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1.
本文研究了烯丙基葡聚糖和N、N'-亚甲基双丙烯酰胺经反相悬浮聚合包埋固定化脂肪酶的方法。考察了悬浮介质、交联度对固定化酶的影响,得出了包埋固定化脂肪酶的最佳条件;并测定了固定化脂肪酶的催化性能,确定了该固定化酶催化橄榄油水解的最适条件。  相似文献   

2.
固定化过氧化氢酶的制备及其抗氧化作用   总被引:1,自引:0,他引:1  
以烟用醋酸纤维的生物化学改性为目标,研究了以壳聚糖为载体时,吸附交联固定化过氧化氢酶的条件,并考察了固定化酶的性质。结果表明,固定化的最佳条件为:加酶量(酶活2×104C IU/m l)6m l,3%壳聚糖20m l,乙二醛浓度6%(w/v),交联剂用量100m l,吸附时间0.5 h,交联时间2.5h,酶活收率可达42.9%。过氧化氢酶固定化后,动学参数Km值为61.7mmol/L;对活性氧具有较好清除作用。  相似文献   

3.
聚马来松香乙二醇酯Cu(Ⅱ)配合物固定化漆树漆酶的研究   总被引:1,自引:0,他引:1  
制备了聚马来松香乙二醇酯(MEEP)Cu2 、Ni2 、Ca2 和Mg2 金属离子配合物,并分别以4种配合物为载体固定化漆树漆酶,初步探讨了反应时间对酶固定化的影响,考察了固定化酶的性质.实验结果表明,在反应温度为25℃条件下,漆树漆酶的最佳固定化时间为16h;MEEPCu2 配合物固定化酶的固定化结果较好,重复使用6次后,酶相对保留活力为55.0%;该固定化酶的最适作用温度为40℃,pH值范围为5.89~9.23,固定化漆树漆酶具有比游离酶更好的热稳定性和更广泛的pH值适用范围.  相似文献   

4.
以不稳定的Cu-金属有机骨架(Cu-MOF)为模板剂, 利用自组装模板法制备多级孔Zr-MOF, 再通过物理吸附法在多级孔Zr-MOF的介孔孔道中负载辣根过氧化物酶(HRP)构筑了HRP@Zr-MOF固定化酶反应器. 通过改变孔径调节剂苯甲酸(HBC)的浓度调控孔径大小, 研究了孔径对固定化酶反应器催化活性的影响; 考察了固定化体系缓冲溶液pH值、 固定化时间及温度对固定效果的影响. 以HRP催化降解结晶紫染料为模型反应, 探讨了HRP@Zr-MOF的操作稳定性和重复使用性. 结果表明, pH=3.0、 固定化时间为60 min、 固定化温度为30 ℃是固定化HRP的最佳条件, 固载量最高可达61.6 mg/g. 与游离酶相比, HRP@Zr-MOF固定化酶反应器表现出更好的热稳定性、 酸碱稳定性、 H2O2稳定性和储存稳定性; 重复使用10次后, HRP@Zr-MOF的催化活性仍能保持62.3%. 将HRP@Zr-MOF应用于实际水样中结晶紫染料的催化降解, 在5 min内降解率高达90%以上, 表现出非常高效的催化效率.  相似文献   

5.
分别以海藻酸钠和聚乙烯醇包埋活性污泥,以小球强度、粒径大小、成球难易为指标,定性确定包埋条件,以最佳包埋条件下制备的活性污泥固定化微球为吸附剂进行重金属铅溶液的吸附实验,研究了吸附条件对吸附效果的影响.结果表明,吸附平衡时间120 min;pH对吸附效果影响较大,pH 7时吸附效果最佳;最佳温度选择30 ℃.  相似文献   

6.
甲烷氧化菌素-铜配合物催化过氧化氢氧化对苯二酚   总被引:1,自引:0,他引:1  
为了探讨甲烷氧化菌素(Mb)-铜配合物(Mb-Cu)模拟过氧化物酶的可行性, 利用HP20大孔树脂、 Supelco LC-C18固相萃取和固定化金属亲和层析从甲基弯菌IMV3011中分离纯化得到Mb. 铬天青比色法显示Mb具有铜亲和性. 通过液相色谱-飞行时间质谱联用仪、 紫外光谱和荧光光谱对Mb结构进行了表征. 使用Mb-Cu配合物作为过氧化物酶模拟物, 利用紫外-可见分光光度法研究了Mb-Cu催化过氧化氢氧化对苯二酚的动力学. 考察了体系温度、 Mb-Cu添加量及过氧化氢浓度对催化反应的影响, 发现Mb-Cu符合生物催化剂条件影响的一般规律, 但比生物酶具有更高的热稳定性. 研究结果表明, Mb-Cu可作为催化氧化对苯二酚的过氧化物酶模拟酶.  相似文献   

7.
王艳  姚莉丽  周林  代珊 《应用化学》2008,25(4):489-0
研究了用海藻酸钠包埋、戊二醛交联法固定耻垢分枝杆菌(Mycobacterium Srnegmatis)生成乳酸氧化酶的最佳条件,比较了原酶与固定化酶的酶学性质.将1mL酶液和1 mL质量分数为3%的海藻酸钠溶液的混合液,用注射器滴加到20 mL0.2 mol/L.的CaCl2溶液中,25℃静置固化2 h后,过滤洗涤,将同体转移至20 mL质量分数为0.2%戊二醛溶液中37℃交联2 h后,过滤、洗涤和干燥得到球状同定化酶.固定化酶的活力回收率为39.8%.酶学性质研究表明,此固定化酶的热稳定性较好,游离酶在65 ℃保温l h酶蛋白完全变性失活,而固定化酶在65℃保温1 h仍可保持86%的酶活力;其最适酶促反应温度可由37℃升至55℃,最适反应pH=7.4保持不变;在不加保护剂的条件下,4℃放置50 d后游离酶仅保持40%以上的酶活力,而固定化酶能保持80%以上的酶活力.该固定化乳酸氧化酶用于催化氧化DL-乳酸生产丙酮酸,3 h后丙酮酸产率可达75%,连续循环使用5次固定化酶活力仍保持85%.  相似文献   

8.
制备了聚马来松香乙二醇酯(MEEP)Cu2 、Ni2 、Ca2 和Mg2 金属离子配合物,并分别以4种配合物为载体固定化漆树漆酶,初步探讨了反应时间对酶固定化的影响,考察了固定化酶的性质。实验结果表明,在反应温度为25℃条件下,漆树漆酶的最佳固定化时间为16h;MEEPCu2 配合物固定化酶的固定化结果较好,重复使用6次后,酶相对保留活力为55.0%;该固定化酶的最适作用温度为40℃,pH值范围为5.89~9.23,固定化漆树漆酶具有比游离酶更好的热稳定性和更广泛的pH值适用范围。  相似文献   

9.
过氧化氢酶在琼脂糖膜中的电化学研究   总被引:2,自引:0,他引:2  
用琼脂糖(Agarose)将过氧化氢酶(Cat)固定在热裂解石墨电极表面,制备了Cat-agarose膜修饰电极。包埋在琼脂糖中的过氧化氢酶可以与电极直接传递电子,在pH6.0的磷酸缓冲溶液中可得一对可逆的过氧化氢酶辅基血红素Fe(Ⅲ)/Fe(Ⅱ)氧化还原峰,式电势为-0.343V(vs.SCE)。其式电势随溶液的pH值增加而负移且呈线性关系,直线斜率为-36.8mV/pH,说明过氧化氢酶的电子传递过程伴随有质子的转移。紫外可见光谱、红外光谱表明,在琼脂糖膜中过氧化氢酶的构象保持不变。并研究了过氧化氢酶修饰电极对氧气、过氧化氢、一氧化氮的电催化性质。在16.5~278/μmol/L的范围内,催化电流与过氧化氢浓度呈线性关系;在2.75~20.76mmol/L的范围内,催化电流与亚硝酸根浓度呈线性关系。  相似文献   

10.
微胶囊固定化过氧化氢酶   总被引:5,自引:1,他引:5  
以乙基纤维素为膜材,用液中干燥法将过氧化氢酶微胶囊化,研究了温度和pH值对酶活性的影响及过氧化氢和尿素对固定化酶的抑制作用,由于乙基纤维素膜的保护,明胶对pH值的缓冲作用及明胶与尿素的反应,明显地扩大了酶对温度和pH值的适应性,降低了酶活性抑制剂的影响。  相似文献   

11.
The interaction between fullerene C60 and catalase enzyme was studied with a fullerene C60‐coated piezoelectric (PZ) quartz crystal sensor. The partially irreversible response of the C60‐coated PZ crystal sensor for catalase was observed by the desorption study, which implied that C60 could chemically react with catalase. Thus, immobilized fullerene C60‐catalase enzyme was synthesized and applied in determining hydrogen peroxide in aqueous solutions. An oxygen electrode detector with the immobilized C60‐catalase was also employed to detect oxygen, a product of the hydrolysis of hydrogen peroxide which was catalyzed by the C60‐catalase. The oxygen electrode/C60‐catalase detection system exhibited linear responses to the concentration of hydrogen peroxide and amount of immobilized C60‐catalase enzyme that was used. The effects of pH and temperature on the activity of the immobilized C60‐catalase enzyme were also investigated. Optimum pH at 7.0 and optimum temperature at 25 °C for activity of the insoluble immobilized C60‐catalase enzyme were found. The immobilized C60‐catalase enzyme could be reused with good repeatability of the activity. The lifetime of the immobilized C60‐catalase enzyme was long enough with an activity of 93% after 95 days. The immobilized C60‐catalase enzyme was also applied in determining glucose which was oxidized with glucose oxidase resulting in producing hydrogen peroxide, followed by detecting hydrogen peroxide with the oxygen electrode/C60‐catalase detection system.  相似文献   

12.
Magnetic Cu2+-chelated silica particles using polyacrylamide as a metal-chelating ligand was developed and used for the immobilization of laccase by coordination.The effect of pH and temperature on the enzymatic property of immobilized laccase and its catalytic capacity for pentachlorophenol(PCP) degradation were evaluated systemically.Compared with free laccase,the immobilized laccase showed improved acid adaptabihty and thermal stability.The immobilized laccase prepared in this work exhibited a good catalytic capacity for PCP removal from aqueous solutions.  相似文献   

13.
Mononuclear copper phthalocyanine (CuPc) and binuclear copper phthalocyanine (Cu2Pc2) were synthesized by the phenylanhydride-urea route, and their catalytic oxidation activity on 2-mercaptoethanol was studied. Based on the experimental results, a catalytic mechanism of Cu2Pc2 on 2-mercaptoethanol has been proposed. Furthermore, the effects of pH, Cu2Pc2 concentration, and temperature on the catalytic oxidation activity were evaluated. The results showed that CuPc has no catalytic activity, while Cu2Pc2 has high catalytic oxidation activity towards 2-mercaptoethanol with the optimal activity at pH 11. The reaction can further be enhanced by increasing Cu2Pc2 concentration and temperature, due to its endothermic characteristics.  相似文献   

14.
Arginase isolated from beef liver was covalently attached to a polyacrylamide bead support bearing carboxylic groups activated by a water-soluble carbodiimide. The most favorable carbodiimide wasN-cyclohexyl-Nt’-(methyl-2-p-nitrophenyl-2-oxoethyl) aminopropyl carbodiimide methyl bromide, but for practical purposes,N-cyclohexyl-Nt’-morpholinoethyl carbodiimide methyl tosylate was used. The optimal conditions for the coupling procedure were determined. The catalytic activity of the immobilized arginase was 290–340 U/g solid or 2.9–3.4 U/mL wet gel. The pH optimum for the catalytic activity was pH 9.5, the apparent temperature maximum was at 60°C and Kmapp was calculated to be 0.37M L-arginine. Immobilization markedly improved the conformational stability of arginase. At 60°C, the pH for maximal stability was found to be 8.0. The immobilized arginase was used for the production of L-ornithine and D-arginine.  相似文献   

15.
Polyvinylalcohol crosslinked with terephthaldicarboxaldehyde and was modified with 2-amino-4,6-dichloro-s-triazine. Optimum conditions for immobilization of catalase on modified and gelatine-coated modified polyvinylalcohol were investigated. Activity variations with respect to pH, temperature, stability behavior, andk m(appl) values were investigated for the native and immobilized catalases. Rate constants for H2O2 decomposition and for inactivation of immobilized catalase were determined using a discontinuous batch-type reactor. The influence of H2O2 concentration on the catalase inactivation was investigated.  相似文献   

16.
2-Amino-4-chloro-s-triazine, a derivative of DEAE-cellulose, and acrolein/styrene copolymer were used as supports for the immobilization of glucose oxidase and catalase after being modified with diaminohexane followed by glutaraldehyde. Immobilization was carried out with optimum glucose oxidase-catalase ratios. The activity variations of the immobilized dual-enzyme systems were investigated in relation to pH and temperature. Time-dependent gluconic acid production resulting from the oxidation of glucose was monitored in a recycling fluid-bed reactor. The deactivation rates of glucose oxidase and catalase were investigated according to the first-order reaction kinetics depending on the presence of the intermediate product H2O2.  相似文献   

17.
以介孔SiO2/Fe3O4磁性中空微球作为载体,采用物理吸附法对漆酶进行固定化,考察了时间、温度和pH值对漆酶固定化效果的影响,并对固定漆酶的活性及稳定性进行了研究.结果表明,介孔SiO2/Fe3O4磁性中空微球吸附漆酶分子后,介孔材料的比表面积与孔体积均减小.在3 h时复合微球对漆酶的吸附达到平衡,复合微球中介孔SiO2对漆酶的有效固定量为689 mg/g,大大高于纯介孔材料MCM-41的漆酶固定量(319 mg/g).在pH=3~6的条件下,复合微球中固定漆酶仍保持70%以上的相对酶活.当温度不高于60℃时,固定漆酶的相对酶活仍保持65%以上.固定漆酶的pH稳定性和热稳定性都明显优于游离漆酶,固定漆酶的米氏常数为1.05 mmol/L,与游离漆酶相比,固定漆酶与底物的亲和力有所降低.当2,4-二氯苯酚的浓度为10 mg/L时,固定漆酶对其去除率在6 h时达到81.6%,表现出很好的催化活性.  相似文献   

18.
The catalase (fromAspergillus niger) has been immobilized by a chemical method on the pous SiO2 modified with γ-aminopropyltrietoxysilane, followed with glutaraldehyde and by a physical method in alginate and γ-carrageenan gel. Optimum support:enzyme ratios and pH values were determined for modified SiO2 in a series of immobilization reactions of catalase in the presence of the crosslinking agent glutaraldehyde, and for alginate and γ-carrageenan in the presence of hemoglobin and bovine serum albimine. pH and temperaturedependent activity variations and the stability properties of immobilized catalase preparations were investigated. Rate constants for H2O2 decomposition and catalase deactivation were determined. The decomposition rate of H2O2 used in the cold pasteurizatioan of milk were investigated in a discontinuous batch type reactor system. Activity half-lives of immobilized catalase were determined.  相似文献   

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