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1.
A rapid technique based on dynamic microwave-assisted extraction coupled with on-line solid-phase extraction of high-performance liquid chromatography (DMAE-SPE-HPLC) has been developed. A TM010 microwave resonance cavity built in the laboratory was applied to concentrate the microwave energy. The sample placed in the zone of microwave irradiation was extracted with 95% acetonitrile (ACN) aqueous solution which was driven by a peristaltic pump at a flow rate of 1.0 mL min−1. The extraction can be completed in a recirculating system in 10 min. When a number of extraction cycles were completed, the extract (1 mL) was diluted on-line with water. Then the extract was loaded into an SPE column where the analytes were retained while the unretained matrix components were washed away. Subsequently, the analytes were automatically transferred from the SPE column to the analytical column and determined by UV detector at 238 nm. The technique was used for determination of organochlorine pesticides (OCPs) in grains, including wheat, rice, corn and bean. The limits of detection of OCPs are in the range of 19-37 ng g−1. The recoveries obtained by analyzing the four spiked grain samples are in the range of 86-105%, whereas the relative standard deviation (R.S.D.) values are <8.7% ranging from 1.2 to 8.7%. Our method was demonstrated to be fast, accurate, and precise. In addition, only small quantities of solvent and sample were required.  相似文献   

2.
固相萃取-气相色谱法检测茶叶中的有机磷农药残留量   总被引:5,自引:0,他引:5  
建立了茶叶中22种有机磷农药的残留量的气相色谱分析方法. 样品用V(乙腈)∶V(丙酮)=4∶1提取, 经Envi-Carb固相小柱净化, 以V(乙腈)∶V(甲苯)=3∶1洗脱, GC-FPD检测, 外标法定量. 在添加0.05~1.0 mg/kg的水平, 22种有机磷的平均回收率在81.3%~107.9%之间, 相对标准偏差在1.1%~8.9%, 该方法的检出限为0.01~0.04 mg/kg. 该方法的灵敏度、准确度和精密度均符合农药残留量测定的技术要求.  相似文献   

3.
Li J  Chen L  Wang X  Jin H  Ding L  Zhang K  Zhang H 《Talanta》2008,75(5):1245-1252
An automated system using on-line solid-phase extraction (SPE) high-performance liquid chromatography (HPLC) with ultraviolet (UV) detection was developed for the determination of tetracyclines (TCs), such as tetracycline (TC), oxytetracycline (OTC), chlortetracycline (CTC), metacycline (MC), and doxycycline (DC) in honey. One milliliter diluted honey sample was injected into a conditioned C18 SPE column and the matrix was washed out with water for 3 min. By rotation of the switching valve, TCs were eluted and transferred to the analytical column by the chromatographic mobile phase. Chromatographic conditions were optimized. TCs were separated in less than 8 min with a gradient elution using a mixture of 0.8% formic acid and acetonitrile. The UV detection was performed at 365 nm. The conditions for on-line SPE, including solvent and total time for loading sample and washing matrix were also optimized. Time for extraction and separation decreased greatly. For the five kinds of TCs, the limits of detection (LODs) at a signal-to-noise of 3 ranged from 5 to 12 ng g−1. The relative standard deviations (R.S.D.) for the determination of TCs ranged from 3.4 to 7.1% within a day and ranged from 3.2 to 8.9% in 3 days, respectively.  相似文献   

4.
This paper describes the extraction of 49 organophosphorus pesti-cides (OPPs) from water samples using solid-phase microextraction (SPME). Three fibers, including a 15-μm XAD-coated fiber, a 85-μm polyacrylate-coated fiber, and a 30-μm polydimethylsilox-ane-coated fiber (PDMS), were evaluated here. The effects of stirring and the addition of NaCl to the sample were examined for the polyacrylate-coated fiber. The precision of the technique was examined for all three fibers and the extraction kinetics were investigated using the XAD- and polyacrylate-coated fibers. With some exceptions, the XAD- and polyacrylate-coated fibers performed better than the PDMS-coated fiber. The superiority of the XAD-nd polyacrylate-coated fiber. The superiority of the XAD- and polyacrylate-coated fibers over the PDMS-coated fibers can be attribuibuted to the aromatic functionalities of the XAD and the polar functionalities in the polyacrylate. The relatively high percent RSDs indicate that the SPME technique needs to be further refined before it can be used for anything other than screening. A more effective form of agitation than mechanical stirring may be neccessary to reduce variability and achieve a faster equilibrium between the sample and the SPME fiber.  相似文献   

5.
王宁  李永仙  郑飞云  刘春凤  李崎  顾国贤 《色谱》2009,27(3):372-375
采用Waters Sep-Pak C18固相萃取小柱对啤酒样品进行分离纯化,建立了啤酒中黄腐酚的固相萃取-高效液相色谱检测方法。选用色谱柱Zorbax Eclipse XDB-C18柱(250 mm×4.6 mm,5 μm),以甲醇和0.1%甲酸水溶液为流动相进行梯度洗脱,柱温25 ℃,流速0.4 mL/min,检测波长370 nm。在此条件下,黄腐酚分离良好且无杂质峰干扰,在0.5~500 μg/L的范围内线性关系良好(r21),在高、中、低浓度下的加标回收率为91.21%~95.58%,相对标准偏差小于2%。方法的检出限为0.24 μg/L,定量限为0.80 μg/L。该方法简便快速、结果准确、重现性好,是检测啤酒中黄腐酚含量的有效方法。  相似文献   

6.
杜昕昕  王寅鹏  肖伟  朱靖博 《色谱》2023,41(3):257-264
研究建立了基质固相分散萃取-高效液相色谱(MSPD-HPLC)分析五味子中5种木脂素类化合物(五味子醇甲、五味子醇乙、五味子甲素、五味子乙素、五味子丙素)的方法。采用反相C_(18)色谱柱进行分离,以0.1%(v/v)甲酸水溶液和乙腈为流动相进行梯度洗脱,在波长250 nm下检测。考察了包括硅胶、酸性氧化铝、中性氧化铝、碱性氧化铝、佛罗里硅土、Diol、XAmide、Xion和C_(18)、C_(18)-ME、C_(18)-G_(1)、C_(18)-HC等在内的12种吸附剂以及吸附剂的质量、洗脱剂的种类、洗脱剂体积对五味子木脂素类化合物得率的影响。选定Xion作为MSPD-HPLC分析五味子中木脂素类化合物的吸附剂;基于吸附剂Xion的萃取参数优化结果表明:以0.25 g五味子粉末为固定值,Xion(0.75 g)为吸附剂,甲醇(15 mL)为洗脱剂,MSPD对五味子中木脂素类化合物具有较高的得率。建立的五味子中5种木脂素类化合物的分析方法,各目标分析物具有良好的线性关系(相关系数R^(2)≥0.9999),检出限与定量限分别介于0.0089~0.0294μg/mL和0.0267~0.0882μg/mL之间。对五味子木脂素类化合物进行低、中、高3个水平的加标回收试验,平均回收率为92.2%~111.2%,相对标准偏差为0.23%~3.54%。日内和日间精密度均小于3.6%。与超声辅助提取和热回流提取前处理相比,MSPD具有萃取和净化相结合、耗时少、所需溶剂量少的优点,且MSPD-HPLC获得的结果优于经典方法。所建立的方法成功应用于17批五味子中5种木脂素类化合物含量的分析。  相似文献   

7.
研究了固相微萃取(SPME) 气相色谱 质谱联用(GC MS)同时测定环境水样中二嗪农、甲基对硫磷、对硫磷和水胺硫磷4种有机磷农药(OPPs)的分析方法。选择聚丙烯酸酯(PA)萃取纤维,对SPME的条件如萃取时间、萃取溶液的pH值和离子强度、解吸温度、解吸时间和GC MS的条件进行了优化。对二嗪农和水胺硫磷方法线性范围为0.001~10μg L,对甲基对硫磷和对硫磷方法线性范围为0.001~100μg L。二嗪农、甲基对硫磷、对硫磷、水胺硫磷的检出限分别为0.015,0.020,0.013和0.039μg L。分析加标自来水、矿泉水和湖水样品,回收率在89.0%~102%之间,RSD在2.1%~14.1%之间。适合于环境水样中痕量OPPs的快速分析。  相似文献   

8.
建立了大米中12种有机氯农药气相色谱-电子捕获检测器检测方法.采用基质固相分散(Matrix Solid Phase Disperse, MSPD)技术进行样品前处理, 用气相色谱-电子捕获检测器进行快速定性定量分析.基质固相分散集提取、过滤、净化于一步完成, 避免了样品均化、转溶、乳化、浓缩造成的待测农药组分的损失, 大大提高了方法的准确度和精密度.12种有机氯农药的添加回收率在83%~103%之间,相对标准偏差为2.2%~19%.  相似文献   

9.
A liquid‐phase microextraction coupled with LC method has been developed for the determination of organophosphorus pesticides (methidation, quinalphos and profenofos) in drinking water samples. In this method, a small amount (3 μL) of isooctane as the acceptor phase was introduced continually to fill‐up the channel of a 1.5 cm polypropylene hollow fiber using a microsyringe while the hollow fiber was immersed in an aqueous donor solution. A portion of the acceptor phase (ca. 0.4 μL) was first introduced into the hollow fiber and additional amounts (ca. 0.2 μL) of the acceptor phase were introduced to replenish at intervals of 3 min until set end of extraction (40 min). After extraction, the acceptor phase was withdrawn and transferred into a 2 mL vial for a drying step prior to injection into a LC system. Parameters that affect the extraction efficiency were studied including the organic solvent, length of fiber, volume of acceptor and donor phase, stirring rate, extraction time, and effect of salting out. The proposed method provided good enrichment factors of up to 189.50, with RSD ranging from 0.10 to 0.29%, analyte recoveries of over 79.80% and good linearity ranging from 10.0 to 1.25 mg/L. The LOD ranged from 2.86 to 82.66 μg/L. This method was applied successfully to the determination of organophosphorus pesticides in selected drinking water samples.  相似文献   

10.
Summary A fast and simple procedure for the analysis of aqueous samples by on-line membrane disk extraction and capillary gas chromatography (GC) is presented. As an example, organophosphorus pesticides are preconcentrated from aqueous samples on three 0.5 mm thick, 4.2 mm diameter extraction disks. The layers are dried by a stream of nitrogen (10–15 min; ambient temperature). Desorption of the analytes is carried out with ethyl acetate which is directly introduced into a retention gap under partially concurrent solvent evaporation conditions, using an early solvent vapour exit. The final analysis is carried out by GC with thermionic detection. The technique is applied to the determination of a series of organophosphorus pesticides in tap water and water from two European rivers. With a sample volume of only 2.5 ml, detection limits of 10–30 ppt are achieved in tap water and of 50–100 ppt in river water.  相似文献   

11.
A method based on solid-phase microextraction (SPME) and gas chromatography with mass spectrometry (GC/MS) for the determination of 18 organophosphorus pesticides (OPPs) in textiles is described. Commercially available SPME fibers, 100 μm PDMS and 85 μm PA, were compared and 85 μm PA exhibited better performance to the OPPs. Various parameters affecting SPME, including extraction and desorption time, extraction temperature, salinity and pH, were studied. The optimized conditions were: 35 min extraction at 25 °C, 5% NaSO4 content, pH 7.0, and 3.5 min desorption in GC injector port at 250 °C. The linear ranges of the SPME-GC/MS method were 0.1-500 μg L−1 for most of the OPPs. The limits of detection (LODs) ranged from 0.01 μg L−1 (for bromophos-ethyl) to 55 μg L−1 (for azinphos-methyl) and the RSDs were between 0.66% and 9.22%. The optimized method was then used to analyze 18 OPPs in textile sample, and the determined recoveries were ranged from 76.7% to 126.8%. Moreover, the distribution coefficients of the OPPs between 85 μm PA fiber and simulative sweat solution (Kpa/s) were determined. The determined Kpa/s of the OPPs correlated well with their octanol-water partition coefficients (r = 0.764 and 0.678) and water solubility (= −0.892 and −0.863).  相似文献   

12.
Summary The eleven Environmental Protection Agency (EPA) priority phenolic compounds have been determined by solid-phase extraction (SPE) coupled on-line to supercritical-fluid chromatography (SFC) with diodearray detection. The variables affecting chromatographic separation were optimized and the analytes were separated at 40 °C in two diol columns connected in series; a gradient of methanol, as modifier, and CO2 was used as mobile phase. Under these conditions, all the compounds studied were separated to baseline in less than 13 min. PLRP-S and LiChrolut EN were tested as sorbents in a 10×3 mm i.d. laboratory-packed precolumn for solid-phase extraction. An ion-pair reagent, tetrabutylammonium bromide (TBA), was used in the extraction process to increase break-through volumes. The performance of the method was checked with tap and river waters and the pre-concentration of 20 mL of sample in a PLRP-S pre-column enabled phenolic compounds to be determined at low μg L−1 levels with limits of detection ranging between 0.4 and 2 μg L−1. The repeatability and reproducibility between days (n=3) for real samples spiked at 10 μg L−1 were lower than 10%.  相似文献   

13.
Summary A multiresidue method for the analysis of 28 common organophosphorus pesticides and 3 of their main metabolites (paraoxon-ethyl, paraoxon-methyl and malaoxon) in a variety of crop samples has been developed. An aliquot of the chopped sample is homogenized with an organic solvent. The efficiency of extraction methods using methanol, acetone and acetonitrile was evaluated. The acetonitrile gives higher recoveries and minimizes co-extractives from the samples matrix. The resulting aqueous acetonitrile extract is filtered and cleaned by solid phase extraction (SPE). For SPE three different types of adsorption materials (Carbograph 1, LiChrobut-EN and Amberchrom CG-161m) were compared. The cleaned-up extract is injected into the LC system. Three different analytical columns were tested in conjunction with two mobile phase compositions of different polarity. The use of LC-DAD techniques allowed the identification of both organophosphorus pesticides and metabolites by means of standard and spectral comparison, respectively. The accuracy of the quantitative determination measured in terms of average percentage recovery of 31 compounds in crop samples was 61–96% with a relative standard deviation of 5–10%.  相似文献   

14.
A procedure based on solid-phase extraction (SPE) followed by high-performance liquid chromatography (HPLC) with diode array detection has been developed for the simultaneous analysis of 16 widely used pesticides in groundwater samples. The compounds analysed were: aldicarb, atrazine, desethylatrazine, desysopropylatrazine, carbofuran, 2,4-D, dicloran, fenitrothion, iprodione, linuron, metalaxyl, metazachlor, phenmedipham, procymidone, simazine and vinclozolin. Five different SPE sorbents, C18 bonded silica (Isolute SPE C18 (EC)), graphitised carbon black (Superclean Envi-Carb), highly cross-linked polystyrene-divinylbenzene (Lichrolut EN), divinylbenzene-N-vinylpyrrolidone (Oasis HLB) and surface modified styrene-divinylbenzene (Strata X), were compared. HPLC separation and quantification of the selected pesticides was carried out under isocratic conditions by means of a new reversed-phase column (Gemini from Phenomenex) based on C18 bonded to organic-silica particles. Oasis HLB and Strata X provided the best results in the preconcentration of 1-l samples, yielding average recoveries higher than 70%, except for phenmedipham that rapidly degrades in groundwater. Detection limits of the target pesticides provided by the proposed SPE-HPLC procedure were between 0.003 and 0.04 μg l−1.  相似文献   

15.
《Electrophoresis》2017,38(9-10):1334-1343
An analytical methodology based on coprecipitation‐assisted coacervative extraction coupled to HPLC‐UV was developed for determination of five organophosphorus pesticides (OPPs), including fenitrothion, guthion, parathion, methidathion, and chlorpyrifos, in water samples. It involves a green technique leading to an efficient and simple analytical methodology suitable for high‐throughput analysis. Relevant physicochemical variables were studied and optimized on the analytical response of each OPP. Under optimized conditions, the resulting methodology was as follows: an aliquot of 9 mL of water sample was placed into a centrifuge tube and 0.5 mL sodium citrate 0.1 M, pH 4; 0.08 mL Al2(SO4)3 0.1 M; and 0.7 mL SDS 0.1 M were added and homogenized. After centrifugation the supernatant was discarded. A 700 μL aliquot of the coacervate‐rich phase obtained was dissolved with 300 μL of methanol and 20 μL of the resulting solution was analyzed by HPLC‐UV. The resulting LODs ranged within 0.7–2.5 ng/mL and the achieved RSD and recovery values were <8% (n = 3) and >81%, respectively. The proposed analytical methodology was successfully applied for the analysis of five OPPs in water samples for human consumption of different locations of Mendoza.  相似文献   

16.
刘永  唐英斐  宋金凤  胡志伟 《色谱》2014,32(2):139-144
在蔬菜种植中经常使用的有机磷农药马拉硫磷、甲基对硫磷、敌百虫及乙酰甲胺磷可能转化的主要代谢产物分别为O,O-二甲基二硫代磷酸酯、对硝基酚、敌敌畏及甲胺磷。根据蔬菜色素等基质的含量不同采用不同的净化方法,色素含量高的蔬菜采用活性炭和弗罗里硅土串联固相萃取小柱净化,其他蔬菜采用弗罗里硅土固相萃取小柱净化。色谱分离选择ACQUITY UPLC BEH HILIC色谱柱,以乙腈和5 mmol/L乙酸铵水溶液为流动相进行梯度洗脱,得到的分离效果较好;质谱采用电喷雾正或负离子电离、多反应监测模式检测。液相色谱-质谱检测的基质效应为15.3%~45.1%;4种有机磷农药及其代谢物的方法回收率为76.9%~102.8%,相对标准偏差为5.92%~10.19%;定量限范围为0.001~0.01 mg/L;在0.01~1.00 mg/L范围内线性相关系数为0.9982~0.9999。方法具有良好的回收率、相对标准偏差、定量限及线性关系,适合蔬菜中有机磷及代谢物的检测,应用该检测方法对农贸市场购买的白菜、辣椒、西红柿及洋葱进行了检测。  相似文献   

17.
固相萃取-高效液相色谱法测定钙强化食品中的维生素D   总被引:1,自引:0,他引:1  
赵榕  薛颖  吴国华  赵海燕  罗仁才 《色谱》2008,26(1):113-115
以含有体积分数为20%的0.95 mol/L柠檬酸水溶液的二甲基亚砜作为维生素D的破壁溶液,利用Chromabond XTR固相萃取柱(14500 mg, 70 mL)对样品进行提取和净化,建立了测定钙强化食品中维生素D的固相萃取-高效液相色谱方法。方法的线性范围为0.1~100.0 μg/mL,线性相关系数为0.999。方法的定性检出限为0.01 μg/g,定量检出限为0.03 μg/g。低(0.1 μg/g)、中(0.5 μg/g)、高(1.0 μg/g)三个浓度水平的加标回收率分别为106.2%,99.5%和100.1%,相对标准偏差小于10%。  相似文献   

18.
朱晓玲  叶飞  杨洁  肖潇  文红  刘睿 《色谱》2010,28(10):945-949
建立了固相萃取-高效液相色谱(SPE-HPLC)同时测定蜂蜜中5种有机酸(L-苹果酸、马来酸、琥珀酸、柠檬酸、D-苹果酸)含量的方法。蜂蜜经制样后过Bond Elutes SAX固相萃取(SPE)小柱净化,用C18-MS-II反相色谱柱(250 mm×4.6 mm, 5 μm)进行分离,流动相为2%偏磷酸溶液,流速为0.7 mL/min,检测波长为210 nm。在此条件下5种有机酸在相应的线性范围内其线性相关系数均大于0.9967;方法的回收率为86.0%~103.9%,相对标准偏差为5.7%~9.8%(n=6),检出限为0.06~9.4 mg/kg。所建立的方法可用于蜂蜜样品中有机酸的测定。  相似文献   

19.
Summary On-line solid-phase extraction (SPE) coupled with reversed-phase liquid chromatography and UV detection at 254 nm has been used for the determination of trace-level polycyclic aromatic hydrocarbons (PAH) in soil extracts. Five commercially available adsorbents (C8, C18, PLRP-S, PRP-1, and Bond-Elut Env) were evaluated. Results showed that recovery of the PAH decreased with increasing molecular weight, because of their poorer solubility. Recovery of high-molecular-weight PAH was significantly improved by addition of 10% (v/v) acetonitrile to the sample before loading of the SPE adsorbent. PAH recovery ranged from 64.0 to 108% when a 50 mL sample spiked with 1 μg L−1 was applied to these adsorbents. Determination of PAH was possible with detection limits below 0.05 μg L−1, which corresponds to 0.2 μg kg−1 soil. The method was successfully used to determine PAH in soil extracts.  相似文献   

20.
Shao B  Peng Z  Yang H  Wu G  Yao Y  Wan K 《色谱》2011,29(8):755-761
建立了固相萃取-高效液相色谱同时测定传统禽肉制品中9种杂环胺类化合物(HAAs)(包括2-氨基-3-甲基咪唑并[4,5-f]喹啉、2-氨基-3,4-二甲基咪唑并[4,5-f]喹啉、2-氨基-3,8-二甲基咪唑并[4,5-f]喹喔啉、2-氨基-3,4,8-三甲基咪唑并[4,5-f]喹喔啉、2-氨基-1-甲基-6-苯基-咪唑并[4,5-b]吡啶、3-氨基-1-甲基-5H-吡啶并[4,3-b]吲哚、3-氨基-1,4-二甲基-5H-吡啶并[4,3-b]吲哚、9H-吡啶并[4,3-b]吲哚、1-甲基-9H-吡啶并[4,3-b]吲哚)含量的分析方法。经过条件优化,肉样选用乙酸乙酯进行提取,提取液经丙基磺酸(PRS)和C18固相萃取小柱净化,采用TSK-gel ODS-80TM色谱柱,以乙腈和0.05 mol/L醋酸-醋酸铵缓冲液(pH 3.4)为流动相进行梯度洗脱分离,紫外-荧光检测器串联方式对目标化合物进行检测。通过波长扫描,确定紫外检测波长为263 nm,荧光激发波长/发射波长随时间切换程序为: 0~21 min, 300 nm/440 nm; 21~23.8 min, 315 nm/410 nm; 23.8~35 min, 265 nm/410 nm。在上述条件下,9种HAAs在35 min内实现基线分离。3个加标水平的平均回收率为60.47%~90.55%(n=6),相对标准偏差(RSD)为0.49%~9.74%(n=6),检出限(以信噪比为3计)为0.1~3.6 μg/kg。该方法简便快速、结果准确、灵敏度高,可作为测定传统禽肉制品中多种杂环胺类化合物的有效方法。  相似文献   

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