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1.
纤维素在离子液体中的溶解特性研究   总被引:2,自引:0,他引:2  
测定了纤维素在不同结构的离子液体——1-烯丙基-3-甲基咪唑氯化物([AMIM]Cl)和1-丁基-3-甲基咪唑氯化物([BMIM]Cl)中的溶解度和溶解速率。结果发现:相同条件下,纤维素在[AMIM]Cl中具有较大的溶解度和较快的溶解速率;随着纤维素聚合度的增大,相同条件下,纤维素在离子液体中的溶解度降低。进一步通过WXRD、FT-IR、13C NMR和黏度法分析了溶解前后纤维素的化学结构、结晶结构和聚合度,结果表明:纤维素在离子液体中的溶解属于直接溶解,纤维素经离子液体溶解和再生后,晶型由纤维素I转变为纤维素II;溶解时间和温度对再生纤维素的聚合度有较大的影响,随着溶解时间的延长和溶解温度的提高,再生纤维素聚合度降低。  相似文献   

2.
岑翼南  赵斌  欧阳均 《化工学报》1957,8(2):152-163
<正>在黏液纤维制造中,用蔗渣浆代替木浆作原料,常被人怀疑甚至否定其可能性,其主要根据为草类纤维的形态结构不同於木材纤维,而以天然纤维的形态结构作为对原料适合与否的判断标准。我们认为:黏液丝浆的良好制备条件均应最大限度地破坏了天然纤维的形态结构,主要是细胞壁的组织。後者的存在影响丝光化与黄酸化的反应  相似文献   

3.
In this study, cellulose carbamate was synthesized from alkali cellulose and urea by a low-cost solid–liquid phase method. Cellulose carbamate was dissolved in cuprammonium solution to form a regenerated cellulose membrane with high strength and high transparency. The mass fraction of cellulose dissolved was greatly increased (up to 17%), and the thermal stability of cellulose was retained. The surface of the membrane is compact and there are regular microchannels in it. The factors influencing the transparency and mechanical properties of regenerated cellulose membrane were discussed by the range analysis of orthogonal experiment. The light transmittance is 95.50%, the breaking strength is 98.35 MPa, the elongation at break is 21.74%. The ability of heat preservation and moisture preservation of regenerated cellulose membrane was tested, and the effect was close to that of conventional polyethylene membrane. The membrane material has broad application prospects in packaging, food preservation, agriculture, and other fields.  相似文献   

4.
以微晶纤维素为原料,利用NaOH/尿素体系对微晶纤维素进行溶解,得到再生纤维素溶液。采用滴定悬浮的方法制备纤维素水凝胶球,采用2,2,6,6-四甲基哌啶-1-氧基自由基(TEMPO)/NaBr/NaClO选择性氧化体系对纤维素水凝胶球进行氧化处理,获得羧基化改性纤维素水凝胶球,冷冻干燥得到羧基化改性纤维素气凝胶球。研究结果表明:羧基化改性纤维素水凝胶球的含水量为95.64%,吸附4h,亚甲基蓝的吸附量达到6.97mg/g。对羧基化改性纤维素气凝胶球进行傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)表征分析,在1600cm-1处出现了CO的伸缩振动峰,TEMPO的选择性氧化对样品起到羧基化改性作用,羧基化改性纤维素气凝胶增加了球形气凝胶的表面通透性,内部仍呈现网络结构,羧基化改性纤维素气凝胶球的密度为0.038g/cm3。  相似文献   

5.
纤维素蒸汽闪爆改性前后的溶解性能及结构表征研究   总被引:1,自引:0,他引:1  
采用蒸汽闪爆技术对天然纤维素进行改性处理,对处理前后的纤维素进行了溶解度测试、SEM及X-射线衍射分析,研究表明,蒸汽闪爆破坏了纤维素分子内氢键,使改性后的天然纤维素在一定温度下可直接完全溶解于特定浓度的NaOH水溶液中,且适当润胀剂的加入也有利于纤维素在NaOH水溶液中的溶解。  相似文献   

6.
Regenerated cellulose membrane is a biomaterial obtained by activating, dissolving, solidifying, and regenerating cellulose powder using solvents of different polarities. It has the characteristics of high oxygen resistance and high strength. However, its low water vapor barrier and single function limit its application. In order to improve the water resistance of regenerated cellulose membranes and endow them with UV resistance, lignin was extracted from waste wheat straw using formic acid method. The extracted formic acid lignin (FAL) was added to the cellulose solution to prepare a series of regenerated lignocellulosic membranes (RC-FAL) with different lignin contents. The results indicate that lignin can not only improve the water vapor barrier, tensile strength, and water resistance of the film, but also enhance the oxygen barrier and UV absorption of the film. Compared with pure cellulose film, the contact angle of lignocellulose film can be increased by 66.2%, the UV absorption rate can reach 100%, and the oxygen transmission coefficient has no significant effect. In this paper, a new kind of biological packaging material with high oxygen resistance, strong ultraviolet absorption, and water resistance was prepared by recycling waste wheat straw, it has a broad application prospect in the industrial production of packaging materials.  相似文献   

7.
陆佳  刘伟  王欣  苏小红  范超 《化工进展》2020,39(9):3635-3642
以玉米秸秆为原料,通过碳化-磺化法制备了碳基固体酸(CSA),采用XRD、FTIR、XPS、SEM、阳离子交换与返滴定法等手段对其结构形貌进行表征,并考察了制备条件对固体酸表面活性基团含量与催化活性的影响。以NaOH/尿素冻融预处理后的纤维素为底物,研究了CSA催化纤维素水解糖化的效果与条件。结果表明:NaOH/尿素冻融预处理能够有效辅助固体酸催化纤维素水解,在350℃碳化2h、100℃磺化5h条件下制备的CSA催化性能最好,其酸量达3.94mmol/g,其中磺酸基、羧基、酚羟基含量分别为1.09mmol/g、1.36mmol/g、1.49mmol/g。在m(CSA)∶m(纤维素)=3∶1、水解温度200℃、水解时间为0.5h的条件下,纤维素水解还原糖得率与转化率分别为47.1%和63%。CSA循环利用3次催化活性下降不大。本研究可为废弃生物质原料制备的固体酸催化纤维素水解转化利用提供科学参考。  相似文献   

8.
水溶性改性细菌纤维素的制备及表征   总被引:2,自引:0,他引:2  
将细菌纤维素再生后溶于NaOH/尿素/硫脲溶液,在碱性条件下与丙烯酰胺合成水溶液的改性细菌纤维素。红外光谱、元素分析和核磁共振谱图证实了改性细菌纤维素的存在。研究表明:当葡萄糖与丙烯酰胺摩尔比大于1:4.6时,反应产物是水溶性的;当葡萄糖与丙烯酰胺摩尔比为1:8时,产物的羟基总取代度约为0.412-0.502.  相似文献   

9.
对玉米秸秆进行氢氧化钠/蒽醌(NaOH/AQ)去木质化预处理,考察了预处理温度、时间和NaOH用量对玉米秸秆脱木质素程度的影响,并探讨了脱木质素程度对提高预处理后物料酶解性能的影响。L9(34)正交试验得出较适宜预处理工艺条件为:温度160℃,时间60 min,NaOH用量(以绝干原料质量计)2.8%;其他条件为AQ用量0.05%,固液比1:5(g:mL),此时木质素脱除率为75%,酶解后聚糖转化率达到73.79%。随着物料脱木质素程度的提高,其酶解效率相应增加;当木质素脱除率达到一定程度后,预处理后的聚糖转化率达到最大值,继续提高木质素脱除率,聚糖转化率反而降低。响应面优化的酶水解工艺条件为纤维素酶用量30 FPU/g,β-葡萄糖苷酶10 IU/g,反应时间72 h,温度50℃,底物质量分数2.5%,此时还原糖得率为85.62%。对酶解液进行HPLC分析,酶解液中的葡萄糖质量浓度为14.83 g/L,木糖质量浓度为4.83 g/L。XRD分析显示,预处理前后纤维素的晶型没有变化,而结晶度由31.40%提高至46.91%,表明物料中木质素和半纤维素发生了不同程度的溶出。  相似文献   

10.
In this study, regenerated cellulose fibers reinforced by cellulose nanocrystals (CENC) and chitin nanocrystals (CHNC) were prepared by blending the nanocrystals suspensions with the cellulose solution in NaOH/urea/water solvent at room temperature. The effect of nanocrystals' addition on the properties of spinning dopes and regenerated fibers were investigated and compared. Results showed that the obtained CENC and CHNC had different dimensions, and both of them increased the viscosity and decreased the transparency of the spinning dopes. However, the dissolution state of cellulose was not changed. CHNC had a greater influence on the properties of spinning dopes, while CENC had more obvious effect on the performance of regenerated fibers. The CENC reinforced fibers showed a higher crystallinity index as compared to the CHNC reinforced fibers. The tensile strength of the regenerated fibers was evidently improved when 3 wt % CENC or 2 wt % CHNC were added, while the elongation at break of the fibers was slightly decreased with the increase of nanocrystals content. The morphology and thermal stability of the regenerated fibers was not affected by the addition of nanocrystals. This study suggested that the dimension, group and content of nanocrystals were important factors for the reinforcement of regenerated cellulose fibers. © 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017 , 134, 44880.  相似文献   

11.
采用氢氧化钠预处理甘蔗渣,通过单因素和正交试验考察了不同预处理条件对甘蔗渣酶解和发酵性能的影响,并进一步分析了比表面积和木质素含量对酶解性能的影响。结果表明:预处理温度、氢氧化钠质量分数及预处理时间对酶解和发酵效率影响较为显著,最佳的预处理条件为:温度85℃、时间11 h、NaOH质量分数4.5%,在此优化条件下预处理的甘蔗渣,含纤维素56.46%,与原料相比提高了46.16%;半纤维素20.30%、Klason木质素5.79%,与原料相比分别降低了15.77%和72.87%,酶解36 h的还原糖得率为0.69 g/g(以甘蔗渣质量计)。经过氢氧化钠预处理后的甘蔗渣比表面积显著增加(由原料的0.07 m2/g最大可增加到1.07 m2/g),木质素显著降低,有利于提高酶解和发酵效率。当比表面积超过0.30 m2/g时,酶解初始速率和酶解效率达到平衡;当木质素低于11%时,酶解效率达到平衡。  相似文献   

12.
采用碱/尿素/水体系、碱/尿素/硫脲/水体系分别制备纤维素溶液,在溶解的不同阶段用超声波进行处理,并利用光学显微镜、偏光显微镜和X射线衍射对溶解效果进行表征。研究结果表明:溶解之前对纤维素原料的超声波处理主要是对纤维形态结构和超分子结构的破坏,略微增大溶解度;溶解过程中对纤维素溶液超声波处理则可以强化润胀,促进分散,显著增大纤维素的溶解度;在碱/尿素/水体系中超声波对溶解的促进作用强于在碱/尿素/硫脲,水体系中。  相似文献   

13.
氢氧化钠/尿素/硫脲溶剂体系对纤维素溶解性能研究   总被引:11,自引:4,他引:7  
通过设计正交实验,研究不同组成的氢氧化钠/尿素/硫脲溶剂体系对纤维素的溶解性能,确定了该溶剂体系中各组分的最佳含量,并通过X-射线衍射分析、红外光谱分析、热重分析等手段,表征了该溶剂体系获得的再生纤维素膜的结构和性能。结果表明:该溶剂体系对纤维素有良好的溶解性能,且溶解的纤维素再生后为纤维素Ⅱ,但其热稳定性低于原纤维素。  相似文献   

14.
李智雄  李如燕  董祥  姜跃平  张松 《化工进展》2018,37(9):3484-3491
在静电纺丝制备出纤维素超细纤维(CSF)的基础上,利用马来酸酐(MAH)改性制备了新型羧基化吸附剂,接枝温度为100℃,时间为3h,MAH与CSF质量比为5:1,过氧化二苯甲酰(BPO)用量为7.5%时接枝效果最佳,取代基含量可达2.304mmol/g。通过SEM观察了纤维素超细纤维改性前后的形态分布和微观结构,通过酸碱滴定定量地测定了改性纤维素超细纤维(MAH-CSF)中的取代基含量,FTIR图谱分析定性地表明马来酸酐成功地接枝在了纤维素超细纤维上。从XRD和DSC谱图中得知MAH-CSF的晶型未发生变化但结晶度有所下降,马来酸酐改性提高了纤维素超细纤维的热稳定性。研究了CSF和MAH-CSF对亚甲基蓝的吸附性能,经马来酸酐改性后纤维素超细纤维对亚甲基蓝的吸附量从210mg/g提高到了306mg/g,这表明羧基化可极大地提高其对亚甲基蓝的吸附量。在低pH下,H+与亚甲基蓝间的竞染作用使得吸附剂的吸附量较小;随着吸附剂的去质子化,吸附量明显迅速增大;在pH大于5.5时吸附量增加趋势减缓。MAH-CSF与MB之间的离子交换作用使其具有更优良的吸附效果,吸附过程更适合用准二级动力学模型来描述。在超声波作用下吸附剂再生5次的吸附率达89%以上,这表明吸附剂具有很好的再生性。  相似文献   

15.
Artificial wood films containing cellulose, xylan, and lignin were easily prepared by the dissolution of wood components in 1‐ethyl‐3‐methylimidazolium acetate followed by reconstitution with distilled water. The composition and characteristics of wood films were highly controllable and predictable through the variation of the concentration of each component in the wood solution. The water vapor solubility of the wood films was increased when the xylan content was increased and the content of lignin was decreased. The biodegradability of the artificial wood films was investigated with cellulase from Trichoderma viride. The relative degradability of the wood film prepared with 5% cellulose and 5% lignin was 42%, whereas that of the wood film made with 5% cellulose and 5% xylan was 189%. The biodegradability of cellulose in the wood films correlated well with the content of xylan and lignin, and it was enhanced when the xylan content was increased and the content of lignin was decreased. © 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015 , 132, 42109.  相似文献   

16.
以羟甲基化木质素和纤维素为原料,NaOH/尿素水溶液为溶解体系,采用冷冻干燥法制备羟甲基化木质素/纤维素气凝胶粒子。采用扫描电子显微镜(SEM)、傅里叶变换红外光谱(FT-IR)仪、X射线衍射(XRD)仪、比表面积及孔径分析仪等对其结构进行了表征。研究结果表明:羟甲基化木质素分子通过氢键作用附着在纤维素骨架上,气凝胶内部仍保持三维网状结构,羟甲基化木质素的引入使得气凝胶表面出现明显收缩,网状结构的致密度随着羟甲基化木质素用量提高而逐渐降低;同时气凝胶粒子具有纤维素Ⅱ型红外吸收峰和XRD衍射峰;粒子表现出Ⅱ型吸附/脱附等温线,孔径均在15 nm以下,且随着羟甲基化木质素用量不断提高,比表面积、孔容均有所减小,HKL-4的比表面积为105.3m2/g,孔容为0.336 6cm3/g,孔径为13.67nm。吸附性能分析表明在25℃下吸附5 h,HKL-4气凝胶粒子对金胺O、亚甲基蓝和罗丹明B的吸附量分别为33.06、96.06和43.26mg/g,对亚甲基蓝的饱和吸附量可达208.7 mg/g,吸附过程更符合Langmuir等温吸附模型,主要为单分子层吸附。  相似文献   

17.
以去除半纤维素的速生杨木残渣为原料,在70℃下按固液比1:100(g:mL)加入1.5 mol/L过硫酸铵溶液,处理16 h制备纤维素纳米晶体。所得样品为白色粉末状固体,得率(以原料中纤维素质量计)为57%,氧化度为0.156,表面电荷为-42.15 mV。采用透射电子显微镜、傅里叶变换红外光谱、X射线衍射、核磁共振等技术对得到的纳米纤维素进行表征。结果表明:过硫酸铵去除了原料中的木质素和残余的少量半纤维素,并有选择地将纤维素C6位置上的伯醇羟基氧化成羧基,纤维素纳米晶体保留了原纤维素的结构特征,结晶度为77%,晶体结构以Iβ晶型为主,88.4%的纤维素纳米晶体宽度在10~24 nm之间。  相似文献   

18.
刘程  刘振  李龙飞  张世英  许爱荣 《化工进展》2018,37(5):1789-1794
生物质是来源丰富的可再生资源,去除生物质中的木质素是提高生物质的糖化发酵效率的关键。本文利用含NaOH的离子液体氯化1-烯丙基-3-甲基咪唑([Amim]Cl)溶液对玉米秸秆进行处理,从反应温度、反应时间和固液比3个方面研究其脱除木质素的效果,采用单因素实验和Box-Behnken中心组合实验对反应条件进行优化,对比分析处理前后的秸秆的组成和结构变化。结果表明:在反应温度86.8℃,反应时间1.48h,固液比1∶9g/mL时,处理后秸秆中纤维素含量达到83.69%,木质素含量为3.29%,木质素脱除率达81.73%,反应温度对纤维素含量影响最显著。本工作可为玉米秸秆的资源化利用提供参考。  相似文献   

19.
BACKGROUND: Currently, cellulose membranes are prepared by cellulose acetate hydrolysis or chemical derivatization dissolution and regeneration using cotton pulp or wood pulp. In this study, the concept ‘lignocelluloses biorefinery’ was used, and good quality long fiber was fractionated from wheat straw using clean technologies. The objective of this study is to develop wheat straw cellulose to prepare regenerated cellulose membrane with ionic liquid 1‐butyl‐3‐methylimidazolium chloride ([BMIM]Cl) as solvent. RESULTS: Wheat straw cellulose (WSC) fractionated from wheat straw contained 93.6% α‐cellulose and the degree of polymerization (DP) was 580. WSC was dissolved directly without derivatization in [BMIM]Cl. With increase in dissolving temperature, the DP of the regenerated cellulose dropped, which resulted in a decrease in the intensity of regenerated cellulose membrane. After regeneration in [BMIM]Cl, the WSC transformed from cellulose I to cellulose II, and the crystallinity of the regenerated cellulose was lower than the original cellulose. The regenerated WSC membrane had good mechanical performance and permeability, the tensile strength and breaking elongation were 170 MPa and 6.4%, respectively, the pure water flux was 238.9 L m?2 h?1 at 0.3 MPa pressure, and the rejection of BSA was stabilized at about 97%. CONCLUSION: Wheat straw cellulose fractionated from wheat straw satisfied the requirement to prepare regenerated cellulose membrane using ionic liquid [BMIM]Cl as solvent. Copyright © 2012 Society of Chemical Industry  相似文献   

20.
By using natural softwood pulp with higher degree of polymerization (DP = 1460) as cellulose source, 1-butyl-3-methylimidazolium chloride ([BMIM]Cl) ionic liquid as solvent and glycerol as plasticizer, a novel cellulose packaging film was prepared. The effects of plasticization conditions on the structures, mechanical properties, permeability for oxygen and water vapor were measured by Wide-angle X-ray scattering, thermogravimetric analysis, scanning electron microscopy (SEM), and other techniques. The investigations suggested that the glycerol concentration and plasticizing time had great effect on the properties of the regenerated cellulose films. The crystal transformation of cellulose I to cellulose II occurred during the dissolution and regeneration process, combining with the decrease of thermal stability. The tensile strength decreased rapidly with the addition of glycerol and prolongation of plasticizing time. However, elongation at break of the regenerated cellulose films increased at first and then decreased with increasing of glycerol concentration and plasticizing time. The morphologies for the fracture surface obtained from SEM images showed transformation of typical brittle fracture to plastic deformation with increasing of glycerol concentrations. It was also found that both water vapor permeability and oxygen permeability of the regenerated cellulose films decreased slowly with increasing of glycerol concentrations and plasticizing time, but water vapor permeability and oxygen permeability presented an almost opposite trend. The films prepared by using ionic liquid technology would be used in food packaging or other fields as a kind of green packaging material. © 2011 Wiley Periodicals, Inc. J Appl Polym Sci, 2012  相似文献   

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