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1.
建立了高效液相色谱(HPLC)外标定量分析咪唑生产工艺中反应液中咪唑及杂质2-甲基咪唑和4-甲基咪唑含量的方法。在色谱分析中,选用Supersil-ODS-B色谱柱为固定相;选用体积比为40∶60的乙腈-离子对试剂(溶液pH为3.5,内含16 mmol·L~(-1)十二烷基硫酸钠和17mmol·L~(-1)磷酸二氢钾)溶液为流动相进行等度洗脱;采用二极管阵列检测器进行检测,检测波长为210nm。结果显示:咪唑、2-甲基咪唑及4-甲基咪唑标准曲线的线性范围均为10~100mg·L~(-1),检出限(3S/N)分别为0.02,0.02,0.03mg·L~(-1)。咪唑在20mg·L~(-1)和100mg·L~(-1)添加水平下的平均加标回收率分别为100%,99.2%,相对标准偏差(n=8)为0.27%。用本方法对同一批反应液不同反应阶段的9个样品中咪唑进行了测定,测定值为10.11%~10.71%;杂质2-甲基咪唑有检出,但低于测定下限;杂质4-甲基咪唑未检出。与气相色谱法进行了比对,两者测定结果基本一致。试验结果表明,该方法准确度好、灵敏度高、重现性好,能够准确测定咪唑生产工艺中反应液中咪唑、2-甲基咪唑及4-甲基咪唑的含量。  相似文献   

2.
建立了固相萃取法结合高效液相色谱同时检测焦糖色素中2-甲基咪唑(2-Methylimidazole,2-MEI)、4-甲基咪唑(4-Methylimidazole,4-MEI)和2-乙酰基-4-(1,2,3,4-四羟基丁基)咪唑(2-Acetyl-4-(1,2,3,4-tetrahydroxybutyl) imidazole,THI)的方法.样品经加水涡旋提取后,经混合型强阳离子交换固相萃取小柱富集净化,以乙腈-0.05%氨水(10∶90,V/V)为流动相,流速为0.6 mL/min,用反向色谱柱Polaris C18-A(250 mm×4.6 mm,5μm)柱分离,分别在二极管阵列检测器215 nm波长条件下检测焦糖色素中的2-甲基咪唑、4-甲基咪唑和287 nm波长条件下检测2-乙酰基4.(1,2,3,4-四羟基丁基)咪唑的含量.2-甲基咪唑、4-甲基咪唑和2-乙酰基-4-(1,2,3,4-四羟基丁基)咪唑在0.2~ 20 mg/L之间线性关系良好(r>0.9996),在10,25和100 mg/kg添加浓度的回收率范围为75.3% ~93.4%,相对标准偏差均小于10%,检出限分别为为2.6,3.0和1.5 mg/kg,定量限分别为8.5,10.0和5.0 mg/kg.  相似文献   

3.
建立了高效液相色谱-串联质谱法同时检测食醋中4-甲基咪唑(4-Methylimidazole,4-MEI)和2-乙酰基-4-(1,2,3,4-四羟基丁基)咪唑(2-Acetyl-4-(1,2,3,4-tetrahydroxybutyl)imidazole,THI)的方法。样品经超纯水稀释,用氨水溶液调节pH=9.0,采用0.22μm水系微孔滤膜过滤,以乙腈和0.05%氨水为流动相,流速为0.4mL/min,用反相色谱柱Polaris C18-A(150×4.6 mm,3μm)进行分离,采用电喷雾正离子(ESI+)模式电离,多反应监测(MRM)模式检测,以d6-4-甲基咪唑(d6-4-methylimidazole,d6-4-MEI)作为内标进行定量。4-MEI和THI在0.01~1.0mg/L之间线性关系良好(r0.9996),4-MEI和THI在所有醋中0.2mg/L、0.5mg/L和2.0mg/L三个添加浓度的回收率范围为80.2%~101.4%,相对标准偏差均小于6.4%,浅色的白醋和米醋的检出限为0.06 mg/L,定量限为0.2 mg/L;深色的香醋和陈醋的检出限为0.15mg/L,定量限为0.5mg/L。  相似文献   

4.
建立了气相色谱-串联质谱法( GC-MS/MS)测定焦糖色素中2-甲基咪唑和4-甲基咪唑.样品碱化后,用硅藻土净化,二氯甲烷洗脱,气相色谱-串联质谱法多反应监测模式(MRM)测定.2-甲基咪唑和4-甲基咪唑在0.01~10 mg/L范围内均呈现良好的线性关系,线性相关系数分别为0.9999和0.9997;检出限均为0....  相似文献   

5.
建立了高效液相色谱-四极杆/静电场轨道阱高分辨率质谱测定酱油中4-甲基咪唑(4-MI)和2-甲基咪唑(2-MI)的方法。酱油样品经水稀释,过MCX固相萃取小柱,经5%的氨化甲醇洗脱后,于45℃下氮气吹干,用乙腈水溶液溶解残渣,涡旋充分混合后过0.45μm滤膜。采用Agilent HILIC Plus(2.1 mm×100 mm,3.5μm)色谱柱进行分离,以乙腈-5.0 mmol/L乙酸铵(80∶20)为流动相进行等度洗脱。质谱采用正离子模式,在质荷比(m/z)50~100范围内通过高分辨质谱全扫描模式提取目标化合物的精确质量数,以一级母离子为定量离子,外标法定量。在所建立的色谱条件下,4-MI和2-MI能够得到较好的分离。该方法对4-MI和2-MI的检出限可达2.5 mg/kg。在25~500 ng/m L浓度范围内线性关系良好,相关系数均大于0.99。对生抽、老抽、黄豆酱油及有机酱油中4-MI和2-MI进行3个水平的加标实验,平均回收率为78.3%~95.7%,相对标准偏差(RSD)不大于9.4%。该方法样品处理过程简单,适用于酱油中4-MI和2-MI的测定,对规范酱油生产和焦糖色素的加入具有重要意义。  相似文献   

6.
建立了超高效液相色谱-串联质谱(UPLC-MS/MS)同步检测食品中2-甲基咪唑(2-MEI)和4-甲基咪唑(4-MEI)的分析方法。大多数食品超声提取后可直接进样,基质极其复杂的样品(如酱油、咖啡、茶叶等)需经强阳离子交换柱(PCX)萃取净化,采用同位素内标法定量。在优化条件下,2-MEI和4-MEI的检出限分别可达0.5 ng/g和1.4 ng/g,回收率分别为82.6%~98.1%和89.5%~108.1%,日内相对标准偏差(RSD)分别为1.3%~4.5%和1.0%~5.0%,日间RSD分别为2.0%~5.4%和1.9%~6.5%。采用该方法对市售90余种加工食品进行抽样检测,结果发现2-MEI仅在少量食品中存在且含量较低,而4-MEI在多种食品中存在,含量较高的食品包括老抽酱油(3 224.20~18 795.93 ng/g)、咖啡(0~5 554.35 ng/g)、曲奇(63.48~584.78 ng/g)、焦糖色素饼干(373.12~1 899.60 ng/g)、可乐(44.13~342.77 ng/g)、大麦茶(3131.05~3 335.60 ng/g)等。该文还首次报道了不同品种茶叶(16~761.89 ng/g)中4-MEI的含量。  相似文献   

7.
以金纳米粒子为拉曼活性基底,采用便携式拉曼仪进行分析,建立了饮料中4-甲基咪唑(4-MeI)和2-甲基咪唑(2-MeI)的表面增强拉曼光谱分析法,并对检测条件进行优化.在最优条件下(Na2SO4溶液为团聚剂,金纳米粒子用量分别为250和200 μL),4-MeI和2-MeI的线性范围分别是0.05 ~5.00 mg/L和1.0 ~20.0 mg/L,检出限分别为1.70 μg/L和0.21 mg/L;将本法应用于含焦糖色素饮料中4-MeI和2-MeI的检测,4-MeI含量在0.093 ~0.110 mg/L之间,2-MeI无检出.回收率分别为80.2% ~ 82.7%和78.1% ~93.5%,相对标准偏差均小于7.1%.本方法简单、快速、准确,为含焦糖色素饮料中4-MeI和2-MeI的快速检测提供了新方法.  相似文献   

8.
采用高效液相色谱法测定化妆品中的甲硝唑、替硝唑、奥硝唑和塞克硝唑。样品经甲醇和0.1mol·L-1盐酸溶液以体积比1比1组成的混合溶液超声提取15min后,以C18色谱柱为分离柱,以甲醇-乙腈-水(7+1+2)混合液为流动相,在检测波长315nm处进行测定。4种硝基咪唑类药物在一定的质量浓度范围内与峰面积呈线性关系,方法检出限(3S/N)和测定下限(10S/N)分别低于10 mg·kg-1和30 mg·kg-1。以空白样品为基体进行加标回收试验,测得回收率在93.8%~104%之间,相对标准偏差(n=6)在0.2%~4.1%之间。  相似文献   

9.
食品用乙腈-水(3+1)溶液进行提取,经凝胶色谱、固相萃取柱净化后,用液相色谱-串联质谱法进行测定和确证,外标法定量。色谱分离用甲醇和甲酸-水(0.1+99.9)溶液以不同体积比混合为流动相梯度洗脱,采用负离子模式电喷雾离子源在多反应监测模式下进行检测。甲基磺草酮的质量浓度在0.01~0.2 mg·L-1范围内与其峰面积呈线性关系。以4种食品样品为基体,加入3种浓度水平的甲基磺草酮标准做回收试验,测得回收率在73.2%~100.6%之间;测定值的相对标准偏差(n=10)在4.1%~11%之间。  相似文献   

10.
采用高效液相色谱法测定橡胶制品中2-巯基苯并噻唑的含量。样品经丙酮超声提取两次。采用C18反相色谱柱为分离柱,以甲醇-0.01mol·L-1磷酸二氢钠(80+20)溶液为流动相,在检测波长320nm处进行测定。2-巯基苯并噻唑的质量浓度在0.10~10.0mg·L-1范围内与其峰面积呈线性关系,方法的检出限(3S/N)为0.54mg·kg-1。在0.10,2.0,10.0mg·L-1等3个浓度水平进行加标回收试验,回收率在85.3%~95.4%之间,测定值的相对标准偏差(n=6)在3.1%~5.6%之间。  相似文献   

11.
《Analytical letters》2012,45(17):2708-2714
Ultra-high performance liquid chromatography was employed for the determination of imidazole, 4-methylimidazole, and 2-methylimidazole in cigarette additives. Following solid phase extraction and filtration, the analytes were separated using isocratic elution with 5 mmol/L acetonitrile-ammonium formate (80:20, v/v) at 0.5 mL/min. The quantification of these analytes was achieved with the external standard method on a diode-array detector at 215 nm. Baseline separation was achieved within 1.3 min. The linear dynamic ranges for imidazole, 4-methylimidazole, and 2-methylimidazole were between 0.0375 and 18.0300 mg/kg. The limits of detection for the analytes were 0.0094 mg/kg. The recoveries and the relative standard deviations at fortification levels of 0.1322 mg/kg to 1.6220 mg/kg were 95.20% to 101.93% and 0.55% to 2.54%, respectively. The method offers easy operation, rapid analysis, and accurate results, and is suitable for the determination of imidazole, 4-methylimidazole, and 2-methylimidazole in cigarette additives.  相似文献   

12.
Summary The preparation of two new tetracoordinated complexes of palladium(II) with 2-methylimidazole, 2-MeIm, and chloride as ligands is described.  相似文献   

13.
Two novel coordination polymers with molecular structures(2MI)~+[Zn(2MI)Cl_3]~-(1) and(2MI)~+NO_3~-(2) based on ligand 2-methylimidazole(2MI) were synthesized under solution method. Compound 1 crystallizes in the monoclinic system, space group Cc with a=7.489(2), b=13.448(4), c=13.983(4) ?, β=98.402(2)°, Z=4 and V=102.246(2) ?~3. Compound 2 crystallizes in the orthorhombic system, space group pnma with a=14.296(3), b=6.3180(12), c=7.3862(13) ?, β=90°, Z=4 and V=667.1(2) ?~3. Dielectric measurements show compounds 1 and 2 have reversible dielectric anomalous behaviors with variation frequencies at different temperature.  相似文献   

14.
The reaction of maleic anhydride with 2-methylimidazole in acetonitrile and DMF is accompanied by the appearance of strong absorption bands in the visible part of the spectrum due to the formation of molecular complexes. In acetonitrile the reaction proceeds by two routes via the formation of an amide and the molecular complex. Phthalic anhydride reacts with 2-methylimidazole to give amide but not to form molecular complexes.  相似文献   

15.
The 2-methylimidazole complexes of Co(II), Ni(II), Cu(II) and Zn(II) orotates, mer-[Co(HOr)(H2O)2(2-meim)2] (1), mer-[Ni(HOr)(H2O)2(2-meim)2] (2), [Cu(HOr)(H2O)2(2-meim)] (3) and [Zn(HOr)(H2O)2(2-meim)] (4), were synthesized and characterized by elemental analysis, spectral (UV–Vis and FT-IR) methods, thermal analysis (TG, DTG and DTA), magnetic susceptibility, antimicrobial activity studies and single crystal X-ray diffraction technique. The complexes 1 and 2 have distorted octahedral geometries with two monodentate 2-methylimidazole and one bidentate orotate and two aqua ligands. The complexes 3 and 4 have distorted square pyramidal and trigonal bipyramidal geometry, respectively, with one 2-methylimidazole, bidentate orotate and aqua ligands. The orotate coordinated to the metal(II) ions through deprotonated nitrogen atom of pyrimidine ring and oxygen atom of carboxylate group as a bidentate ligand. The antimicrobial activities of 1 and 4 were found to be more active gram (+) than gram (−) and 4 could be use for treatment Staphylococcus aureus.  相似文献   

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