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1.
王彦娟  观文娜  王华  关亚风 《分析化学》2008,36(7):1004-1008
以固态萃取搅拌棒为样品前处理技术,采用气相色谱法分析了荞麦和苦参中的8种有机氯农药残留。实验对比了聚醚砜酮(PPESK)和聚二甲基硅氧烷(PDMS)对所测定的有机氯农药的相对萃取量(以峰面积计),发现前者是后者的1~11倍。用PPESK作萃取相,对萃取温度、萃取时间和盐浓度等萃取条件进行了优化,并考察了基质效应对萃取效率的影响。所用方法对荞麦中有机氯农药的LOD为4~85pg/g,重复性的RSD小于26%,回收率为83%~135%;对苦参中有机氯农药的LOD为3~17pg/g,重复性的RSD小于17%,回收率为82%~128%。  相似文献   

2.
应用搅拌棒吸附萃取富集及热解吸进样与气相色谱-质谱相结合测定了水样中3种烷基酚(即正辛基酚、叔辛基酚和正壬基酚)的含量。将水样预先用盐酸调节其酸度至pH 3,分取10.00mL置于顶空瓶中,放入搅拌棒进行吸附萃取。取出搅拌棒,置于热脱附管上解吸并通过程序升温进样系统进样,用DB-5MS柱进行色谱分离。质谱分析条件:电子轰击正离子源,全扫描模式(定性分析)和选择离子扫描模式(定量分析)。3种烷基酚的质量浓度均在5~200ng·L-1范围内与其峰面积呈线性关系,方法的检出限(3S/N)在1.2~2.5ng·L-1之间。以实际水样为基体进行加标回收试验,测得回收率在95.0%~118%之间,测定值的相对标准偏差(n=5)在0.90%~10%之间。  相似文献   

3.
利用相转换法制备了聚酰亚胺吸附萃取搅拌棒,用5种有机酚作为评价标样,并与现有商品化吸附萃取搅拌棒进行比较。优化了萃取搅拌速度、溶液离子强度、萃取温度、萃取时间以及热解析温度和时间。在最佳实验条件下,100 mL 样品,30% NaCl,在25℃下,经活化5 min 后的聚酰亚胺吸附搅拌棒萃取30 min (800 r/ min),然后300℃热解析4 min,使目标物脱附,再进行色谱分析。目标物在大于两个数量级浓度范围内具有良好的线性(R≥0.9995),定量限(LOQ,S/ N=10)为0.028~0.123μg/ L,重复性为1.6%~9.7%。将SBSE 与气相色谱-质谱联用,对海水、自来水和污水中的酚类进行定性与定量分析,结果表明,聚酰亚胺吸附萃取搅拌棒具有良好的选择性,最高热解析温度350℃,在分析水中痕量极性化合物领域具有广阔应用前景。  相似文献   

4.
制备了Fe/Si O2/PDMS颗粒填充固相萃取柱,并建立了固相萃取/在线热解吸-气相色谱联用测定水样中痕量苯系物的分析方法。采用电磁感应加热技术在线热解吸固相萃取柱富集的苯系物,并直接引入气相色谱进样口进行分离定量。各苯系物在0.1~20 ng/L范围内线性关系良好,其相关系数(r)为0.999 2~0.999 6,对1 ng/L各苯系物测定的相对标准偏差(RSD,n=11)为2.0%~4.4%,检出限为0.03~0.05 ng/L。  相似文献   

5.
建立了固相萃取、毛细柱气相色谱-质谱、内标标准曲线法使用选择离子(SIM)监测采集数据定量分析水中硝基苯类有机化合物的分析方法.通过对固相萃取柱的选择、固相萃取条件(样品溶液的pH、上样速率、上样体积、洗脱液选择及配比)的优化,得出了最佳实验条件.始漏体积达1.5 L.回收率大于80%.检出限为0.015~0.045 μg/L.RSD在1.1%~5.9%之间.  相似文献   

6.
建立了自制活性炭纤维固相微萃取与气相色谱联用测定海水中6种硝基苯类和环酮类化合物的分析方法。优化的萃取条件为: 样品中加NaCl至饱和,在1500 r/min速率搅拌下,于60 ℃水浴中顶空萃取30 min,于280 ℃下解吸2 min。方法的线性范围为0.01~400 μg/L,检出限为1.4~3.2 ng/L,相对标准偏差(RSD,n6)为1.4%~7.8%。海水样品中硝基苯类和环酮类化合物的加标回收率和RSD分别为86.3%~101.8%和3.7%~7.8%。应用所建立的方法对东海近岸表层水样进行测定,其中硝基苯、1,3-二硝基苯、2,6-二硝基甲苯的质量浓度分别为0.756,0.944,0.890 μg/L。实验结果表明,该方法简便、高效、无需有机溶剂,适合于海洋水体中硝基苯类和环酮类化合物的分析。  相似文献   

7.
建立了一种基于贻贝仿生化学涂层的搅拌棒吸附萃取/高效液相色谱/荧光检测器(SBSE/HPLC-FLD)同时测定食用油中黄曲霉毒素B1、B2、G1、G2的方法。基于贻贝仿生化学制备多巴胺-氧化石墨烯复合物固相萃取材料,利用搅拌棒吸附萃取技术对样品进行提取;以甲醇-乙腈-水(10%磷酸调至p H 3.5,体积比3∶3∶5)作为流动相,采用荧光检测器进行检测。结果显示,黄曲霉毒素B1、B2、G1、G2在0.200~10.0μg/L范围内具有良好的线性关系(相关系数r~2≥0.998 9),加标回收率为81.5%~96.9%,日内相对标准偏差(RSD)为1.7%~3.4%,日间RSD为1.9%~3.5%,方法检出限为0.025~0.050μg/L。该方法高效、灵敏、可靠,能够满足食用油中黄曲霉毒素B1、B2、G1、G2的测定要求。  相似文献   

8.
建立了生活饮用水中16种硝基苯类物质的固相萃取-毛细管气相色谱-电子捕获检测方法.实验优化了色谱柱、升温程序等色谱条件,并对影响固相萃取效果的主要因素(萃取小柱、洗脱剂和洗脱体积)进行了考察.水样中16种硝基苯类物质经Oasis HLB固相萃取柱吸附、正己烷-丙酮(3∶1,V/V)洗脱后,采用DB-1701毛细管气相色谱柱程序升温分离、ECD检测,在33 min内完成所有待测组分的测定.16种硝基苯类组分在各自的线性范围内相关系数r≥0.998,方法的检出限为0.01 ~0.77 μg/L(S/N=3),定量限为0.03 ~2.57 μg/L(S/N=10),日内精度和日间精度分别在1.0% ~ 3.8%和2.3%~4.8%间,样品加标回收率为83.6%~ 111.8%,加标样品的RSD为1.2% ~5.1%.应用本方法对50份水样进行了分析,结果表明,本方法准确、灵敏、快速,适用于水质的常规分析,可为水样中硝基苯类物质的污染评价提供技术支持.  相似文献   

9.
黄油中二十八碳醇含量的气相色谱法测定   总被引:1,自引:0,他引:1  
建立了黄油中二十八碳醇的气相色谱测定方法。样品经500 g/L NaOH皂化1 h后,用环己烷萃取,采用毛细管气相色谱法测定二十八碳醇含量。色谱柱为HP-1柱,通过程序升温,在20 min内实现了二十八碳醇的测定。在20~1000 mg/L范围内,二十八碳醇色谱峰面积与质量浓度呈良好的线性关系(r=0.998 9),回收率为94%~98%(n=6),重复性RSD(n=6)小于3.1%。该法具有良好的准确度与精密度。  相似文献   

10.
姚桂燕  观文娜  许峰  王华  关亚风 《色谱》2008,26(5):590-594
应用自制的聚醚砜酮(PPESK,30 μm)涂层纤维,采用顶空固相微萃取-气相色谱法测定水中痕量的酚类化合物。优化了固相微萃取温度、萃取时间、pH值和离子强度。方法的检出限为0.003~0.041 μg/L,相对标准偏差低于16%(n=5)。将PPESK涂层纤维与商品化的聚丙烯酸酯涂层纤维对比,结果表明PPESK萃取酚类化合物有较高的萃取富集倍数。用所制备的PPESK萃取头分析自来水、海水等实际水样,20 μg/L添加水平下的回收率分别为100.5%~111.8%和94.8%~117.3%。  相似文献   

11.
An optimised method using stir bar sorptive extraction (SBSE) and a thermal desorption‐GC‐electron capture detector (GC‐ECD) for the determination of short‐chain chlorinated paraffins from water samples was developed. Recoveries near to 100% were obtained by using 20 mm×0.5 mm (length×film thickness) PDMS commercial stir bars from 200 mL spiked water samples and 20% methanol addition with an extraction period of 24 h. Method sensitivity, linearity and precision were evaluated for surface water and wastewater spiked samples. A LOD of 0.03 and 0.04 μg/L was calculated for surface and wastewater, respectively. The precision of the method given as an RSD was below 20% for both matrices. The developed method was applied for the analysis of two real samples from a contaminated river and a wastewater treatment plant. Results were in accordance with those obtained using a previously developed method based on solid phase microextraction (SPME).  相似文献   

12.
A novel poly(phthalazine ether sulfone ketone) (PPESK) film prepared by immersion precipitation technique was coated on stir bars for sorptive extraction. Scanning electron micrographs showed that the coating has a denser porous surface (about 1 microm in thickness) with a sponge-like sublayer, and the thickness of the coating was 250 microm. The PPESK coated stir bar has high thermostability (290 degrees C) and long lifetime (50 times). The extraction properties of this stir bar were evaluated for the extraction of both polar and semi-polar analytes, including organochlorine compounds and organophosphorus pesticides. The PPESK stir bar was proved to show higher affinity towards polar compounds than that of PDMS coated stir bar and higher sample load compared with corresponding PPESK fiber. It was applied to the determination of organochlorine compounds in seawater samples and organophosphorus pesticides in juices by gas chromatographic analysis. The effect of sample matrix was evaluated at optimized condition of extraction temperature, extraction time and salt concentration. Limits of detection were in the range of 0.05-2.53 ng L(-1) for organochlorine compounds in seawater samples using electron capture detector (ECD), with precisions of less than 11% RSD. Limits of detection for organophosphorus pesticides were in the range of 0.17-2.25 ng L(-1) and 2.47-10.3 ng L(-1) in grape and peach juice, respectively, using thermionic specified detector (TSD), with precisions of less than 12% RSD and 20% RSD, respectively.  相似文献   

13.
搅拌棒吸附子萃取与GC-MS法测定水中20种有机氯农药   总被引:2,自引:0,他引:2  
建立了搅拌棒吸附子萃取/气相色谱-质谱法(SBSE/GC-MS)同时检测水中α-六六六、γ-六六六、β-六六六、七氯、δ-六六六、艾氏剂、环氧七氯、γ-氯丹、顺-氯丹、硫丹Ⅰ、p,p-滴滴伊、狄氏剂、异狄氏剂、p,p-滴滴滴、硫丹Ⅱ、p,p-滴滴涕、异狄氏剂醛、硫丹硫酸盐、甲氧滴滴涕、异狄氏剂酮20种有机氯农药含量的方法.样品在室温下经拌棒吸附子搅拌吸附,甲醇解吸附后,以J&W DB-35 MS(30 m×0.25 mm×0.25 μm)石英毛细管色谱柱为分析柱,气相色谱-质谱选择离子流模式检测.考察了萃取时间、氯化钠及甲醇加入量等对萃取的影响.实验结果表明:在2.5 ~20.0 μg/L 范围内,20种有机氯农药呈良好的线性关系,检出限(S/N=3)为0.008 ~0.118 μg/L,水样中分别添加2.5、20 μg/L的20种有机氯农药,回收率为 52% ~117%,相对标准偏差小于13%(n= 6).该方法操作简便、快速、灵敏度高,应用于实际样品检测,结果满意.  相似文献   

14.
Based on a special homemade interface, the molecularly imprinted stir bar sorptive extraction was coupled to high performance liquid chromatography for the online desorption and analysis. During desorption, the analytes desorbed from stir bar were delivered to a sample loop and then was introduced into liquid chromatography for further analysis. The online desorption and introduction processes were real‐time monitored by the ultraviolet detector of the liquid chromatography system. In this way, the method sensitivity and reproducibility was improved for the introduction timing of the desorption solvent with greatest concentration of the target analytes was accurately controlled. To demonstrate the feasibility of the method, terbuthylazine imprinted stir bar was synthesized and used for the analysis of nine triazines in rice. Under the optimized conditions, limits of detection of 0.02–0.11 μg/L and precision within 4.3–7.2% were achieved. The new method was compared with other two traditional offline desorption procedures, i.e. ultrasonic‐assisted desorption and static thermal desorption. The comparison results showed that the proposed method is accurate, precise, fast, and suitable for the trace analysis of complex samples.  相似文献   

15.
A method for the determination of ultra-trace amounts of organochlorine pesticides (OCPs) in river water was developed by using stir bar sorptive extraction (SBSE) followed by thermal desorption and comprehensive two-dimensional gas chromatography coupled to high-resolution time-of-flight mass spectrometry (SBSE-TD-GC×GC-HRTOF-MS). SBSE conditions such as extraction time profiles, phase ratio (β: sample volume/polydimethylsiloxane (PDMS) volume), and modifier addition, were examined. Fifty milli-liter sample including 10% acetone was extracted for 3 h using stir bars with a length of 20 mm and coated with a 0.5 mm layer of PDMS (PDMS volume, 47 μL). The stir bar was thermally desorbed and subsequently analyzed by GC×GC-HRTOF-MS. The method showed good linearity over the concentration range from 50 to 1000 pg L(-1) or 2000 pg L(-1) for all analytes, and the correlation coefficients (r(2)) were greater than 0.9903 (except for β-HCH, r(2)=0.9870). The limit of detection (LOD) ranged from 10 to 44 pg L(-1). The method was successfully applied to the determination of 16 OCPs at pg L(-1) to ng L(-1) in river water. The results agree fairly well with the values obtained by a conventional liquid-liquid extraction (LLE)-GC-HRMS (selected ion monitoring: SIM) method using large sample volume (20 L). The method also allows screening of non-target compounds, e.g. pesticides and their degradation products, polyaromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs), and pharmaceuticals and personal care products (PPCPs) and metabolites in the same river water sample, by using full spectrum acquisition with accurate mass in GC×GC.  相似文献   

16.
An improved simple, fast and miniaturized method for the determination of polychlorinated biphenyls (PCBs) and polybrominated diphenyl ethers (PBDEs) in freshwater sediment using ultrasonic solvent extraction followed by stir bar sorptive extraction–thermal desorption–gas chromatography–mass spectrometry (USE-SBSE/TD–GC–MS) is presented. The sediment sample (0.2 g) is extracted with methanol (1:1.2, 2:1.0 mL) in an ultrasonic bath (two 5-min extraction cycles). The combined extracts are made up to 5 mL with water, and from the resulting solution, the analytes are preconcentrated on a stir bar coated with polydimethylsiloxane during 1 h of stirring. The loaded sorptive stir bar is then thermally desorbed and online analysed by GC–MS. For the analytes in river sediment, a linear dynamic range of 0.5–50 ng g?1 was established and limits of detection in sub nanogram-per-gram level were achieved. Recoveries and repeatability were obtained in the ranges 62.8–91.5 % and 3.6–15.0 %, respectively. The method accuracy was confirmed by the analysis of PCBs and PBDEs in a certified reference material. The main improvement in comparison with similar published methods is in shortening the sample handling time and the method miniaturization.  相似文献   

17.
A stir bar coated with β-cyclodextrin-bonded-silica (CDS) as novel sorbent has been developed and used to analyze seven phenolic compounds in aqueous samples, followed by thermal desorption and gas chromatography-mass spectrometric detection. Significant parameters affecting sorption process such as the time and temperature of sorption and desorption, ionic strength, pH and stirring rate have been optimized and discussed. The coating has a high thermal stability up to 300°C and long application lifetime (80 times). The porous structure of CDS coating provides high surface area and allows high extraction efficiency. Under the selected conditions, linearity range of 0.1-400 μg/L, limit of quantifications of 0.08-3.3 μg/L and method detection limits of 0.02-1.00 μg/L have been obtained. A satisfactory repeatability (RSD ≤ 6.5, n = 7) with good linearity (0.9975 ≤ r(2) ≤ 0.9996) of results illustrated a good performance of the present method. The recovery of different natural water samples was higher than 81.5%.  相似文献   

18.
Lan L  Hu B  Yu C 《Journal of chromatography. A》2010,1217(45):7003-7009
An organic-inorganic hybrid titania-hydroxy-terminated silicone oil (titania-OH-TSO) stir bar coating was prepared by sol-gel method. The extraction performance of titania-OH-TSO coated stir bar was evaluated and compared with poly(dimethysiloxane) (PDMS), poly(dimethysiloxane)-divinylbenzene (PDMS-DVB), poly(dimethysiloxane)-β-cyclodextrin (PDMS-β-CD) and C(18) coated stir bar with five polar drugs of abuse including amphetamine (PA), methamphetamine (MA), 3,4-methylenedioxyamphetamine (MDA), 3,4-methylenedioxymethamphetamine (MDMA) and ketamine (Ke) as the model analytes. The experimental results revealed that the titania-OH-TSO coated stir bar exhibited highly pH-resistant ability, good preparation reproducibility, superior selectivity and high extraction efficiency for the target compounds. Based on this fact, a new method of titania-OH-TSO coated stir bar sorptive extraction (SBSE) combined with high performance liquid chromatography (HPLC)-ultraviolet visible (UV) detection was developed for the analysis of five drugs of abuse in urine samples. The factors affecting the extraction efficiency of SBSE such as sample pH, desorption solvent, sample volume, extraction time, desorption time, stirring rate and ionic strength were investigated and the optimal extraction conditions were established. Under the optimized conditions, the limits of detection (LODs) for titania-OH-TSO coated SBSE-HPLC-UV determination of five polar drugs of abuse were in the range of 2.3-9.1 μg/L with relative standard deviations (RSDs) ranging from 7.3 to 8.9% (c=300 μg/L, n=6), and all of the target compounds exhibited good linearity over a concentration range of 30-3000 μg/L. The developed method was applied to the determination of amphetamines and Ke in urine samples of drug abusers with satisfactory results.  相似文献   

19.
A PDMS/poly(vinylalcohol) (PDMS/PVA) film prepared through a sol–gel process was coated on stir bars for sorptive extraction, followed by liquid desorption and large volume injection–GC–flame photometric detector (LVI–GC–FPD) for the determination of five organophosphorus pesticides (OPPs) (phorate, fenitrothion, malathion, parathion, and quinalphos) in honey. The preparation reproducibility of PDMS/PVA‐coated stir bar ranged from 4.3 to 13.4% (n = 4) in one batch, and from 6.0 to 12.6% (n = 4) in batch to batch. And one prepared stir bar can be used for more than 50 times without apparent coating loss. The significant parameters affecting stir bar sorptive extraction (SBSE) were investigated and optimized. The LODs for five OPPs ranged from 0.013 (parathion) to 0.081 μg/L (phorate) with the RSDs ranging from 5.3 to 14.2% (c = 1 μg/L, n = 6). The proposed method was successfully applied to the analysis of five OPPs in honey.  相似文献   

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