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1.
以蘑菇为原料提取甲壳素,并制备壳聚糖。通过滴定法测定由蘑菇制备的壳聚糖的脱乙酰度,用乌氏黏度计测定了比浓黏度,并研究了制备工艺中加热温度和碱处理时间对它们的影响,计算了其产率;对以蘑菇为原料制取的甲壳素、壳聚糖的结构通过红外光谱进行表征。结果表明,在碱处理时间为24h、加热温度为100℃的条件下有较高的脱乙酰度;比浓黏度随着碱处理时间的延长、加热温度的增加都呈下降的趋势;壳聚糖产率为1.69%。制取的甲壳素、壳聚糖的红外光谱图表明,甲壳素在蘑菇中主要是以α-构型存在,α-构型甲壳素在浓碱中经过脱乙酰后生成β-构型的壳聚糖。  相似文献   

2.
水溶性甲壳素及其膜的制备与表征   总被引:4,自引:0,他引:4  
通过对高脱乙酰度壳聚糖进行均相乙酰化反应,制得脱乙酰度为51.7%的水溶性甲壳素,产物有很好的水溶性.通过红外光谱、X-射线衍射、差热分析等测试表征了水溶性甲壳素结构.结果表明,水溶性甲壳素的结构发生了较大变化,结晶性显著下降是导致水溶性增加的主要原因.  相似文献   

3.
鱿鱼顶骨β-甲壳素的化学反应活性及其与α-甲壳素的比较   总被引:2,自引:0,他引:2  
研究了由鱿鱼顶骨提取的β-甲壳素和β-壳聚糖分别对O-丙酰化(非均相反应)和N-乙酰化(均相反应)的反应活性,并与α-甲壳素/壳聚糖进行了比较,结果表明,β-甲壳素的反应活性比α-甲壳素差,β-甲壳素经水磨微纤化后,丙酰化反应活性虽然显著提高,但仍低于α-甲壳素,本文用偏光显微镜和电子显微镜首次观察到微纤化的β-甲壳素中可以分辨出4个层次的纤维状结构,它们分别是微纤束,微纤,细微纤和原纤,直径分别为10^1,10^0,10^-1,10^-2μm数量级,由于暴露出各次微纤上更多的自由羟基,从而微纤化提高了反应活性。  相似文献   

4.
草菇菌丝体中氨基酸和甲壳素的提取及鉴定   总被引:3,自引:0,他引:3  
草菇菌丝体中氨基酸和甲壳素的提取及鉴定刘佳铭(漳州师范学院化学系363000)甲壳素(Chitin)是自然界中含量仅次于纤维素的天然多糖[1]。国内外多数从虾、蟹、蛤等外壳提取甲壳素[2]。作者从草菇菌丝体中提取及鉴定氨基酸与甲壳素,结果令人满意。1...  相似文献   

5.
红外光谱与核磁共振波谱在甲壳素结构研究中的应用   总被引:13,自引:0,他引:13  
本文综述了红外光谱和核磁共振波谱在甲壳素和壳聚糖的乙酰度、衍生物的取代位置和取代度、晶体结构和结晶度以及构型和构象、与离子和其他分子间的相互作用等研究领域的应用状况,引用文献61篇。  相似文献   

6.
乙酰化甲壳素膜的制备及表征   总被引:4,自引:0,他引:4  
余家会  杜予民  郑化 《化学通报》2001,64(7):432-434,459
本文报道了加入二氯甲烷可使甲壳素的乙酰化反应更顺利进行,并提高了产物的乙酰化度,通过红外、X射线衍射分析、拉伸等方法对乙酰化甲壳素膜的结晶结构和力学性能作了表征和测定。  相似文献   

7.
纤维素/甲壳素共混膜的结构表征与抗凝血性能   总被引:20,自引:0,他引:20  
以 6wt %NaOH 4wt%尿素为纤维素的新溶剂 ,采用溶液共混法制备出纤维素 甲壳素共混膜 ,为甲壳素在碱性溶液中制膜提供了新的方法 .红外光谱、X 射线衍射、扫描电镜和力学性能、抗凝血性能测试结果表明 ,共混膜中甲壳素含量低于 4 0wt%时 ,纤维素与甲壳素分子间具有良好的相容性 ;在纤维素中引入适量甲壳素可提高共混膜的抗张强度 ,共混膜的干、湿态抗张强度在甲壳素含量 10wt%时最大 ,其值分别为 89 1MPa和 4 3 7MPa ,比纯态纤维素膜的干、湿态抗张强度分别提高了 6 7%和 11 5 % ;甲壳素的引入可明显降低血小板在共混膜表面的粘附、凝聚与变性 ,增大共混膜的抗凝血参数 ,甲壳素含量达到 5 0wt%时 ,该共混膜具有良好的抗凝血性能  相似文献   

8.
9.
3,4,5-三甲氧基苯甲酰甲壳素的制备与表征   总被引:1,自引:1,他引:1  
在甲磺酸体系中,将具有较好紫外吸收性能的3,4,5—三甲氧基苯甲酸分子键接到甲壳素的分子链上,制得了3,4,5—三甲氧基苯甲酰甲壳素。采用红外光谱、^1H-NMR、广角X—射线衍射、紫外光谱等表征方法对改性产物进行了结构表征。通过对改性产物的紫外光谱表征发现产物具有一定的吸收紫外线能力。产物在有机溶剂中有一定的溶解性能。  相似文献   

10.
TD粘结剂结构表征和性能研究   总被引:1,自引:0,他引:1  
林丽英  吴章宏 《结构化学》1995,14(5):430-435
本文采用红外光谱对一类由浮油沥青、木素混合液、菜油沥青、粗塔尔油4种下脚料与残渣DZ合成新型油类粘结剂-TD系列粘结剂进行结构表征。通过基团特征频率吸光度比值的统计分析,发现其比值与粘结剂主要性能之间存在着很好的相关规律。  相似文献   

11.
壳聚糖接枝丙烯酸制备高强吸水材料   总被引:11,自引:0,他引:11  
甲壳素(Chitin)年产量约为10-100亿吨,是仅次于纤维素(约为100亿吨)的第二大天然资源。开发利用这一自然资源宝库,具有十分重要的意义。甲壳素的脱乙酰化产物称为壳聚糖(Chitosan)。本工作对壳聚糖进行丙烯酸接枝改性,制得对蒸馏水吸水率大于800倍、吸自来水大于500倍,吸0.9%NaCl溶液吸液率130倍的吸液保液材料,该材料具有生物降解性,无环境污染,且制备工艺简单,成本低。  相似文献   

12.
甲壳素和壳聚糖在电化学分析中的应用进展   总被引:3,自引:0,他引:3  
甲壳素和壳聚糖特有的吸附、螯合作用的性质使其在电化学分析领域中应用广泛,本文对此进行了综述,着重介绍了甲壳素和壳聚糖修饰电极的制备、特点及其在痕量物质的测定、生物传感器等方面的应用,并对其研究前景进行了展望。  相似文献   

13.
A need exists for the development of totally biodegradable packaging materials. Chitosan is an under-utilized polymer which possesses many of the desired characteristics for this application. This article describes the crosslinking of chitosan fibers. Epichlorohydrin (ECH) was selected as a convenient base catalyzed crosslinking agent. The strength of chitosan fibers, especially wet tenacity, is improved by crosslinking. © 1992 John Wiley & Sons, Inc.  相似文献   

14.
Chitin and chitosan are well-thought-out multipurpose biopolymers. Chitosan which is deacetylated chitin is useful than chitin and is biomaterial of great interest. Regardless of its biodegradability, chemical modifications suggest due to the amino side reactivity, helps to impart it other great qualities. Herein, we discuss the preparative methods of synthetically modified derivatives, some are commercially available. This review shields the literature from last few decades.  相似文献   

15.
Chitosans with various degrees of deacetylation (D.D.), which were used as standard sample for FTIR determination, were prepared from completely deacetylated chitosan by homogeneous N-acetylation reaction. By combining four probable probe bands, i.e. 1655, 1560, 1380 and 1320 cm-1, eight probable reference bands, i.e. 3430, 2920, 2880, 1425, 1155, 1070, 1030 and 895 cm-1 and two baseline methods, the most suitable ratios Aprobe band/Aeterence band from IR spectra to determine the degree of acetylation of chitosan were evaluated from 48 combinations to be A1560/A2880, A1560/A2920 and A1655/A3430(A1560/A2880 is mostly recommended). The second baseline method, i.e. linking between adjacent two valleys, was better for measuring the absorbances of 1560 and 1655 cm-1 bands. The determination range of the D.D. (1%-100%) covered almost the whole range. The standard curves with A1560/A2880 and A1655/A3430 were also suitable for the determination of degree of substitution of other N-acylated chitosan, such as N-pr  相似文献   

16.
EDTA脱钙法制备甲壳素   总被引:5,自引:0,他引:5  
甲壳素的制备一般采用HCl脱钙,NaOH脱蛋白,两种化学品对甲壳素的分子链都有损害,而且能耗高,废弃物对环境污染较严重。本文用。EDTA替代HCl制备甲壳素,同等条件下所制得的甲壳素分子量高得多,其它各项综合性能指标均优,EDTA可回收,可减少环境污染。  相似文献   

17.
The sorption of Cu2+ ions by chitin and chitosan from aqueous solutions has been investigated, as well as the molecular structure of the complexes formed. The static exchange capacities have been determined, equal to 3.5 and 0.25 mmole/g for chitosan and chitin, respectively, and the partition coefficients (5000 and 70 g/ml). It has been shown that in complex formation a bond with the amino group is formed as the result of the substitution of a proton in the latter. The EPR spectra of these complexes have been obtained and their radiospectroscopic parameters determined (g = 2.334,g = 2.054,A = 0.0156 cm–1, andB = 0.0028 cm–1 for chitin, andg = 2.231,g = 2.048,A = 0.0192 cm–1, andB = 0.0025 cm–1 for chitosan). For chitosan the ligands are two nitrogen atoms of the amino groups and two oxygen atoms of the hydroxyl groups in the position C3 of adjacent glucosamine rings; for chitin, the oxygen atoms of the acetyl groups take part in addition in the complex formation. The analysis of the radiospectroscopic parameters and their comparison with published data lead to the conclusion that the Cu2+ complex with chitosan has a tetragonal symmetry, while the complex with chitin most probably has an octahedral structure.Institute of Physical Chemistry, Russian Academy of Sciences, 117915 Moscow. Translated from Izvestiya Akademii Nauk, Seriya Khimicheskaya, No. 10, pp. 2305–2311, October, 1992.  相似文献   

18.
CM-chitin and CM-chitosan films were successfully crosslinked by microwave treatment. Crosslinking of the microwave-treated CM-chitin films involved mainly the carboxylate and the secondary alcohol groups, while crosslinking of microwave-treated CM-chitosan films involved the carboxylate and the amino groups. In addition, the crystallinity of CM-chitin increased with increasing microwave treatment time, whereas an increase in the crystallinity of the microwave-treated CM-chitosan films was not observed. At a similar percentage of weight loss, the crosslinking of either CM-chitin or CM-chitosan films by microwave treatment required much less stringent condition when compared with the crosslinking by autoclave treatment. Based on both direct and indirect cytotoxicity assays, the cytotoxicity of the microwave-treated CM-chitin films was negative, while that of the microwave-treated CM-chitosan films was positive. Human fibroblasts adhered on the surface of microwave-treated CM-chitosan films much better than on the surface of microwave-treated CM-chitin films.  相似文献   

19.
The elastic moduli El of the crystalline regions of α‐chitin and chitosan in the direction parallel to the chain axis were measured by X‐ray diffraction. The El values were 41 GPa for α‐chitin, and 65 GPa for chitosan, respectively, at 20°C. The contracted skeletons of α‐chitin and chitosan are the key factor for the low El values compared with that (138 GPa) of cellulose I. The El value of α‐chitin was constant at 41 GPa both at −190°C and 150°C, which indicates that the molecular chain of α‐chitin is stable against heat within the temperature and stress range studied. © 1999 John Wiley & Sons, Inc. J Polym Sci B: Polym Phys 37: 1191–1196, 1999  相似文献   

20.
甲壳素,壳聚糖及其衍生物的应用   总被引:84,自引:2,他引:84  
随着甲壳素,壳聚糖及其衍生物研究的迅速发展,其研究内容和应用范围越来越广泛。从发展历史,性质,提取及加工方法,应用,发展前景几个方面对其进行简要评述。  相似文献   

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