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功能高分子是一类具有特殊用途的高分子材料 ,印迹高分子、敏感性水凝胶和固定化酶是三种较有特色的功能高分子材料。该文将对上述三种功能高分子材料以及它们在生化分离、生物催化、物质分析与检测以及药物控制释放中的应用做一介绍 ,同时也对它们的不足和发展前景进行了评述  相似文献   
3.
The lipase-catalyzed interesterification of oils and fats gives products that are unobtainable by chemical interesterification methods. Acidolysis of babassu fat and palmitic acid, catalyzed by immobilized lipase (Lipozyme; Novo Industri, Bagsveard, Denmark), was studied. The reactions were performed at 65°C with 5% w/w enzyme for 4 h. The molar proportions of babassu fat/palmitic acid were 1∶0.1, 1∶0.3 and 1∶0.5. At the end of the reaction period, the catalyst particles were removed by filtration, and the residual oil was extracted with organic solvent (diethyl ether). The recovered particles were then reused. The palmitic acid content of babassu fat before and after acidolysis changed from 10 to 22% at a molar proportion of 1∶0.5. The equilibrium was attained in about 4 h. The original water and enzymatic activities of Lipozyme were maintained after acidolysis. Water sorption isotherms of the immobilized enzyme were determined at 25, 35 and 45°C. From the temperature dependence of the isotherms, isosteric heats of sorption were evaluated by means of the Clausius Clapeyron equation. Monolayer moisture content was calculated by means of the B.E.T. and Guggenhein-Anderson-De Boer analyses. Paper presented at the International Meeting on Fats and Oils Technology, Universidade Estadual de Campinas, Brazil, 1991.  相似文献   
4.
Commercial immobilized lipases were used for the synthesis of 2‐monoglycerides (2‐MG) by alcoholysis of palm and tuna oils with ethanol in organic solvents. Several parameters were studied, i.e., the type of immobilized lipases, water activity, type of solvents and temperatures. The optimum conditions for alcoholysis of tuna oil were at a water activity of 0.43 and a temperature of 60 °C in methyl‐tert‐butyl ether for ~12 h. Although immobilized lipase preparations from Pseudomonas sp. and Candida antarctica fraction B are not 1, 3‐regiospecific enzymes, they were considered to be more suitable for the production of 2‐MG by the alcoholysis of tuna oil than the 1, 3‐regiospecific lipases (Lipozyme RM IM from Rhizomucor miehei and lipase D from Rhizopus delemar). With Pseudomonas sp. lipase a yield of up to 81% 2‐MG containing 80% PUFA (poly‐unsaturated fatty acids) from tuna oil was achieved. The optimum conditions for alcoholysis of palm oil were similar as these of tuna oil alcoholysis. However, lipase D immobilized on Accurel EP100 was used as catalyst at 40 °C with shorter reaction times (<12 h). This lead to a yield of ~60% 2‐MG containing 55.0‐55.7% oleic acid and 18.7‐21.0% linoleic acid.  相似文献   
5.
用海藻胶包埋紫草细胞,在紫草色素生产培养基M_9中,常温、黑暗下培养不同时间,收集培养液并提取色素,进行紫外—可见全波长分光光度扫描和TLC分析。结果表明:固定化紫草细胞可连续分泌紫草色素,其主要成分与天然成分基本相同,产量已达到一定水平。此外对海藻胶包埋条件、固定化珠粒的稳定性以及1L固定化植物细胞反应器生产紫草色素工艺进行了讨论。  相似文献   
6.
固定化微生物技术在废水处理中的应用   总被引:7,自引:0,他引:7  
通过对固定化技术方法以及不同载体选择的介绍,分析评价了固定化微生物在废水处理中应用研究进展。认为固定化微生物是一种比一般生物处理法更为高效的方法,并讨论了它在含毒重金属离子废水、有机废水、难降解废水、含磷含氮废水中的应用。研究表明:固定化技术的应用前景十分广泛,但在从实验室阶段走向废水处理的实际应用阶段上还存在一些问题。  相似文献   
7.
Rice bran oil containing 30–50% free fatty acid was continually converted to an oil containing more than 75% of triacylglycerol (TG) by means of immobilized lipase. The reaction was carried out at 60°C for 24 h with dehydration and reactant mixing by dry nitrogen flow under a positive nitrogen atmosphere. Enzymatic TG synthesis with evaporation by heating was not suitable because of the increasing peroxide value of the oil. Part of this article was presented at the annual meeting of the Japan Oil Chemists' Society at Sendai, Japan, October, 16, 1990.  相似文献   
8.
The biodegradation of di-n-butyl phthalate (DBP) using immobilized microbial cells was carded out in an internal airlift loop reactor with ceramic honeycomb supports. A strain that is capable of degrading DBP was isolated from the activated sludge and identified as Bacillus sp. using 16S rDNA sequential analysis. Bacillus sp. could be rapidly attached onto the ceramic honeycomb supports. The immobilized cells could effectively degrade DBP in batch and continuous experiments. When the influent concentration of DBP was 50mg·L^-1, the effluent DBP reached less than lmg.L i with 6h hydraulic retention time (HRT) in continuous experiment. The immobilized microbial cells could grow and accumulate through the biodegradation of DBP, and the rate of degradation is accordingly increased. The possible pathway of DBP biodegradation using immobilized cells was tentatively proposed.  相似文献   
9.
固定化细胞技术和基因工程技术在环境污染物治理领域是新兴技术。本文综述了近年来固定化细胞技术和基因工程技术在水环境污染治理中的研究及应用情况。通过固定化基因工程菌处理废水的一系列成功实验,表明了其在废水好氧反硝化等水环境污染治理中的广阔应用前景。  相似文献   
10.
新型细胞固定化载体强化白腐菌降解活性染料   总被引:1,自引:0,他引:1  
为提高白腐真菌的产酶能力和后续对染料的降解效果,采用摇瓶试验研究新型细胞固定化载体——聚氨酯泡沫固定化白腐真菌后的锰过氧化物酶(MnP)产生情况以及后续对活性染料——活性艳红K-2BP的降解效果.结果显示,新型载体固定化培养白腐真菌的5d脱色率为95%,比悬浮培养7d的脱色率高15%.固定化培养产生的MnP酶活为936.61U/L,而悬浮培养的MnP仅为269.52U/L,并且酶活高峰期提前4d.另外,固定化培养体系中碳、氮源的消耗比悬浮培养快很多,而且固定化培养使得白腐真菌具有较高的H2O2产量.因此,新型细胞固定化载体强化白腐真菌降解活性染料的原因应归于这种培养体系碳、氮源的快速消耗而带来的MnP酶活的提高和高H2O2产量.  相似文献   
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