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1.
利用β-环糊精的包合性,制成香精微胶囊,将其添加到纤维素/离子液体(1-烯丙基-3-甲基氯代咪唑)纺丝原液中,采用湿法纺丝制得芳香纤维素纤维,利用扫描电镜技术分析了微胶囊的形态及其在纤维中的分布,并研究了芳香纤维素纤维的强力和留香性。  相似文献   

2.
采用包结络合法以β-环糊精为壁材,对茉莉香精进行微胶囊化工艺处理,赋予其缓释性,经试验获得最佳包结条件为:β-CD与茉莉香精的质量比为10∶3,β-CD的溶解温度80℃,包结温度为50℃,水溶液中的质量分数w(β-CD)、20%,pH值7.0。采用此工艺条件,可制得包埋率较高的微胶囊香精、  相似文献   

3.
以细菌纤维素为原料,N-甲基吗啉-N-氧化物为溶剂制得纺丝原液,在不同的凝固浴温度条件下,制备再生细菌纤维素纤维,对其形貌、结晶度、取向度、力学性能、吸湿保湿性等进行了研究.结果表明:随着凝固浴温度的提高,再生细菌纤维素纤维表面逐渐趋于光滑,且结晶度提高、取向度和断裂强度降低;凝固浴温度为0~45℃,再生细菌纤维素纤维...  相似文献   

4.
以分子包覆材料β-环糊精为囊材制备杜鹃花酸微胶囊包合物。通过正交实验确定了最佳工艺条件为:β-环糊精与杜鹃花酸的摩尔投料比为1︰2,包合时间为5 h,包合温度为70℃。制得的包合物最佳包合率为55.0%,载药量也达到43.6%;对β-环糊精杜鹃花酸微胶囊包合物与原杜鹃花酸进行了功效对比,其杜鹃花酸微胶囊包合物具有水溶性好、刺激性低等优点。  相似文献   

5.
两种咪唑型离子液体对纤维素的溶解及纺丝性能的比较   总被引:4,自引:2,他引:2  
以1-乙基-3-甲基咪唑醋酸盐([EMIM]Ac)和1-丁基-3-甲基咪唑氯盐([BMIM]CI)两种咪唑型离子液体为溶剂,研究比较了它们对纤维素的溶解性能及其溶液的纺丝加工性能。结果发现:两种离子液体均能在一定条件下溶解纤维素,但[EMIM]Ac较[BMIM]Cl对纤维素具有更低的溶解温度和更快的溶解速率。从流变分析还发现:纤维素/[EMIM]Ac溶液与纤维素/[BMIMCl溶液均为切力变稀流体,相同条件下纤维素/[EMIM]Ac溶液的黏度远低于纤维素/[BMIM]Cl溶液,使其可在相对低的温度下纺丝。此外,GPC分析结果表明:纤维素在用[EMIM]Ac溶解及纺丝过程中降解程度较小,而用[BMIM]Cl进行溶解纺丝时,降解作用则较明显。对纤维结构与力学性能的分析结果进一步表明:与相同喷头拉伸比下制得的[EMIM]Ac法再生纤维素纤维相比,[BMIM]Cl法再生纤维素纤维的聚集态结构相对较完善,结晶度与取向度更高些,从而使其力学性能也相对较好。  相似文献   

6.
以氯化1-丁基-3-甲基咪唑离子液体为溶剂对木质纤维素进行溶解并纺丝,得到再生纤维素纤维,再使用戊二醛对再生纤维素纤维进行交联改性,研究其交联改性条件对再生纤维素纤维力学性能的影响。结果表明:经戊二醛交联后,再生纤维素纤维的断裂强度有明显的提高;在戊二醛质量分数为4%,反应温度为50℃,反应时间为30 min的交联条件下,所得再生纤维素纤维的断裂强度为3.2 cN/dtex。  相似文献   

7.
利用磷酸水溶液直接溶解废旧棉织物制备纺丝液,并通过湿法纺丝制备力学性能良好的再生纤维素纤维,然后在其表面原位沉积聚吡咯,赋予其导电性能。最后,对所制得导电再生纤维素纤维的温度敏感性和电热性能进行了探究。当三氯化铁与吡咯的摩尔比为1∶1,沉积时间为48 h时,纤维电导率为566S/m,强力较沉积前提高了13%。导电再生纤维素纤维的TCR值为-0.245/℃,经过7次循环,电热性能无明显变化。导电纤维在3V下可升温至37℃,6V下可升温至110℃,经过9次循环其电热性能良好。  相似文献   

8.
探索了海藻酸钠和羟丙基-β-环糊精两种不同的壁材包覆桂花香精微胶囊的制备,并通过单因素实验优化了实验方案,得到了最佳制备工艺条件。海藻酸钠包覆香精微胶囊实验中,当海藻酸钠的用量1.2%,桂花香精用量6%,乳化剂用量0.1%时,制备出形态最佳,粒径大小为2.2mm,包覆率为19.03%的香精微胶囊。羟丙基-β-环糊精包覆香精微胶囊实验中,当羟丙基-β-环糊精用量为18%,桂花香精用量2%,包覆温度45℃时,制备出体系黏度最大、储能模量和损耗模量最大的微胶囊。最后,将不同壁材制备出的香精微胶囊按一定比例进行复配实验,通过感官评定确定了洗涤剂用香精微胶囊的最优配比为1∶4,此时感官分值为4.4分,并且形成了洗涤剂香精的缓释保护,实现了香精在洗涤后织物上的长效留香。  相似文献   

9.
β-环糊精包合玫瑰精油制备微胶囊香精的工艺研究   总被引:1,自引:1,他引:0  
考察了β-环糊精与玫瑰精油的比例、包合过程中的搅拌时间及包合温度等对留香效果的影响,将包合好的香精应用于洗衣粉中,模拟实际洗涤过程进行了留香实验;采用固相微萃取的方式测定不同时间时香精在顶空空间的浓度,并与原始的玫瑰精油进行了对比。实验表明,用包合好的微胶囊香精可以明显改善香精的留香效果;制备最为有效且经济的微胶囊的工艺为:β-环糊精与玫瑰精油的比例为6∶1,包合时间2 h,包合温度40℃。  相似文献   

10.
纺丝工艺对离子液体法新型纤维素纤维性能的影响   总被引:2,自引:1,他引:1  
以离子液体1-丁基-3-甲基咪唑氯盐([BMIM]C1)为溶剂,用干湿法纺丝制备了再生纤维素纤维,通过正交试验设计和系统试验,考察了气隙长度、喷头拉伸比、凝固浴浓度和凝固浴温度等工艺参数对制得的再生纤维素纤维的力学性能的影响,找出离子液体法新型纤维素纤维的最佳纺丝工艺。试验结果表明,对于该体系,纺丝工艺参数中凝固浴温度和拉伸比对纤维的拉伸强度、初始模量的影响最大,气隙长度对纤维断裂伸长影响最大。  相似文献   

11.
对纤维素在离子液体中的溶解、溶解机理、纺丝原液的性质、纺丝工艺及纤维性能等进行了综述,认为离子液体作为一种新型纤维素溶剂,具有溶解速度快、溶解度大、对纤维素降解程度小、溶剂回收简单、回收率高等特点,且再生的纤维素具有良好的光泽和力学性能。  相似文献   

12.
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   

13.
High‐performance regenerated cellulose fibers were prepared from cellulose/1‐butyl‐3‐methylimidazolium chloride (BMIMCl) solutions via dry‐jet wet spinning. The spinnability of the solution was initially evaluated using the maximum winding speed of the solution spinning line under various ambient temperatures and relative humidities in the air gap. The subsequent spinning trials were conducted under various air gap conditions in a water coagulation bath. It was found that low temperature and low relative humidity in the air gap were important to obtain fibers with high tensile strength at a high draw ratio. From a 10 wt % cellulose/BMIMCl solution, regenerated fibers with tensile strength up to 886 MPa were prepared below 22 °C and relative humidity of 50%. High strengthening was also strongly linked with the fixation effect on fibers during washing and drying processes. Furthermore, an effective attempt to prepare higher performance fibers was conducted from a higher polymer concentration solution using a high molecular weight dissolving pulp. Eventually, fibers with a tensile strength of ~1 GPa and Young's modulus over 35 GPa were prepared. These tensile properties were ranked at the highest level for regenerated cellulose fibers prepared by an ionic liquid–based process. © 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017 , 134, 45551.  相似文献   

14.
A novel cellulose solution, prepared by dissolving an alkali-soluble cellulose, which was obtained by the steam explosion treatment on almost pure natural cellulose (soft wood pulp), into the aqueous sodium hydroxide solution with specific concentration (9.1 wt %) was employed for the first time to prepare a new class of multifilament-type cellulose fiber. For this purpose a wet spinning system with acid coagulation bath was applied. The mechanical properties and structural characteristics of the resulting cellulose fibers were compared with those of regenerated cellulose fibers such as viscose rayon and cuprammonium rayon commercially available. X-ray analysis shows that the new cellulose fiber is crystallographically cellulose II, and its crystallinity is higher but its crystalline orientation is slightly lower than those of other commercial regenerated fibers. The degree of breakdown of intramolecular hydrogen bond at C3[Xam(C3)] of the cellulose fiber, as determined by solid-state cross-polarization magic-angle sample spinning (CP/MAS) 13C NMR, is much lower than other, and the NMR spectra of its dry and wet state were significantly different from each other, indicating that cellulose molecules in the new cellulose fiber are quite mobile when wet. This phenomenon has not been reported for so-called regenerated cellulose fibers.  相似文献   

15.
将经过酸化处理和十二烷基苯磺酸钠处理后的单壁碳纳米管(SWNTs)与离子液体和再生纤维素共混制得纺丝溶液,通过干湿法纺丝制得SWNTs/再生纤维素复合纤维.考察了SWNTs处理前后的结构及在离子液体中的分散性;研究了复合纤维的力学性能和热性能.结果表明:经酸化和功能化处理后的SWNTs的直径有所减小,SWNTs在离子液...  相似文献   

16.
A new dissolving process (two‐step dissolving process), that is, cellulose was first swelled to the maximum in aqueous 1‐butyl‐3‐methylimidazolium chloride ([BMIM]Cl) solution, and then dissolved by stirring under vacuum to remove excessive water, was developed to prepare the cellulose/[BMIM]Cl spinning dope with high quality. The results showed that the initial water contents in [BMIM]Cl have great influence on the swelling and dissolution of cellulose, and the suitable swelling range of aqueous [BMIM]Cl solution, in which cellulose can be swollen but not dissolved, was 2–5% water content. In this range, the higher water content in aqueous [BMIM]Cl solution, the more swelling time would be taken for cellulose to reach the maximal swelling ratio. Based on these results, cellulose/[BMIM]Cl spinning dopes were prepared by using two‐step dissolving process. In the range of our experiments, cellulose spinning dopes prepared by the two‐step dissolving process had better properties, such as fewer particles, lower apparent viscosity, and higher uniformity, compared with the direct dissolving process. By using this new dissolving process, the spinning performance of cellulose/[BMIM]Cl dopes was improved, and the mechanical properties of regenerated cellulose fibers were better than those prepared by the direct dissolving process. Therefore, it is a good way to prepare cellulose/[BMIM]Cl spinning dopes by using the new dissolving process. POLYM. ENG. SCI., 2012. © 2012 Society of Plastics Engineers  相似文献   

17.
介绍了热致变色再生纤维素纤维及织物的研制,研讨了热致变色材料对再生纤维素纤维纺丝溶液的熟成度、黏度和可纺性的影响,借助扫描电子显微镜对纤维结构形态进行了观测,对纤维力学性能进行了分析,讨论了加热时间、测试温度和洗涤次数对热致变色再生纤维素纤维织物的变色效果的影响。结果表明:热致变色微胶囊乳液的加入量对黏胶纺丝溶液的熟成度和黏度都有影响;纤维织物变色效果受加热时间影响相对较小,受温度影响较大。  相似文献   

18.
用浓硫酸水解竹浆、棉浆、木浆三种再生纤维素纤维,通过改变反应温度和时间,找出再生纤维素纤维水解葡萄糖得率最优的反应条件,并对不同种类的纤维素纤维水解液进行高效液相色谱分析。结果表明:当反应温度为50℃、反应时间为120 min时,竹浆再生纤维素纤维的葡萄糖转化率可达75%;在高效液相色谱中,竹浆再生纤维素纤维在7 min的位置有较明显的出峰,在12.5~14.5 min的位置有一个双峰,有别于木浆、棉浆再生纤维素纤维。  相似文献   

19.
In the present study, we focused on several factors affecting the utility of 1-butyl-3-methylimidazolium chloride (BMIMCl) for obtaining higher performance fibers. The dependence of the spinnability and tensile strength of the fibers on the zero-shear viscosity of the spinning solutions was investigated based on differences in the molecular weight of the cellulose, pulp concentration, and the pH of BMIMCl. We demonstrated an appropriate viscosity range of 2000–4000 Pa s−1 (100 °C) for spinning dopes to obtain good spinnability and high tensile strength. The pH of the BMIMCl and the molecular weight of the cellulose clearly impacted tensile strength. The high molecular weight of cellulose contributed to high mechanical properties of the regenerated cellulose fibers. Optimizing the molecular weight and concentration of the cellulose based on the appropriate viscosity allowed us to prepare high performance cellulose fibers with a tensile strength of 1.15 GPa and a Young's modulus of 42.9 GPa. © 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019 , 137, 48681.  相似文献   

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