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1.
将双醛纤维素纳米纤丝(DA-CNF)应用到木质素水凝胶的制备中,利用DA-CNF在水凝胶中的互穿网络作用以及醛基与碱木质素酚羟基发生缩合反应,从而达到增强木质素水凝胶强度的目的。傅里叶变换红外光谱(FT-IR)分析结果表明,聚乙二醇二缩水甘油醚(PEGDGE-500)以及DA-CNF与木质素发生了反应;扫描电子显微镜(SEM)分析结果表明,添加DA-CNF后,木质素水凝胶的结构呈多孔性;添加DA-CNF能够显著改善木质素水凝胶的物理强度、热稳定性和耐温耐盐性能,当DA-CNF添加量为2.0%时,木质素水凝胶拉伸应力由69 kPa提高至175 kPa,压缩应力由0.18 MPa提高至1.5 MPa,初始降解温度由209℃提高到248℃。DA-CNF增强的木质素水凝胶具有较高的耐温耐盐特性,在150℃、pH值=9的20万矿化度的盐水中老化20天后,其质量保留率仍可达86.4%,且具有较好的pH适应性。综上所述,DA-CNF增强的木质素水凝胶具有潜在的油田封堵应用潜力。  相似文献   
2.
采用铸膜法制备了一种羧甲基壳聚糖/氧化羧甲基纤维素/姜黄素(CMCHS/ OCMC/ CR)三元复合材料。红外光谱和扫描电子显微镜分析显示,复合膜断面结构均匀,无分层,但表面粗糙度有所增大。与不添加姜黄素相比,复合材料具有更好的断裂应力(20.10 MPa),断裂伸长率(18.97%),抗真菌性能(黑曲霉抑菌圈15.33 mm,青霉抑菌圈14.58 mm)和透水性(2.11×10-3 g·m-1·kPa-1·h-1)。草莓保鲜实验结果表明,CMCHS/OCMC/CR复合材料涂膜可减缓贮藏过程中的失重率和可滴定酸、可溶性固形物、还原糖含量的下降。经贮藏8 d,草莓失重率比较空白对照减少了11.38%,较阳性对照减少了1.27%,硬度,可滴定酸、可溶性固形物、还原糖含量的下降分别较空白对照减少了10.00%、42.72%、7.39%、9.32%,较阳性对照分别减少了5.54%、7.42%、2.39%、11.12%。因此CMCHS/OCMC/CR(1%, m/m)复合膜显示出良好护色和抑制霉菌生长的保鲜作用,可作为良好的涂膜抗菌材料应用于食品包装材料中。  相似文献   
3.
The effects of cellulose microfibres (CMFs, Average size: 100 ± 5 μm) and cellulose nanofibres (CNFs, Average size: 60 ± 3 nm) on the properties of myofibrillar protein (MP) gels from duck breast meat were studied. The results demonstrated that CMFs and CNFs were mostly connected to MP by non-covalent bonds, the diffusion and cross-linking of MP molecules was promoted, and a denser and more complete gel network was formed. With the increases of CMFs and CNFs concentration (0–10%), the hardness was increased by 13.15% and 19.78% for CMFs10% and CNFs10% gels, respectively, and the elasticity was increased by 40% and 80%, respectively. At the same concentration (0–10%), the increase in gel hardness, viscoelasticity and immobilised water content was greater in the CNFs-MP group than in the CMFs-MP group. The CNFs-MP group had a tighter gel network, and CNFs had a better potential to improve the gelation performance of MP.  相似文献   
4.
将磁性纤维素微晶复合物作为乳化剂稳定O/W型Pickering乳液,考察磁性纤维素微晶复合物添加量、油水比及均质次数对Pickering乳液的影响。结果表明:Fe3O4粒子的平均粒径约为10 nm,纤维素微晶经过Fe3O4修饰后平均长度约为14.2 μm,表面形态由光滑棒状转变为粗糙形态;纤维素微晶的傅里叶变换红外光谱表明在565 cm-1处出现Fe—O键的吸收峰;Fe3O4、纤维素微晶和磁性纤维素微晶复合物的接触角(θ)分别为46.67°、42.48°、69.58°;稳定Pickering乳液的最佳条件:磁性微晶复合物的添加量1.5 g/100 mL,油水比3∶7,均质次数2 次;磁性微晶复合物初始磁化强度值为56.8 emu/g,经5 次重复使用后磁化强度值降为4.2 emu/g。  相似文献   
5.
纳米纤维素及其在水性涂料中的应用研究进展   总被引:1,自引:1,他引:0       下载免费PDF全文
纳米纤维素具有高长径比、高结晶度、高杨氏模量、高强度等优点,加之其具有生物质材料的轻质、可降解及可再生等特性,使其成为一种改善水性涂料机械、光学、耐水等性能的优异选择。本文综述了纳米纤维素制备和改性方法,详细论述了纤维素纳米纤丝(CNF)和纤维素纳米晶体(CNC)对水性聚氨酯和水性丙烯酸涂料的性能改善机理及其应用研究进展。最后总结了纳米纤维素复合水性涂料研究现存的问题,并总结了未来的研究方向。  相似文献   
6.
An ecofriendly and biodegradable porous structure was prepared from drying aqueous foams based on nano fibrillated cellulose (NFC), extracted from softwood pulp by subcritical water/CO2 treatment (SC-NFC). The primary aim of this work was to use the modified SC-NFC as stabilizer for a water-based Pickering emulsion which upon drying, yielded porous cellulosic materials, a good dye adsorbent. In order to exploit the carboxymethylated SC-NFC (CMSC-NFC, with a degree of substitution of 0.35 and a charge density of 649 μeqv/g) as a stabilizer for water-based Pickering emulsion in subsequent step, an optimized quantity of octyl amine (30 mg/g of SC-NFC) was added to make them partially hydrophobic. A series of dry foam structures were prepared by varying the concentrations of treated CMSC-NFCs and 4 wt% was found to be the optimum concentration to yield foam with high porosity (99%) and low density (0.038 g/cc) along with high compression strength (0.24 MPa), superior to the conventionally extracted NFC. The foams were applied to capture as high as 98% of methylene blue dyes, making them a potential green candidate for treating industrial effluent. In addition, the dye adsorption kinetics and isotherms were found to be well suited with second order kinetics and Langmuir isotherm models.  相似文献   
7.
As the formaldehyde is one of the main indoor pollutants, the purpose of this study is to effectively remove indoor formaldehyde pollution by using environmentally friendly 3D printing ornaments. The wood 3D printing filaments cellulose/polylactic acid composite (Cellu/P) was selected as the starting material, and 3-aminopropyltriethoxysilane (APTES) was used for chemical modification to obtain a series of cellulose composite materials with amino groups. The modified composite materials (APTES@Cellu/P) were characterized by Fourier transform infrared, X-ray diffraction, scanning electron microscope, energy dispersive spectroscopy, thermogravimetric analysis, and mechanical tests, and a formaldehyde removal experiment was performed. The feasibility of 3D printing was evaluated, and the process of 3D printing-functionalized customized ornaments was proposed, and then a school emblem was used for modeling, printing, and surface modification. Compared with the commercially traditional activated carbon, 3D printing-customized ornaments of APTES@Cellu/P material has a better formaldehyde removal effect, and can even avoid the secondary pollution that is common to the activated carbon.  相似文献   
8.
The convenience of injectable hydrogels that can provide high loading of diverse phototherapy agents and further long-time retention at the tumor site has attracted tremendous interest in simultaneous photothermal and photodynamic cancer therapies. However, to incorporate the phototherapy agents into hydrogels, complex modifications are generally unavoidable. Moreover, these phototherapy agents usually suffer from low efficiency and work at different irradiation wavelengths outside the near infrared windows. Hence, a method for the fabrication of an injectable hydrogel for simultaneous photothermal therapy and photodynamic therapy, through the Schiff-base reaction between amido modified carbon dots (NCDs) and aldehyde modified cellulose nanocrystals is proposed. The NCDs act as both phototherapy agents and crosslinkers to form hydrogels. Significantly, the NCDs demonstrate an extremely high photothermal conversion efficiency of 77.6% which is among the highest levels for photothermal agents and a high singlet quantum yield of 0.37 under a single 660 nm light-emitting diode irradiation. The hydrogels are examined through in vitro and in vivo animal experiments which show nontoxic and effectively tumor inhibition. Thus, the strategy of direct reaction of phototherapy agents and the matrix not only provides new strategies for injectable hydrogel fabrication but paves a new road for advanced tumor treatment.  相似文献   
9.
The role of starch aerogel (St-AG) and carboxymethyl cellulose (CMC) as biolgical active compounds, when they subjected for complexation with metal ions, is assessed in this work. The complexation is carried out with palladium(II) and copper(II) ions, in solid state. Different tools of analysis are carried out to characterize and elucidate the structures of these complexes, namely: elemental analysis, IR, thermal analysis, magnetic measurement and molar conductance techniques. All synthesized complexes are formed with 1:2 (metal:ligand) stoichiometry except the case of aerogel starch 1:1 (Pd:starch). All isolated complexes show a satisfactory cytotoxic effect results against colon cancer cell lines HCT11. Additionally, these complexes are screened for their antibacterial activities against two types of Gram positive and negative bacteria. Molecular docking investigation confirmed the cytotoxicity and antibacterial results. Proton–ligands association constants and their complex formation constants with some bivalent metal ions, using potentiometric method show that the complexes formed in solution have a stoichiometry of 1:1 [metal:ligand]. The effects of metal ion, ionic radius, electronegativity and nature of ligand on the formation constants are discussed. The formation constants of the complexes with 3D transition metals followed the order Mn2+ < Co2+ < Ni2+ < Cu2+ > Zn2+.  相似文献   
10.
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