首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 180 毫秒
1.
从铜绿假单胞菌发酵液中提取纯化鼠李糖脂生物表面活性剂. 用高效液相色谱-电喷雾质谱法(HPLC-ESI-MS)对鼠李糖脂提取物的组成进行了测定. 用临界胶束浓度(CMC)分析了pH值对其表面活性的影响, 用微乳液滴粒径和灼电位考察了pH值对鼠李糖脂/正庚烷/硼砂缓冲液微乳体系微结构的影响. 结果表明, 在弱碱性条件下(pH7.5-9.5), pH的变化对鼠李糖脂的表面活性和微乳微结构均有显著影响. pH小于9.0时, CMC随着pH的升高而降低, 在pH 9.0处达到最低. pH大于9.0时, CMC随着pH值的升高而逐渐升高. 这是氢键和极性头基间的静电排斥力共同作用的结果. 微乳液滴的粒径及灼电位绝对值都随pH值的升高呈增大趋势, 只在pH 9.0处例外. 少量十二烷基硫酸钠(SDS)或正丁醇的加入都使微乳粒径明显增大.  相似文献   

2.
电喷雾质谱法分析假单胞菌的代谢产物鼠李糖脂   总被引:3,自引:0,他引:3  
采用电喷雾质谱(ESI-MS)结合碰撞诱导解离(CA)技术,分析了假单胞菌BS-03,利用甘油产的鼠李糖脂提取物。根据一级和二级质谱图确定了提取物中存在23种鼠李糖脂组分,主要由4种物质(RhC10、RhC10C10、Rh2C10和Rh2C10C10)构成,其中前3种的丰度较高也较平均。该提取物中单鼠李糖脂的含量高于双鼠李糖脂,并且双鼠李糖脂的二级质谱图中普遍存在强度较高的m/z为205、247的特征碎片离子,而单鼠李糖脂中却不存在此特征碎片离子。  相似文献   

3.
一种细菌糖脂的化学结构和物化性能   总被引:1,自引:0,他引:1  
从土壤中分离得到一支假单孢菌, 当它生长在正烷烃或植物油中时分离得到两个具有表面活性的体外糖脂, 用柱层析及制备薄层层析得以纯化, 样品经负离子化学电离质谱、快原子轰击质谱以及^1H和^1^3C核磁共振谱鉴定其结构为鼠李糖脂1和2; 它们都具有降低表面张力、水与十六烷之间的界面张力, 以及良好的乳化性、发泡性及增溶性.  相似文献   

4.
利用高分离度液相色谱-四极杆飞行时间质谱(RRLC-Q-TOF MS)和超高效液相色谱-三重四极杆质谱(UPLC-QQQ MS)定性定量分析了稀有原人参二醇型皂苷Rd, F2, Rg3, CK和Rh2在离体人肠道菌群中的生物转化过程. 并将上述二醇型皂苷与人肠道菌群在体外厌氧, 37 ℃下共温孵育, 采用电喷雾质谱在负离子模式进行检测, 鉴定代谢产物, 监测其含量变化, 拟合代谢路径. 结果表明, 人参皂苷Rd主要被代谢为F2, Rg3, CK, Rh2和PPD; 人参皂苷F2主要被代谢为CK和PPD; 人参皂苷Rg3主要被代谢为Rh2和PPD; 人参皂苷CK和Rh2主要被代谢为PPD. 在离体条件下, 人参皂苷Rd, F2和Rg3会被肠道菌群完全转化为其代谢产物, 而人参皂苷CK和Rh2则不能被肠道菌群完全转化为其代谢产物. 原人参二醇型皂苷在人肠道菌群中的主要转化为脱糖基反应, 单糖苷和苷元是稀有原人参二醇型皂苷在人体内发挥药效的物质基础.  相似文献   

5.
通过十八烷基胺的氨基与二醛微晶纤维素的醛基共价键合,制备了基于二醛微晶纤维素(DMCC)官能化C18的新型反相/亲水色谱固定相(C18-DMCC/SiO2),该色谱固定相被用于反相色谱(RPLC)和亲水相互作用色谱(HILIC)模式。C18-DMCC/SiO2色谱柱展现了良好的疏水选择性和芳香选择性,在反相色谱模式下可分离烷基苯和多环芳烃(PAHs)。苯胺类、酚类和糖苷类等极性化合物被用于评估该色谱柱在反相色谱模式下的极性选择性,商品C18柱作对照柱,色谱评价结果令人满意。核酸碱基被用于评估C18-DMCC/SiO2色谱柱的亲水色谱性能。通过考察有机溶剂含量对分析物保留的影响,发现该新型色谱固定相具有反相/亲水色谱的典型特征。  相似文献   

6.
以中国药典收载的六味安消胶囊中大黄素与大黄酚的含量测定方法为典型案例,揭示了色谱柱是影响HPLC质量控制方法测定结果准确性的关键风险因素。参加能力验证的155家实验室均采用方法规定的C18柱,但由于不同品牌C18柱间的选择性差异,有20家实验室的分析结果中大黄素峰与样品水解产物的色谱峰共流出,导致测定结果明显偏离正常值。统计结果表明,A型(早期开发、硅羟基残留较多)和E型(内嵌极性基团或以极性基团封尾)C18柱更适于六味安消胶囊中大黄素与大黄酚的含量测定,这可能是因为大黄素和大黄酚结构中含有多个酚羟基,能与A型柱的残留硅羟基或E型柱内嵌/封尾的极性基团相互作用,从而增强其保留行为有关。建议相关实验室在制订HPLC质量控制方法时应特别注重色谱柱的耐用性考察,并尝试采用国外色谱柱分类数据库科学地指导色谱柱的选择,尽量采用难分离物质对作为系统适用性指标,完善质量标准,减少由于色谱柱选择不适宜导致测定结果不准确的风险。  相似文献   

7.
陈学国  孔亮  盛亮洪  厉欣  邹汉法 《色谱》2005,23(1):46-51
建立了全二维液相色谱串联质谱分离分析模式,将质脂体色谱柱和ODS反相色谱柱作为二维分析色谱柱,二者通过一个连有两个0.5 mL定量环的八通阀耦联。质脂体色谱柱上的馏分在反相色谱柱上分离后,直接进入紫外-检测器,然后经分流器分流后进入大气压电离质谱。将该体系用于银杏叶提取物的组成研究,共检测到至少41个组分,结合紫外-可见光谱和质谱信息,其中13个组分初步鉴定为银杏内酯B、银杏内酯C、白果内酯、槲皮素芸香糖苷、槲皮素、槲皮素-3-O-β-D-葡萄糖基(1-2)-α-L-鼠李糖苷、槲皮素-3-O-β-D-葡萄糖苷、异鼠李素、山柰酚-3-O-β-D-芸香糖基(1-2)-α-L-鼠李糖苷、异鼠李素-3-O-β-D-芸香糖苷、山柰酚-3-O-β-D-葡萄糖苷、山柰酚和山柰酚-3-O-β-D-芸香糖苷。  相似文献   

8.
建立气相色谱-质谱测定灌溉水痕量多环芳烃残留检测方法。水样加入2种替代物2-氟联苯和对三联苯-d14,通过二氯甲烷萃取,硅胶固相萃取柱净化,以二氯甲烷-正己烷(体积比为2∶8)混合溶剂洗脱,浓缩定容后加入萘-d8、苊烯-d10、菲-d10、■-d12和苝-d12 5种氘代多环芳烃混合物作为内标。选择离子扫描模式检测,目标物以保留时间和与标准物质质谱图比较进行定性,采用平均相对响应因子内标法定量。方法检出限为1~7 ng/L,线性范围为1~100μg/L,灌溉水加标回收率为82%~110%,精密度2.0%~10.6%。2种替代物回收率范围79%~105%,说明样品前处理过程稳定可靠,样品基体效应对分析结果的影响可以忽略。该方法操作简便、准确、高效,适用于基质相对复杂的灌溉水痕量多环芳烃残留检测。  相似文献   

9.
采用在线催化-气相色谱/串联质谱技术建立了进口氯化石蜡原料中短链氯化石蜡的测定方法。样品以正己烷为溶剂,固相萃取柱净化分离,采用预先在衬管中填装好催化剂的气相色谱/串联质谱仪进行测定,短链氯化石蜡经催化脱氯加氢后转化为正构烷烃,经DB-5MS UI(30 m×0.25 mm×0.25μm)色谱柱分离,多反应监控(MRM)模式分析检测,内标法定量。还原产物C10~C13直链烷烃线性关系良好,相关系数≥0.9951。C10~C13直链烷烃的方法定量限为0.03~0.05μg/mL,相当于样品中C10~C13的短链氯化石蜡总含量为3.18μg/g。样品加标回收率为87.2%~115.4%,相对标准偏差(RSD,n=6)≤6.5%。本方法具有灵敏度高及准确性好等优点,不需要化学电离源装置的气相色谱/质谱或高分辨气相色谱/质谱即能达到较低的检出限,方法适用于进口氯化石蜡原料中短链氯化石蜡含量的快速测定。  相似文献   

10.
宋云霞  梁飞  田皓天  吴燕  罗敏 《化学学报》2022,80(2):105-109
分子结构设计是开发新化合物和通过原子尺度操纵优化晶体结构的一种引人注目的策略. 在这个工作中, 利用分子工程的思想, 基于SBBO结构, 成功设计并合成两个新型氟碳酸盐KMgLi2(CO3)2F和RbMgLi2(CO3)2F. 在两个结构中, a-b平面是由CO3和LiO3F阴离子基团组成的无限[Li3C3O6F3]层, 进一步相邻的层通过F原子连接形成一个独特的[Li6C6O12F3]双层. 这种结构特征对改善晶体的层状生长习性和消除晶体的多晶性有很大的帮助. 光学测试表明, 该系列晶体具有大的双折射和短的紫外截止边, 是深紫外双折射晶体良好的候选材料.  相似文献   

11.
Soybean oil soapstock was utilized as an alternative carbon source for the production of rhamnolipids by Pseudomonas aeruginosa LBI strain. The chemical composition and properties of the rhamnolipid mixture obtained were determined to define its potential applications. The chemical characterization of the rhamnolipid has revealed the presence of ten different homologues. The monorhamnolipid RhaC10C10 and the dirhamnolipid Rha2C10C10 were the main components of the mixture that showed predominance of 44% and 29%, respectively, after 144-h of cultivation. The biosurfactant was able to form stable emulsions with several hydrocarbons and showed excellent emulsification for soybean oil and chicken fat (100%). The rhamnolipid removed 67% of crude oil present in sand samples and presented antimicrobial activity against Bacillus cereus and Mucor miehei at 64 μg/mL and inhibition of Neurospora crassa, Staphylococcus aureus, and Micrococcus luteus at 256 μg/mL. The results demonstrated that the rhamnolipid produced in soybean oil soapstock can be useful in environmental and food industry applications.  相似文献   

12.
The biosurfactant-producing Pseudomonas aeruginosa A11, with plant-growth-promoting (PGP) and multi-metal-resistant (MMR) features was isolated from the rhizosphere of a wild plant Parthenium hysterophorus. The strain A11 was able to utilize glycerol as a carbon source and produce 4,436.9 mg/L of biosurfactant after 120 h of incubation. The biosurfactants was characterized as rhamnolipids (RLs) by thin layer chromatography, Fourier transform infrared spectroscopy, nuclear magnetic resonance, and liquid chromatography–mass spectrometry analysis. Eight different RLs congeners were detected with RhaRhaC10C10 being most abundant. The purified rhamnolipid, dirhamnolipid, and monorhamnolipid reduced the surface tension of water to 29, 36, and 42 mN/m with critical micelle concentration of 83, 125, and 150 mg/L, respectively. The strain A11 demonstrated resistance against all the metals detected in rhizosphere except Hg and Ni. The strain A11 also possessed plant-growth-promoting features like siderophores, hydrogen cyanide, catalase, ammonia production, and phosphate solubilization. The dirhamnolipids formed crystals upon incubation at 4 °C, thus making separation of dirhamnolipids easy. Biosurfactant-producing ability along with MMR and PGP traits of the strain A11 makes it a potential candidate for application in the bacterial assisted enhancement of phytoremediation of heavy-metal-contaminated sites.  相似文献   

13.
Recently, several investigations have been carried out on the in situ bacteria flooding, but the ex situ biosurfactant production and addition to the sand pack as agents for microbial enhanced oil recovery (MEOR) has little been studied. In order to develop suitable technology for ex situ MEOR processes, it is essential to carry out tests about it. Therefore, this work tries to fill the gap. The intention of this study was to investigate whether the rhamnolipid mix could be produced in high enough quantities for enhanced oil recovery in the laboratory scale and prove its potential use as an effective material for field application. In this work, the ability of Pseudomonas aeruginosa MM1011 to grow and produce rhamnolipid on sunflower as sole carbon source under nitrogen limitation was shown. The production of Rha-C10-C10 and Rha2-C10-C10 was confirmed by thin-layer chromatography and high-performance liquid chromatography analysis. The rhamnolipid mixture obtained was able to reduce the surface and interfacial tension of water to 26 and 2 mN/m, respectively. The critical micelle concentration was 120 mg/L. Maximum rhamnolipid production reached to about 0.7 g/L in a shake flask. The yield of rhamnolipid per biomass (Y RL/x ), rhamnolipid per sunflower oil (Y RL/s ), and the biomass per sunflower oil (Y x/s ) for shake flask were obtained about 0.01, 0.0035, and 0.035 g g?1, respectively. The stability of the rhamnolipid at different salinities, pH and temperature, and also, its emulsifying activity has been investigated. It is an effective surfactant at very low concentrations over a wide range of temperatures, pHs, and salt concentrations, and it also has the ability to emulsify oil, which is essential for enhanced oil recovery. With 120 mg/L rhamnolipid, 27 % of original oil in place was recovered after water flooding from a sand pack. This result not only suggests rhamnolipids as appropriate model biosurfactants for MEOR, but it even shows the potential as a biosurfactant of choice for actual MEOR applications.  相似文献   

14.
The temperature dependence of the ratios of the rate constants k(C5H10)/k(C6H12) and k(C6H12)/k(C6D12) for the reaction of the cycloalkanes C5H10, C6H12, and C6D12 with OH+ cations in the system (NH4)2S2O8 (0.1 mol/kg)-H2SO4 (94.4 mass %) in the 6–50 °C range has been studied. The activation energies found E(C6H12) − E(C5H10) = − 5.3 ± 0.3 and E(C6D12) − E(C6H12) = 7.9 ± 0.7 (kJ/mol) permits the comparison of OH+ to a group of reagents (NO+2, Pd2+, HSO+3) which interact with the C-H bond via an electrophilic substitution mechanism. Translated from Teoreticheskaya i éksperimental'naya Khimiya, Vol. 44, No. 6, pp. 354–358, November–December, 2008.  相似文献   

15.
Pseudomonas aeruginosa strain OBP1, isolated from petroleum sludge, was used to produce biosurfactant from a modified mineral salt medium with 2% n-hexadecane as sole source of carbon. The crude biosurfactant was fractionated using TLC and HPLC. Using FTIR spectroscopy, 1H NMR, and LC-MS analyses, the chemical structure of the purified fraction of crude biosurfactant was identified as rhamnolipid species. The LC-MS spectra show that monorhamnolipid (l-rhamnopyranosyl-β-hydroxydecanoyl-β- hydroxydecanoate, Rha-C10-C10) was produced in abundance with the predominant congener [M–H] ions for l-rhamnopyranosyl-l-rhamnopyranosyl-3-hydroxydecanoyl-3-hydroxydecanoate (Rha-Rha-C10-C10). Seven different carbon substrates and five nitrogen sources were examined for their effect on rhamnolipid production. Using n-hexadecane (20 g/l) as carbon substrate and urea along with (NH4)2SO4 (2 g/l each) as nitrogen source was found to be the best, with a maximum yield of 4.8 g/l. The biosurfactant reduced the surface tension of water to 31.1 mNm−1 with a critical micelle concentration of 45 mg/l. The biosurfactant showed a better emulsifying activity against a variety of hydrocarbon and achieved a maximum emulsion index of 82% for diesel. The purified biosurfactant showed a significant antibacterial activity against Staphylococcus aureus at a minimum inhibitory concentration of 8 μg/ml.  相似文献   

16.
The PMR and 19F NMR spectra of the complexes R2TlBr (R = C6F5, o-HC6F4, m-HC6F4, 3,5-H2C6F3, or 3,6-H2C6F3 and R3Tl(diox) (R = C6F5, m-HC6F4, or 3,5-H2C6F3; diox = 1,4-dioxan) have been recorded. Proton and fluorine chemical shifts, thallium-proton, thallium-fluorine, fluorine-fluorine, and fluorine-proton coupling constants, and thallium substituent chemical shifts are given and discussed  相似文献   

17.
Summary The rhodium(I) carboxylates,trans-RhO2CR(CO)(PPh3)2 (R = C6F5, C6Cl5,p-HC6F4,m-HC6F4,o-HC6F4,p-McOC6F4, 4,5-H2C6F3, 3,5-H2C6F3, or 2,6-F2C6H3, have been prepared by reaction of RhH(CO)(PPh3)3 with the appropriate polyhalogenobenzoic acids in ethanol and/or by reaction oftrans-RhCl(CO)(PPh3)2 with the appropriate thallous carboxylates in benzene. Decarboxylations with formation of polyhalogenoarylrhodium(I) compounds,trans-RhR(CO)(PPh3)2 (R = C6F5, C6Cl5,p-HC6F4,m-HC6F4,p-MeOC6F4, 4,5-H2C6F3 or 3,5-H2C6F3), have been achieved either by decomposition of the corresponding rhodium(I) carboxylates in pyridine or by reaction oftrans-RhCl(CO)(PPh3)2 and the thallous carboxylates in pyridine, but the derivatives R =o-HC6F4 or 2,6-F2C6H3 could not be obtained by this method. The rate of decarboxylation decreased in the sequence R = C6F5 >p-MeOC6F4 >p-HC6F4 >m-HC6F4 > 4,5-H2C6F3 > 3,5-H2C6F3.Part 1, ref. 10.Preliminary communication, ref. 9.  相似文献   

18.
The utility of rhamnolipids in industry is currently limited due to the high constraints in its economic production. In this scenario, the novel utility of sodium dodecyl sulphate (SDS) as carbon source could serve as promising cost-effective strategy. Screening of effective SDS biodegraders led to the isolation of Pseudomonas aeruginosa S15 capable of concomitant SDS degradation and biosurfactant synthesis. SDS-based rhamnolipid production was proved on SDS minimal agar plates using cetyl trimethylammonium bromide–methylene blue method and optimised in SDS-based minimal salt (SBS) medium. SDS proved to be an ideal carbon source for rhamnolipid synthesis with a high substrate to product conversion rate yielding 6.9 g/l of rhamnolipids from 1 g/l SDS in 5 days. Fast atom bombardment mass spectroscopy analysis of the purified biosurfactant proved the presence of mono- and di-rhamnolipids, viz., Rha-C10-C10, Rha-C10-C12 and Rha-Rha-C10-C10 with surface active properties. The secreted rhamnolipids were not utilised by S15 as a carbon source, but it caused a dispersion of bacterial biofilms in SBS medium. To the best of our knowledge, this is the first report on bioconversion of synthetic detergent to biodetergent. This SDS-based novel methodology presents a more economised mode of rhamnolipid synthesis utilising SDS as sole carbon source.  相似文献   

19.
A gas-chromatographic procedure was developed for determining impurities (CH4, C2H6, C3H8, C4H10, iso-C4H10, C5H12, iso-C5H12, neo-C5H12, CH3Cl, C2H5Cl, CH2Cl2, CHCl3, CO, and CO2) in hydrogen chloride using two columns and a column switching technique in an isothermal mode with a flame ionization detector; the detection limits were 0.01–0.1 ppm. The matrix was separated in a precolumn packed with urea. CO and CO2 were determined by reaction gas chromatography with their conversion into methane.  相似文献   

20.
The interaction of NaM(CO)5 (M=Mn, Re) with (m-H2C2B10H9-9)TlCl2 in THF yields the stable polymetallic chain compounds (m-H2C2B10H9-9)Tl(Cl)M(CO)5. The stability of the compounds obtained is compared to that of the analogous (B-carboranyl)mercury derivatives.Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 3, pp. 588–589, March, 1993.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号