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1.
建立了新品农药溴氟菊酯在水体及土壤中残留量的测定方法,采用石油醚+丙酮(3+1)混合溶剂提取,经浓硫酸+无水乙醇(1+1)纯化,用毛细管气相色谱电子捕获检测器测定。该法检出限为0.1×10-9~2×10-9,回收率72.6%~100.5%,变异系数1.6%~8.5%。  相似文献   

2.
建立了一种测定食品中黄曲霉毒素( AFT) B1 、B2 、G1 、G2 的多功能净化柱( MFC) 净化, 单相展开的薄层色谱法。 以乙腈- 水( 体积比9 ∶1) 提取样品中AFT, 经MFC 净化浓缩后, 采用HSG60 薄层板, 以丙酮- 氯仿( 体积比9 ∶1) 展开, 薄层扫描仪荧光检测扫描定量。该法用于花生样品的检测,4 种毒素的分离良好; 线性范围:0 .05 ~1 .0 ng, 相关系数≥0 .999 1; 检出限均达到0 .5 ×10 - 9 ; 相对标准偏差为4 .67 % ~10 .21 % ; 样品加标0.5 ×10 - 9 ~10 ×10 - 9 , 平均回收率为86 .5 % ~99 .0% 。  相似文献   

3.
乙醛存在下氨基糖苷类抗生素的吸附伏安法研究   总被引:1,自引:0,他引:1  
用悬汞电极,于Britton-Robinson-CH3CHO(pH9.5~10.5)体系中研究了妥布霉素、丁胺卡那霉素等五种氨基糖苷类抗生素的吸附伏安行为,并讨论了其电极过程。认为该类抗生素结构上共有的伯、仲氨基与乙醛的衍生化反应产物,在一定电位下易吸附于电极表面。其不可逆还原峰的峰电位为-1.45V(vs.SCE)。在选定条件下,浓度在2.0×10(-9)~2.5×10(-7)g/mL范围内均与还原峰峰电流呈良好的线性关系,检测限低至1.0×10(-9)g/mL。方法无需预处理即可用于软膏、尿样的测定,回收率在90.3%~114%之间。  相似文献   

4.
用鲁米诺-双氧水-铬(Ⅲ)化学发光体系结合巯基棉对As(Ⅲ)的富集分离,建立了快速的测定化探样品中痕量砷的新方法,检测线性范围为1.0×10-4~1.0×101mg/L,检出限为3.4×10-5mg/L。用于实际化探样品测定,相对标准偏差为5.5%~9.0%。  相似文献   

5.
高效液相色谱法测定人血浆中甲磺酸培氟沙星浓度   总被引:5,自引:0,他引:5  
建立了一种测定人血浆中甲磺酸培氟沙星的匠相液相色谱方法,用的是ZorbaxODSC_(18)柱和用三乙醇胺调节成pH为3.0的甲醇-0.04mol/LH_3PO_4溶液(80:20,V/V)的流动相,检测在276nm处进行,流量为1mL/min,线性范围是6.01×10 ̄(-8)~3.01×10 ̄(-5)mol/L(γ=0.9998),检测极限为6.01×10 ̄(-8)mol/L,平均回收率为97.57±3.04%,日内与日间的CV分别为3.29%和5.08%。  相似文献   

6.
报道了两种9-冠-3衍生物的合成,并以合成的化合物作载体研制了对锂离子响应的PVC膜电极。以乙基-9-冠-3为载体的锂离子电极的能斯特响应为10×10-1~52×10-5mol/L,斜率为(574±03)mV/p[Li](25℃),检测下限为24×10-5mol/L。电极具有良好的稳定性和重现性,用于实际样品测定,结果满意  相似文献   

7.
蜂蜜中四环素族抗生素残留量的薄层色谱测定法   总被引:8,自引:1,他引:8  
残留在蜂蜜中的四环素族抗生素在经Sep-PakC18小柱固相萃取处理后,用高效正相薄层色谱予以分离,喷雾显色后用紫外灯进行定性分析;使用双波长薄层扫描仪进行定量测定。在蜂蜜中的添加量为0050×10-3、010×10-3及020×10-3时,强力霉素(DC)、土霉素(OTC)和四环素(TC)的回收率分别为916%~1003%、845%~1031%和770%~1032%。该法的测定低限可达到10-3μg。  相似文献   

8.
用反相高效液相色谱法分离和测定了抗氧剂264和对甲酚,其线性范围分别是1.2×10-9~2.8×10-8mol和1.8×10-9~2.4×10-6mol,相对标准偏差分别为1.7%和0.98%。  相似文献   

9.
电致化学发光法测定天然水中痕量银(Ⅰ)   总被引:1,自引:0,他引:1  
对四正丁基碘化胺(TBAI)-银(Ⅰ)-硫脲体系的电致化学发光进行了研究。当在Pt-Pt-Ag/AgCl三电极上施加+1.5V的正矩形脉冲时,前述体系可观察到电致化学发光现象。银(Ⅰ)对此发光过程有明显的催化作用。银(Ⅰ)的浓度在1.0×10-8~3.0×10-6mol/L范围内与发光强度呈良好的线性关系,检出限为8.0×10-9mol/L。相对标准偏差为4%。该法用于测定天然水中的痕量银。结果满意。  相似文献   

10.
偶合化学发光法测定血清中亚硝酸盐   总被引:5,自引:0,他引:5  
采用正交试验法建立了Luminol-NO-2-K4[Fe(CN)6]偶合发光体系测定血清NO-2的方法。本法测定NO-2的线性范围为9.0×10-6~1.0×10-3μg/L,检出限3.5×10-6μg/L。对1.0×10-4μg/LNO-2连续测定11次的相对标准偏差为2.3%。用于血清中亚硝酸根的测定,结果满意。  相似文献   

11.
Origanum tyttanthum Gontsch. was collected from two different sites in south-central Tajikistan. The essential oils were obtained by hydrodistillation and analyzed by gas chromatography-mass spectrometry. A total of 52 compounds were identified representing 99.0-100% of total oil compositions. The major components of Origanum tyttanthum Gontsch. oil were carvacrol (34.3-59.2%), thymol (10.8-46.4%), p-cymene (0.7-7.3%), beta-thujone (1.9-4.1%), piperitenone oxide (0.1-3.8%), gamma-terpinene (0.3-3.5%), cis-piperitone epoxide (0.8-3.3%), carvacrol acetate (0.4-2.4%), menthone (0.6-2.1%) and borneol (1.0-2.3%).  相似文献   

12.
采用王水消解样品,利用原子吸收分光光度法,对重金属元素(Cu、Pb、Zn、Cd)在成都市东郊土壤中的垂直分布进行了研究。该法对Cu的回收率为98%~104%,精密度为2.75%;Pb的回收率为95~97%,精密度为3.11%;Zn的回收率为99%~101%,精密度为2.31%;Cd的回收率为97%~102%,精密度为3.32%,测定方法简单、准确。  相似文献   

13.
The essential oils obtained by simultaneous distillation and extraction (SDE) from the fresh and dried needles and dried berries of Juniperus communis L. of Estonian origin were subjected to GC-FID and GC-MS analyses. The yields of the oils ranged between 0.2% and 0.6% from juniper berries and between 0.5% and 1.0% from needles (dried weight). A total of 87 compounds were identified, representing over 95% of the oil. The major compounds in the needle oil were monoterpenes α-pinene (33.3-45.6%), sabinene (0.2-15.4%), limonene (2.8-4.6%) and sesquiterpenes (E)-β-caryophyllene (0.8-10.3%), α-humulene (0.8-6.2%) and germacrene D (3.0-7.8%). The juniper berry oil was rich in α-pinene (53.6-62.3%), β-myrcene (6.5-6.9%) and germacrene D (4.5-6.1%). The main oxygenated terpenoids found in the needle oil were germacrene D-4-ol (0.4-4.0%) and α-cadinol (to 2.7%). The oil from fresh needles contained high amounts of (E)-2-hexenal (3.7-11.7%).  相似文献   

14.
This study investigates the seasonal variation of three species of Leptospermum (Myrtaceae) grown in Brazil. The chemical composition of the volatile oils of L. flavescens and L. petersonii did not show any significant seasonal variation in the major components, while for Leptospermum madidum subsp. sativum the levels of major constituents of the volatile oils varied with the harvest season. Major fluctuations in the composition of L. madidum subsp. sativum oil included α-pinene (0-15.2%), β-pinene (0.3-18.5%), α-humulene (0.8-30%), 1,8-cineole (0.4-7.1%) and E-caryophyllene (0.4-11.9%). Levels of β-pinene (0.3-5.6%), terpinen-4-ol (4.7-7.2%) and nerolidol (55.1-67.6%) fluctuated seasonally in the L. flavescens oil. In L. petersonii, changes were noted for geranial (29.8-32.8%), citronellal (26.5-33.9%) and neral (22.7-23.5%). The activity of the volatile oils against the tested bacteria differed, depending on season the oils were obtained. In general, the volatile oils were more active against Gram-positive bacteria.  相似文献   

15.
桦褐孔菌子实体和发酵菌丝体中甾类化合物的定量测定   总被引:3,自引:0,他引:3  
高远  许泓瑜  陆震鸣  许正宏 《色谱》2009,27(6):745-749
建立了采用高效液相色谱(HPLC)定量测定桦褐孔菌子实体和发酵菌丝体中白桦脂醇、麦角甾醇、胆甾醇、羊毛甾醇、豆甾醇和谷甾醇含量的方法。色谱条件: 以C18柱进行分离,流动相为不同浓度梯度的水-甲醇(0~10 min,体积比为10:90;10~40 min,体积比为3:97),流速为1.4 mL/min,检测波长为202 nm,整个分析在40 min内完成。结果表明所建立的方法具有很好的重复性和回收率。甾类化合物分析测定的日内相对标准偏差为2.10~2.94%(n=5),在0.4~4.8 μg范围内有很好的线性关系。白桦脂醇、麦角甾醇、胆甾醇、羊毛甾醇、豆甾醇和谷甾醇的回收率分别为100.05%~100.72%,99.31%~101.04%,97.52%~101.63%,96.61%~100.08%,96.21%~100.76%和100.04%~100.51%。本方法可快速、准确地定量测定桦褐孔菌子实体和发酵菌丝体中的甾类化合物。  相似文献   

16.
The fatty acid compositions of Nepeta viscida, N. cilicica, N. crinita, N. nuda ssp. glandulifera and N. aristata were analyzed by GC/MS. The main free fatty acids were found as linolenic acid (49.8-58.5%), linoleic acid (10.9-23.5%), oleic acid (11.5-19.2%), palmitic acid (5.2-6.8%) and stearic acid (2.0-3.7%) and, total fatty acid compositions of species were analyzed and results were found as 36.2-49.8%, 17.1-25.8%, 15.4-25.8%, 6.4-7.8%, and 2.7-4.1%, respectively.  相似文献   

17.
The chemical composition of the essential oils from Protium giganteum and P. aracouchine was determined, for the first time, using GC-MS analysis. From the oil of P. giganteum, 32 components were identified, representing 93.9% of the oil, and from P. aracouchine, 29 components, representing 97.8% of the oil. Among the compounds identified in the P. giganteum oil, 93.6% were sesquiterpenes, with beta-caryophyllene (26.0 +/- 0.8%), globulol (9.3 +/- 0.2%), alpha-cadinol (7.0 +/- 0.5%), alpha-humulene (6.4 +/- 0.1%) and germacrene D (6.2 +/- 0.3%) as the major components. Among the 29 compounds identified in the P. aracouchine oil, 95.9% were sesquiterpenes as well, with spathulenol (31.8 +/- 1.6%), alpha-cis-bergamotene (8.8 +/- 0.2%) and viridiflorol (9.7 +/- 0.7%) as the major components.  相似文献   

18.
Smog chamber/FTIR techniques were used to study the atmospheric chemistry of 3-pentanol and determine rate constants of k(Cl+3-pentanol) = (2.03 +/- 0.23) x 10 (-10) and k(OH+3-pentanol) = (1.32 +/- 0.15) x 10 (-11) cm (3) molecule (-1) s (-1) in 700 Torr of N 2/O 2 diluent at 296 +/- 2 K. The primary products of the Cl atom initiated oxidation of 3-pentanol in the absence of NO were (with molar yields) 3-pentanone (26 +/- 2%), propionaldehyde (12 +/- 2%), acetaldehyde (13 +/- 2%) and formaldehyde (2 +/- 1%). The primary products of the Cl atom initiated oxidation of 3-pentanol in the presence of NO were (with molar yields) 3-pentanone (51 +/- 4%), propionaldehyde (39 +/- 2%), acetaldehyde (44 +/- 4%) and formaldehyde (4 +/- 1%). The primary products of the OH radical initiated oxidation of 3-pentanol in the presence of NO were (with molar yields) 3-pentanone (58 +/- 3%), propionaldehyde (28 +/- 2%), and acetaldehyde (37 +/- 2%). In all cases the product yields were independent of oxygen concentration over the partial pressure range 10-700 Torr. The reactions of Cl atoms and OH radicals with 3-pentanol proceed 26 +/- 2 and 58 +/- 3%, respectively, via attack on the 3-position to give an alpha-hydroxyalkyl radical, which reacts with O 2 to give 3-pentanone. The results are discussed with respect to the literature data and atmospheric chemistry of 3-pentanol.  相似文献   

19.
Boc和Fmoc保护氨基酸与M树脂和王氏树脂结合率的比较   总被引:5,自引:0,他引:5  
M树脂与Boc保护的亮氨酸、甘氨酸或苯丙氨酸的铯盐成酯反应摩尔比1:1.2,时间31h,其产物用重量法和水杨醛法测得的结合率均值分别为87.3%、89.1%和89.6%。王氏树脂与Fmoc保护的亮氨酸、甘氨酸或苯丙氨酸反应48h,树脂:Fmoc氨基酸:DCC:DMAP摩尔比为1:3:4:1,其产物结合率的均值分别为44.2%、30.4%和56.2%。结果表明,前者产物结合率高于后者。另外,重量法与水杨醛法测得的结合率相差不超过2.7%,但重量法更方便,易行。  相似文献   

20.
The essential oils isolated at the flowering stage in spring, summer and autumn of the aerial and underground parts of Conyza bonariensis L. growing in Tunisia were analysed by GC and GC/MS; 143 constituents were identified, and among them 20 were major. The oils of C. bonariensis gathered in spring were rich in matricaria ester (1.2-67.3%), (Z)-nerolidol (0.3-19.9%) and caryophyllene oxide (0.8-14.3%). In the summer samples, the oils of C. bonariensis were rich in matricaria ester (1.6-76.4%), caryophyllene oxide (1.6-22.6%) and (E)-β-farnesene (1.1-22.7%). The main constituents in the autumn samples were matricaria ester (trace to 63.5%), geranyl acetone (0.0-25.3%), trans-α-bergamotene (0.0-24.3%) and limonene (2.7-15.3%). The oils showed significant variation among the seasons. Remarkable differences were found between the constituent percentages of the different studied organs. The C. bonariensis sample from Tunisia was a matricaria ester chemotype and was quite different from the samples of other countries of origin.  相似文献   

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