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1.
以天然产物油菜秸秆纤维素粉作为基质,二甲基甲酰胺为交联剂,磷酸为修饰剂,制备了新型磷酸化油菜秸秆纤维素生物吸附剂。用红外光谱、透射电子显微镜及X射线光电子能谱,对油菜秸秆纤维素和磷酸化油菜秸秆纤维素吸附剂进行表征。研究了油菜秸秆纤维素粉改性前后对溶菌酶的吸附,包括吸附溶液的pH值、溶菌酶的初始浓度、吸附时间、温度及NaCl的浓度等因素对吸附的影响。结果表明,在温度25℃,pH值7.4,吸附时间10h的条件下,磷酸化油菜秸秆纤维素粉微球对溶菌酶的吸附容量为451.71 mg·g-1,而未修饰油菜秸秆纤维素粉微球对溶菌酶的吸附容量只有332.43mg·g-1。在优化条件下用修饰吸附剂从鸡蛋清中分离纯化溶菌酶,纯化倍数为19.8,收得率为51.3%。  相似文献   

2.
通过4步化学反应对磁性Fe3O4@Si02纳米粒子进行化学修饰,设计和制备了一种N,N’-二(5-四唑亚甲基)胺修饰的金属螯合磁性纳米粒子.用X射线光电子能谱(XPS)、Zeta电位对该新型吸附剂进行了表征.用静态吸附法研究了螯合Cu(Ⅱ)吸附剂对溶菌酶、细胞色素C和α-糜蛋白酶的吸附性能以及溶液pH值、盐浓度、蛋白初始浓度对吸附量的影响.结果表明,吸附剂对蛋白质的吸附主要通过金属配位机理进行,且符合Langmuir吸附模型,对溶菌酶、细胞色素C和α-糜蛋白酶的最大吸附量分别20.0、13.5和17.9 mg/g.此外,将螯合Cu(Ⅱ)吸附剂用于混合蛋白质样品的吸附,发现此吸附剂对混合蛋白质样品中的溶菌酶具有选择性吸附作用,说明此金属螯合吸附剂在蛋白质选择性分离富集中具有一定应用价值.  相似文献   

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用乙二醇为溶剂,三氯化铁和尿素为起始反应试剂,柠檬酸为粒子表面修饰剂,通过一步溶剂热法制备Fe3 O4纳米粒子,然后以一定浓度配比的Na2 SO4与NaOH混合液为沉淀剂,通过沉淀聚合法制备Fe3 O4/壳聚糖复合纳米粒子吸附剂。利用X射线衍射仪(XRD)、红外光谱(IR)、透射电子显微镜(TEM)和物理特性测试仪(PPMS)表征样品的结构、形貌和磁性能,并使用原子吸收分光光度计(AAS)评价吸附剂对Pb2+的吸附去除性能。结果表明,Fe3O4/壳聚糖复合纳米粒子吸附剂是由磁性Fe3O4纳米球形粒子和鱼卵状壳聚糖纳米粒子聚集体复合而成,该吸附剂对Pb2+有很好的吸附去除性能,它对Pb2+的等温吸附线符合Langmuir模型,在温度298k和pH值5时,吸附剂对Pb2+的饱和吸附量为105.5mg/g。  相似文献   

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采用化学共沉淀方法合成了柠檬酸化β-环糊精(CA-β-CD)修饰的水基磁流体。运用红外光谱(FTIR)、透射电子显微镜(TEM)、热重分析(TGA)、X射线衍射(XRD)和振动样品磁强计(VSM)对其结构、形貌、组成成分和磁性能进行了表征。结果显示,磁流体粒子分散性良好,粒径分布在(7±2)nm范围;磁流体具有超顺磁性,CA-β-CD修饰前后的饱和磁化值分别为62和43 A·m2/Kg。将磁流体用于染料中性红(NR)的吸附,考察了吸附时间、NR初始浓度及溶液pH值对吸附作用的影响。结果显示,磁流体在中性条件下对NR的吸附效果最佳,最大吸附量为244 mg/g,吸附效率最高可达99.8%。  相似文献   

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在以共沉淀法制备的磁性纳米Fe3O4粒子(Magnetic nanoparticles, MNP)表面进行了化学修饰, 制备了一种新型富含羧基功能团的核壳磁性纳米吸附剂(Carboxylic functionalized Fe3O4 magnetic nanoparticles, CMNP). 利用透射电子显微镜(TEM)、 X射线衍射仪(XRD)、 X射线能量色散谱(EDS)、 振动样品磁强计(VSM)、 傅里叶变换红外光谱(FIIR)和热重分析仪(TGA)对CMNP的形貌、 结构、 化学组成和磁性能进行了表征, 并考察了吸附剂对Cu2+的吸附性能, 研究了溶液pH值、 吸附时间和Cu2+初始浓度对吸附性能的影响. 结果表明, 羧基化核壳磁性纳米Fe3O4颗粒的平均粒径为15 nm, 具有良好的超顺磁性, 饱和磁化强度为41.84 A·m2/kg, 在10 min中内可达到吸附平衡, 在pH=7.0时吸附量最高, 吸附等温数据符合Langmuir模型, 饱和吸附量qm= 43.48 mg/g.  相似文献   

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采用改进的Hummers法制备了氧化石墨烯,用水热法首次制备了Fe_3O_4/GO/PPy(聚吡咯)三元复合粒子用于处理含2-硝基-1,3-苯二酚(NRC)的废水,研究了其对水中NRC的吸附性能。采用紫外-可见吸收光谱(UV-Vis)、透射电子显微镜(TEM)、傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)、振动样品磁强计及ζ电位等对所制备复合粒子的结构进行了表征;研究了溶液pH值、吸附剂用量、NRC的初始浓度、吸附时间和温度对吸附NRC的吸附性能的影响,并对吸附过程进行了吸附动力学模拟。结果表明:制备的Fe_3O_4/GO/PPy复合材料为层状分散结构,PPy及Fe_3O_4颗粒无规则地镶嵌在石墨烯片层之间。Fe_3O_4颗粒为多面体晶体结构,尺寸为100~300 nm。Fe_3O_4/GO/PPy具有超顺磁性,40 s可以磁分离,NRC移除率达91.6%;在NRC浓度为200 mg·L~(-1)、pH=5±0.05、温度T=318 K、吸附剂用量10 mg·L~(-1)和吸附时间6 h的条件下Fe_3O_4/GO/PPy对NRC的吸附量最大,达到163.3mg·g~(-1)。NRC吸附动力学符合二级动力学模型,吸附等温线符合Langmuir模型。循环使用5次后,NRC的移除率由最初的91.6%下降至77.6%,说明Fe_3O_4/GO/Ppy磁性复合物的结构具有较好的稳定性,且可以再重复利用。  相似文献   

7.
层层自组装修饰磁性纳米粒子及蛋白质吸附研究   总被引:1,自引:0,他引:1  
采用层层自组装技术将聚天冬胺酸和聚乙二胺修饰到磁性纳米粒子表面上, 并研究了修饰后的磁性纳米粒子的zeta电势变化和对蛋白质的吸附. 先通过化学共沉淀的方法获得了四氧化三铁磁性纳米粒子, 然后利用层层自组装的方法对纳米粒子进行了修饰. 用TEM表征了纳米粒子的尺寸. 用红外光谱表征了修饰过程中磁性纳米粒子表面组成的变化情况. 研究了修饰过程对磁性纳米粒子的zeta电势的影响. zeta电势的正负和大小与表面连接的分子的带电性质有关. 磁性纳米粒子的等电点接近中性. 聚天冬胺酸修饰的磁性纳米粒子的Zeta电势为负值. 在聚乙二胺溶液的pH=11时获得的双层修饰的磁性粒子的等电点接近9, 并且等电点随聚乙二胺溶液的pH的减小而减小. 结果也表明在pH=7.4时具有不同表面电荷的磁性纳米粒子通过静电作用选择性地吸附蛋白质.  相似文献   

8.
本研究以菹草为原料,采用化学共沉淀方法制备Fe_3O_4/菹草磁性纳米材料并应用于刚果红染料的吸附实验中。探究了pH、吸附时间、吸附剂用量、温度四个因素对吸附效果的影响。研究结果表明:该材料吸附刚果红的最佳条件为初始浓度为20 mg·L~(-1)时,pH值为5,吸附剂投加量0.2 g,吸附时间4 h及温度为30℃;在最佳吸附条件下,其对刚果红去除效率远远高于商业活性炭,吸附率达到96.8%,吸附量为4.84 mg·g~(-1),为商业活性炭的1.91倍。该新型材料原料易得、制备简单、绿色高效、易于回收,在有机废水的治理中将具有潜在的应用前景。  相似文献   

9.
参照文献方法合成了BSA修饰的水溶性发光金纳米粒子,并考察了其与溶菌酶之间的相互作用.依据溶菌酶对金纳米粒子的发光增强现象,建立了测定溶菌酶的荧光新方法.考察了发光金纳米粒子的浓度、pH值、反应时间及共存物质对测定的影响.优化条件为:发光金纳米粒子浓度4.0×10(-6)mol/L,pH 7.0、反应时间10 min....  相似文献   

10.
利用j嗪染料辛巴蓝F-3GA修饰经戊二醛交联的啤酒废酵母菌,得到一种新型染料亲和吸附剂.辛巴蓝F-3GA的固载量为161.1 mg/g.以溶菌酶为研究对象,考察吸附时间、酶初始浓度、pH值、离子强度等因素对吸附率的影响.结果表明:当pH=7.0时,其对溶菌酶有较高的吸附量(229.1 mg/g),吸附性能明显优于未接枝...  相似文献   

11.
Three chiral compounds were successfully separated in a short time with two enantiomer separation models on packed-capillary electrochromatography (CEC). (i) 75 μm I.D. capillaries were packed with 5 μm β-cyclodextrin (β-CD) chiral stationary phase (CSP). Effects of voltage, pH and concentration of organic modifier on electroosmotic flow (EOF) and chiral separations were investigated systematically. Enantiomers of a neutral compound (benzoin) and a neutral drug (mephenytoin) were separated within a short time with high efficiency. Efficiency of 32 000 theoretical plates per meter and resolution (R_s) of 1.42 were achieved for enantiomers of benzoin using a βCD packed column with 6.2 cm packed length. Efficiency of 45 000 theoretical plates per meter and R_s of 3.40 were obtained for enantiomers of mephenytoin. Especially, the enantiomer separation of mephenytion was performed in just 3.4 min with R_s of 2.60. (ⅱ) 75 μm I.D. capillary was packed with octadecylsilica particles (ODS). Chiral separat  相似文献   

12.
The regioselectivity of the oxidation of three monosubstituted olefins, 6-phenoxyhex-1-ene, hex-1-ene and styrene, by iodosobenzene in the presence of various Fe-, Mn- or Cr-tetraaryl-porphyrins, was studied. It was found that, besides epoxides, known products from such systems, allylic alcohols and aldehydes were formed, the latter not being derived from the corresponding epoxides. The relative importance of these reactions greatly depends upon both the metal and porphyrin constituents of the catalyst. More particularly, the competition between epoxidation and allylic hydroxylation can be efficiently controlled by non-bonded interactions between the olefin and porphyrin substituents. No hydroxylation of the aromatic rings and no oxidative dealkylation of the ether function was detected.  相似文献   

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A glycosynthase approach was attempted to glycodiversify macrolide antibiotics, using DesR, a family-3 retaining beta-glucosidase involved in the self-resistance mechanism of methymycin production. STD-NMR was used to probe enzyme-substrate interactions. Analysis of competitive STD-NMR experiments between erythromycin A and a chromogenic substrate (pNP-beta-d-glucose) with the hydrolytically inactive nucleophile mutants led us to discover a family of unprecedented glycosidase inhibitors. Analysis of kinetic data with wild-type DesR determined that erythromycin is a competitive inhibitor of the glucosidase (IC50 = 2.8 +/- 0.3 microM and Ki = 2 +/- 0.2 microM) with respect to the hydrolysis of pNP-beta-d-glucose. Comparable inhibitory data was obtained for clarithromycin; however, the inhibitory effect of azithromycin was weak and no significant inhibition was observed with methymycin or d-desosamine. This report documents significant inhibition of glycosidases by macrolide antibiotics and provides insight into the design of novel glycosidase inhibitors based on the macrolactone ring of macrolide antibiotics.  相似文献   

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Metallo-beta-lactamases are zinc-dependent enzymes responsible for resistance to beta-lactam antibiotics in a variety of host bacteria, usually Gram-negative species that act as opportunist pathogens. They hydrolyze all classes of beta-lactam antibiotics, including carbapenems, and escape the action of available beta-lactamase inhibitors. Efforts to develop effective inhibitors have been hampered by the lack of structural information regarding how these enzymes recognize and turn over beta-lactam substrates. We report here the crystal structure of the Stenotrophomonas maltophilia L1 enzyme in complex with the hydrolysis product of the 7alpha-methoxyoxacephem, moxalactam. The on-enzyme complex is a 3'-exo-methylene species generated by elimination of the 1-methyltetrazolyl-5-thiolate anion from the 3'-methyl group. Moxalactam binding to L1 involves direct interaction of the two active site zinc ions with the beta-lactam amide and C4 carboxylate, groups that are common to all beta-lactam substrates. The 7beta-[(4-hydroxyphenyl)malonyl]-amino substituent makes limited hydrophobic and hydrogen bonding contacts with the active site groove. The mode of binding provides strong evidence that a water molecule situated between the two metal ions is the most likely nucleophile in the hydrolytic reaction. These data suggest a reaction mechanism for metallo-beta-lactamases in which both metal ions contribute to catalysis by activating the bridging water/hydroxide nucleophile, polarizing the substrate amide bond for attack and stabilizing anionic nitrogen intermediates. The structure illustrates how a binuclear zinc site confers upon metallo-beta-lactamases the ability both to recognize and efficiently hydrolyze a wide variety of beta-lactam substrates.  相似文献   

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DNA damage was investigated in the presence of sulfite, dissolved oxygen and cobalt(II) complexes with glycylglycylhistidine, glycylhistidyllysine, glycylglycyltyrosylarginine and tetraglycine. These studies indicated that only Co(II) complexed with glycylglycylhistidine (GGH) induced DNA strand breaks at low sulfite concentrations (1-80 microM) via strong oxidants formed in the reaction. In the presence of the other complexes, some damage occurred only in the presence of high sulfite concentrations (0.1-2.0 mM) after incubation for 4 h. In the presence of GGH, Co(II) and dissolved O2, DNA damage must involve a reactive high-valent cobalt complex. The damaging effect was increased by adding S(IV), due to the oxysulfur radicals formed as intermediates in S(IV) autoxidation catalyzed by the complex. SO3 -, HO and H radicals were detected by EPR-spin trapping experiments with DMPO (5,5-dimethyl-1-pyrroline N-oxide). The results indicate that Co(II) binds O2 in the presence of GGH, and leads to the formation of a DMPO-HO adduct without first forming free superoxide or hydroxyl radical, supporting the participation of a reactive high-valent cobalt complex.  相似文献   

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