose nanowhiskers which allow for a stress transfer during stretching and thereby promote their alignment. Rewetting of the sample after reorientation of the cellulose nanowhiskers circumvents a critical increase of stress. This improves the extensibility of the hydrogel and is accompanied by a further moderate alignment of the cellulose nanowhiskers. Following this protocol, cellulose nanowhiskers with an initial random distribution can be reoriented toward a preferential direction, creating anisotropic nanocomposites.  相似文献   

5.
Self organization of the kinesin-microtubule system was implemented as a novel template to create percolated nanofiber networks. Asters of microtubule seeds were immobilized on glass surfaces and their growth was recorded over time. The individual aster islands became interconnected as microtubules grew and overlapped, resulting in a highly percolated network. Cellulose nanowhiskers were used to demonstrate the application of this system to nanomaterials organization. The size distribution of the cellulose nanowhiskers was comparable to that of microtubules. To link cellulose nanowhiskers to microtubules, the nanowhiskers were functionalized by biotin using cellulose binding domains. Fluorescence studies confirmed biotinylation of cellulose nanowhiskers and binding of cellulose nanowhiskers to biotinylated microtubules.  相似文献   

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8.
Cellulose whiskers are increasingly being used as a reinforcing phase in polymer systems and their use is a growing area of importance in bionanocomposite research. Although the reinforcing effect of cellulose whiskers has been studied in various polymers, the impact of crosslinking cellulose whiskers has not been explored so far. This work deals with the development of novel cellulose nanocomposites, wherein the cellulose nanowhiskers are crosslinked with poly(methyl vinyl ether-co-maleic acid) and poly(ethylene glycol). The morphology of the nanocomposite was studied using atomic force microscopy (AFM), which revealed a network structure embedded in a continuous phase. The water sorption studies demonstrated that the crosslinked nanocomposites are capable of absorbing up to ~900% water and have potential to be used as hydrogels.  相似文献   

9.
Though finer quality fibre is of great demand in the industry, a reasonable biological assessment of the factors controlling jute fibre fineness is lacking. Our aim was to relate lignin synthesis and accumulation in the secondary wall of the fibre cells with fibre fineness by anatomical and physiological evidences. Several jute genotypes including a low lignin mutant, dlpf (INGR No. 04107) and its lignin sufficient parent (JRC 212) were grown under different growth conditions. Their cell wall morphology and cellulose, hemicellulose and lignin content of fibre were estimated. The fineness of the extracted fibre was examined gravimetrically as well as by air-flow method on individual plant basis to relate it with their chemical constituents. Effect of incident light and some plant growth regulators on glucan and lignin biosynthetic enzymes as well as fibre fineness was determined. Positive relationship between cell wall thickness and lignin and negative relationship between fibre fineness and lignin of jute fibre were established. Application of the GA biosynthetic inhibitor helped to reduce lignin synthesis and to increase fibre fineness. Genotypes with thinner cell wall and lesser lignin may be utilized in breeding for improving the fibre fineness of jute. Field application of GA biosynthetic inhibitors, like daminozide, is recommended to reduce the cell wall thickness of lignin sufficient high yielding jute varieties.  相似文献   

10.
本实验采用 H~3标记糖饲喂示踪分析法。将苘麻愈伤组织分别用吲哚乙酸和激动素处理,并在培养基中供给 H~3葡萄糖或 H~3半乳糖。——实验表明,激素对细胞壁组成分影响,不仅与激素的种类有关,也与供给的外源单糖有关。而外源单糖(半乳糖、葡萄糖)单独加入或同时加入,使激素对苘麻愈伤组织诱导的影响又有所不同。在吲哚乙酸作用下,促进了 H~3葡萄糖的掺入;而半乳糖的加入又抑制了 H~3葡萄糖掺入到细胞壁各组分。在激动素作用下,促进H~3半乳糖的掺入,而葡萄糖的加入又抑制了 H~3半乳糖掺入到壁的各组分。  相似文献   

11.
The effects of exogenous kinetin, IAA, glucose (the component of cellulose) and galactose (one of tile inhibiting compounds of cellulose synthesis) on callus cell wall composition of China jute (Abutilon avicennae Gaertn) were investigated. When the China jute callus materials were treated with 2 mg/l IAA and H3-glucose, there was a 437% increase of the Ha-glucose, as compared with control. When galactose was added simultaneously with H3-glucose, there was a 138% increase of the H3-glucose as compared with control. Galactose inhibited H3-glucose incorporate content in cellulose, and also in pectin and hemicellulose. In the experiment with 10 mg/l kinetin treatment of the callus materials, when galactose was added, the incorporation H3-glucose was inhibited. It is interesting that the kinetin enhanced H3-galactose incorporation into all cell wall components. When it was added simultaneously with glucose, glucose inhibited H3-galactose into the cell Wall components. Results showed that the hormones effect cell wall component, not only concerned with hormones, but also concerned with exogenous monosaccharides. When exogenous monosacchrides were added to the culture medium (as galactose, glucose) in combination or respectively, they are quite different in effecting hormone induced China jute callus cell wall. When the callus was treated by IAA, galactose inhibited H3-glucose incorporation into cell wall components. When it was treated by kinetin, glucose inhibited H3-galactose incorporation into cell wall components.  相似文献   

12.
A novel Shigella strain (Shigella flexneri G3) showing high cellulolytic activity under mesophilic, anaerobic conditions was isolated and characterized. The bacterium is Gram negative, short rod shaped, and nonmotile and displays effective production of glucose, cellobiose, and other oligosaccharides from cellulose (Avicel PH-101) under optimal conditions (40°C and pH 6.5). Approximately 75% of the cellulose was hydrolyzed in modified ATCC 1191 medium containing 0.3% cellulose, and the oligosaccharide production yield and specific production rate reached 375 mg g Avicel(-1) and 6.25 mg g Avicel(-1) h(-1), respectively, after a 60-hour incubation. To our knowledge, this represents the highest oligosaccharide yield and specific rate from cellulose for mesophilic bacterial monocultures reported so far. The results demonstrate that S. flexneri G3 is capable of rapid conversion of cellulose to oligosaccharides, with potential biofuel applications under mesophilic conditions.  相似文献   

13.
Transparent and bendable regenerated cellulose films prepared from aqueous alkali (NaOH or LiOH)/urea (AU) solutions exhibit high oxygen barrier properties, which are superior to those of conventional cellophane, poly(vinylidene chloride), and poly(vinyl alcohol). Series of AU cellulose films are prepared from different cellulose sources (cotton linters, microcrystalline cellulose powder, and softwood bleached kraft pulp) for different dissolution and regeneration conditions. The oxygen permeabilities of these AU cellulose films vary widely from 0.003 to 0.03 mL μm m(-2) day(-1) kPa(-1) at 0% relative humidity depending on the conditions used to prepare the films. The lowest oxygen permeability is achieved for the AU film prepared from 6 wt % cellulose solution by regeneration with acetone at 0 °C. The oxygen permeabilities of the AU cellulose films are negatively correlated with their densities, and AU films prepared from solutions with high cellulose concentrations by regeneration in a solvent at low temperatures generally have low oxygen permeabilities. The AU cellulose films are, therefore, promising biobased packaging materials with high-oxygen barrier properties.  相似文献   

14.
Natural cellulose fibers have been obtained from the bark of cotton stalks and the fibers have been used to develop composites. Cotton stalks are rich in cellulose and account for up to 3 times the quantity of cotton fiber produced per acre. Currently, cotton stalks have limited use and are mostly burned on the ground. Natural cellulose fibers obtained from cotton stalks are composed of approximately 79% cellulose and 13.7% lignin. The fibers have breaking tenacity of 2.9 g per denier and breaking elongation of 3% and modulus of 144 g per denier, between that of cotton and linen. Polypropylene composites reinforced with cotton stalk fibers have flexural, tensile and impact resistance properties similar to jute fiber reinforced polypropylene composites. Utilizing cotton stalks as a source for natural cellulose fibers provides an opportunity to increase the income from cotton crops and make cotton crops more competitive to the biofuel crops.  相似文献   

15.
Toward exploiting the attractive mechanical properties of cellulose I nanoelements, a novel route is demonstrated, which combines enzymatic hydrolysis and mechanical shearing. Previously, an aggressive acid hydrolysis and sonication of cellulose I containing fibers was shown to lead to a network of weakly hydrogen-bonded rodlike cellulose elements typically with a low aspect ratio. On the other hand, high mechanical shearing resulted in longer and entangled nanoscale cellulose elements leading to stronger networks and gels. Nevertheless, a widespread use of the latter concept has been hindered because of lack of feasible methods of preparation, suggesting a combination of mild hydrolysis and shearing to disintegrate cellulose I containing fibers into high aspect ratio cellulose I nanoscale elements. In this work, mild enzymatic hydrolysis has been introduced and combined with mechanical shearing and a high-pressure homogenization, leading to a controlled fibrillation down to nanoscale and a network of long and highly entangled cellulose I elements. The resulting strong aqueous gels exhibit more than 5 orders of magnitude tunable storage modulus G' upon changing the concentration. Cryotransmission electron microscopy, atomic force microscopy, and cross-polarization/magic-angle spinning (CP/MAS) 13C NMR suggest that the cellulose I structural elements obtained are dominated by two fractions, one with lateral dimension of 5-6 nm and one with lateral dimensions of about 10-20 nm. The thicker diameter regions may act as the junction zones for the networks. The resulting material will herein be referred to as MFC (microfibrillated cellulose). Dynamical rheology showed that the aqueous suspensions behaved as gels in the whole investigated concentration range 0.125-5.9% w/w, G' ranging from 1.5 Pa to 105 Pa. The maximum G' was high, about 2 orders of magnitude larger than typically observed for the corresponding nonentangled low aspect ratio cellulose I gels, and G' scales with concentration with the power of approximately three. The described preparation method of MFC allows control over the final properties that opens novel applications in materials science, for example, as reinforcement in composites and as templates for surface modification.  相似文献   

16.
Adsorption of Cu(II), Ni(II) and Zn(II) on modified jute fibres   总被引:1,自引:0,他引:1  
The potential of a lignocellulosic fibre, jute, was assessed for adsorption of heavy metal ions like Cu(II), Ni(II) and Zn(II) from their aqueous solutions. The fibre was also used as adsorbent after chemically modifying it by two different techniques viz, loading of a dye with specific structure, C.I. Reactive Orange 13, and oxidising with hydrogen peroxide. Both the modified jute fibres gave higher metal ion adsorption. Thus, the dye loaded jute fibres showed metal ion uptake values of 8.4, 5.26 and 5.95 mg/g for Cu(II), Ni(II) and Zn(II), respectively, while the corresponding values for oxidised jute fibres were 7.73, 5.57 and 8.02 mg/g, as against 4.23, 3.37 and 3.55 mg/g for unmodified jute fibres. Adsorption isotherm models indicated best fit for Langmuir model for the modified jute fibres. The adsorption values decreased with lowering of pH. The desorption efficiency, regenerative and reuse capacity of these adsorbents were also assessed for three successive adsorption-desorption cycles. The adsorptive capacity was retained only when the caustic soda regeneration is carried out as an intermediate step after desorption. Possible mechanism has been given.  相似文献   

17.
50份长果黄麻种质资源耐盐性鉴定评价   总被引:1,自引:0,他引:1  
通过对来自不同国家的50份长果黄麻种质苗期耐盐性综合评价,评估不同黄麻种质耐盐特性,筛选黄麻耐盐极端材料,为进一步挖掘黄麻耐盐基因及分子机理研究准备材料。本研究采用水培法,设0、250 mmol/L Na Cl两个浓度对50份黄麻种质材料进行处理,调查盐处理后每份材料盐害指数的变化以及第8天的死亡率,建立盐害指数随时间变化的回归模型,利用回归方程分别求出每份材料盐害症状出现的时间以及盐害指数达到50%的时间,通过主成分分析、隶属函数法、聚类分析等方法对供试材料进行综合评价和耐盐性级别划分。结果表明,250 mmol/L Na Cl胁迫对于本试验是一个适宜的浓度;建立的50个回归方程拟合效果良好;根据对50份黄麻种质材料的综合评价值及聚类分析,可以将其分为4种耐盐类型,其中,高耐盐材料3份,耐盐材料6份,盐敏感材料10份,中度耐盐材料31份。  相似文献   

18.
Amplified fragment length polymorphism (AFLP) analysis was conducted to investigate the level of polymorphism in four jute genotypes including two genotypes (JRC 321 and CMU 010) of Corchorus capsularis (the white jute) and two genotypes (JRO 524 and PPO4) of Corchorus olitorius (the tossa jute). Out of 1024 primer combinations that were tried, as many as 281 combinations of selective primers (13 EcoRI and 64 MseI) were selected, which produced a total of 9092 amplicons, including 752 (8.3%) polymorphic bands in C. capsularis and a total of 8856 amplicons including 1477 (16.7%) polymorphic bands in C. olitorius. The average number of bands/primer combination was 32.3 for C. capsularis and 31.5 for C. olitorius. For C. capsularis, highest polymorphism of 56.6% was shown by primer combination E35M50, while for C. olitorius highest polymorphism of 50% was shown by E41M91. In C. olitorius, 30–50% polymorphism was observed with 27 primer combinations, but in C. capsularis only 3 primer combinations gave this level of polymorphism. Similarly, in C. capsularis <10% polymorphism was detected by 115 primer combinations while in C. olitorius, <10% polymorphism was shown by only 56 primer combinations. These results indicate a higher level of polymorphism in C. olitorius relative to that in C. capsularis. The occurrence of such a large number of polymorphic AFLP markers will facilitate preparation of molecular maps and QTL analysis in jute.  相似文献   

19.
Population structure and relationship analysis is of great importance in the germplasm utilization and association mapping. Jute, comprised of white jute (C. capsularis L) and dark jute (C. olitorius L), is second to cotton in its commercial significance in the world. Here, we assessed the genetic structure and relationship in a panel of 159 jute accessions from 11 countries and regions using 63 SSRs. The structure analysis divided the 159 jute accessions from white and dark jute into Co and Cc group, further into Co1, Co2, Cc1 and Cc2 subgroups. Out of Cc1 subgroup, 81 accessions were from China and the remaining 10 accessions were from India (2), Japan (5), Thailand, Vietnam (2) and Pakistan (1). Out of Cc2 subgroup, 35 accessions were from China, and the remaining 3 accessions were from India, Pakistan and Thailand respectively. It can be inferred that the genetic background of these jute accessions was not always correlative with their geographical regions. Similar results were found in Co1 and Co2 subgroups. Analysis of molecular variance revealed 81% molecular variation between groups but it was low (19%) within subgroups, which further confirmed the genetic differentiation between the two groups. The genetic relationship analysis showed that the most diverse genotypes were Maliyeshengchangguo and Changguozhongyueyin in dark jute, BZ-2-2, Aidianyehuangma, Yangjuchiyuanguo, Zijinhuangma and Jute 179 in white jute, which could be used as the potential parents in breeding programs for jute improvement. These results would be very useful for association studies and breeding in jute.  相似文献   

20.
A pancreatic lipase was immobilized on readily available and inexpensive jute and eggshell matrices. The purity of extracted enzyme was confirmed by SDS-PAGE. The maximum protein load for eggshell was 10.23 mg/g, and for jute, it was 5.7 mg/g. The free enzyme activity retention was greater than 80% for eggshell and 43% for jute. The immobilized lipase was stable over a pH range from 7 to 8 for eggshell and 7.5 to 8.5 for jute with over a temperature range from 25 to 45 °C for eggshell and 37 to 40 °C for the jute. FTIR data indicated new bonds on the jute upon immobilization. Although no new bond was observed, immobilization data on eggshell fit well with the Langmuir adsorption isotherm model. The model constants, Γmax and Kl, were 13.92 mg/g and 0.382 mL/mg, respectively. Mixed adsorption with both ionic and hydrophobic interactions was observed. Lipase adsorption was reduced significantly in presence of Tween 80, whereas the effect was less in case of ionic strength, pH and temperature. For both matrices, scanning electron microscopy (SEM) was used to demonstrate the changes in surface morphology after immobilization. The performance of eggshell was better than that of jute as a matrix for immobilizing pancreatic lipase.  相似文献   

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