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1.
固相萃取-气质联用测定水环境中痕量多环麝香   总被引:2,自引:0,他引:2  
建立了固相萃取-气质联用法测定水中佳乐麝香(HHCB)和吐纳麝香(AHTN)这两种主要的多环麝香的方法.利用Oasis HLB固相萃取小柱预处理水样,通过对固相萃取条件的优化,得出了最佳实验条件:洗脱溶剂为正己烷,洗脱体积为10mL,水样中添加体积分数0.5%甲醇作为有机改性剂,控制上样流速为5~10mL/min,洗脱速率为0.5~2mL/min.该方法线性相关性好,相对标准偏差在1.67%~5.48%之间,对两种多环麝香的方法检测限均为0.025μg/L.利用该方法对污水处理厂进出水中多环麝香进行测定,佳乐麝香和吐纳麝香的去除率分别为61.3%和51.6%.  相似文献   

2.
建立了固相微萃取(SPME)与气相色谱-质谱(GC-MS)联用同时测定海水中16种多环芳烃的分析方法, 研究了萃取时间、盐度条件的影响. 同时用SPME的方法研究了海水中的溶解有机物(DOM)对多环芳烃萃取的影响. 计算出不同DOM浓度下多环芳烃KDOM与KOW的关系: CDOM=5 mg/L时, logKDOM = 0.7944KOW + 0.773 (R2 = 0.91). CDOM=10 mg/L时, logKDOM = 0.7905KOW + 0.668 (R2 = 0.97); CDOM=30 mg/L时, logKDOM = 0.714KOW + 1.0407(R2 = 0.91). 该法对16种多环芳烃的检出限为0.1~3.5 ng/L, 相对标准偏差(RSD, n=5)为 4%~23%. 用该法分析海洋环境中的痕量多环芳烃, 16种多环芳烃的平均回收率为88.2±20.4%, 方法快速、灵敏、简单, 适用于快速分析海水和沉积物间隙水样中的痕量多环芳烃.  相似文献   

3.
固相微萃取-气相色谱-质谱法测定血中痕量毒鼠强   总被引:1,自引:0,他引:1  
血样中的毒鼠强用固相微萃取法分离.取2 mL血样加水稀释至15 mL,插入聚丙烯酸酯萃取纤维头30 min,取出萃取头用水洗提2~3次后,在仪器的前进样口加热除去残留的水分,然后将萃取头插入仪器的进样口进行热解吸,并测定其含量.此方法的检出限(3S/N)为1.1 μg·L-1.在毒鼠强质量浓度为100μg·L-1的水平上测定了方法的相对标准偏差(n=6)为4.03%.  相似文献   

4.
陶敬奇  王超英  李碧芳  李攻科 《色谱》2003,21(6):599-602
建立了固相微萃取(SPME)-高效液相色谱(HPLC)联用同时测定环境水样中8种多环芳烃的分析方法。优化了萃取时间、萃取温度、解吸时间、解吸溶液、解吸模式等条件。该法对8种多环芳烃的检出限为0.002-0.180 μg/L,相对标准偏差(RSD, n=6)为4.4%-12.2%。用该法分析江水中的痕量多环芳烃,除苯并[b]荧蒽外,其他7种多环芳烃的回收率为91.1%-115.8%,RSD(n=3)为3.6%-18.8%。方法快速、灵敏、简单,适用于快速分析环境水样中的痕量多环芳烃。  相似文献   

5.
Wang G  Tang H  Chen D  Feng J  Li L 《色谱》2012,30(2):135-140
建立了香水中5种合成麝香的顶空固相微萃取-气相色谱-质谱联用分析方法。实验选用65 μm的聚二甲基硅氧烷-二乙烯基苯(PDMS-DVB)萃取纤维,在磁力搅拌600 r/min条件下,考察了萃取温度、平衡时间、萃取时间、解吸时间、进样口温度和盐效应6个方面对实验结果的影响。优化后的条件为: 10 mL顶空瓶中加入适量用水稀释过的样品,于60 ℃平衡3 min后,顶空萃取20 min,随即插入气相色谱进样口,于250 ℃解吸3 min进行定性、定量分析。5种合成麝香在0.05~1.00 μg/g范围内线性关系良好,检出限(LOD)为0.6~2.1 ng/g。空白样品在3个浓度加标水平下(0.05, 0.50, 1.00 μg/g)的回收率为82.0%~103.3%,相对标准偏差(RSD)为1.8%~9.4%。本方法简便、准确、快速、灵敏,适用于香水中合成麝香的分析检验工作。  相似文献   

6.
固相微萃取-气相色谱-质谱联用测定水中酚类化合物   总被引:13,自引:0,他引:13  
赵汝松  柳仁民  崔庆新 《分析化学》2002,30(10):1240-1242
建立了固相微萃取与气相色谱-质谱联用技术(SPME-GC-MS)测定水中酚类化合物的新方法,探讨了萃取时间、搅拌速度、离子强度、pH值和解吸时间等条件对萃取量的影响。结果表明:65μm PDMS/DVB涂层对水中的酚类化合物有较好的萃取效果,用于水中酚类化合物的测定,结果满意。  相似文献   

7.
建立了固相萃取-气相色谱-质谱法测定3种中药材中18种多环芳烃(PAHs)的检测方法.选取丹参、平贝母、厚朴为样品基质,以正己烷提取,经Fiorisil、ProElut PAH专用固相萃取柱联合净化.采用DM-PAH柱分离,选择离子监测(SIM)模式检测,基质匹配外标法定量.结果表明:实际样品中,18种PAHs在5~2...  相似文献   

8.
杨云  栾伟  罗学军  李攻科 《分析化学》2004,32(6):775-778
研究了微波辅助萃取-固相微萃取联用、气相色谱-质谱联用测定土壤中除草剂扑草净的分析方法。采用正交设计实验优化了萃取溶剂种类和体积、微波辐射时间和微波功率等微波辅助萃取条件;研究了SPME萃取涂层、搅拌速度、萃取时间和解吸时间等对萃取效率的影响。方法的检出限为0.01ng/g;线性范围为0.2—200μg/L。在优化的条件下测定了5和50ng/g的合成土壤样品,回收率分别为90.1%和91.6%;相对标准偏差分别为9.4%和8.8%(n=6)。本法综合了微波辅助萃取和固相微萃取的优点,操作简便.灵敏度高,特别适合于固体样品中痕量有机物的萃取分离。  相似文献   

9.
曲栗  曾静  赵超敏  宋伟民 《色谱》2018,36(8):795-802
建立了固相萃取-气相色谱-质谱法同时测定进口海产品中11种合成麝香(开司米木、萨利麝香、粉檀麝香、葵子麝香、特斯拉、佳乐麝香、二甲苯麝香、吐纳麝香、伞花麝香、西藏麝香和麝香酮)。样品经正己烷提取,弗罗里硅土固相萃取柱净化,内标法定量。目标物在0.001~0.1 mg/L内呈良好的线性相关,相关系数(r2)均大于0.990,方法检出限(信噪比(S/N)>3)为0.35~2.08μg/kg,定量限(S/N>10)为1.18~5.00μg/kg。分别在空白基质中添加低、中、高3个水平的标准品进行回收试验,平均回收率为83.1%~117%,相对标准偏差(RSD,n=6)为5.1%~8.5%。利用该方法对2017年上海口岸进口的30个海产品进行了筛查,发现佳乐麝香在93.3%的被测样品中均有检出,含量最高达3.82μg/kg。葵子麝香和伞花麝香也是检出较多的麝香品种,含量最高分别可达15.4μg/kg和10.5μg/kg。该方法特异性强,灵敏度高,适用于海产品中多种合成麝香残留物的筛查和确证。  相似文献   

10.
采用固相微萃取-气相色谱质谱法测定烟草中的酚类物质,对影响固相微萃取的参数进行了优化。结果表明:各酚类化合物的回收率为80.0%~115.0%,检测限为0.037~0.066μg/g,测定结果的相对标准偏差不大于8.8%(n=5)。该方法操作简便、快速,灵敏度高,适合烟草中挥发性和半挥发性酚类化合物的分析检测。  相似文献   

11.
A new method of the determination polycyclic aromatic hydrocarbons (PAHs) in water samples was developed by continuous-flow microextraction (CFME) coupled with gas chromatography-mass spectrometry (GC-MS). In this experiment, 15 mL sample solution with no salt-added was flowed at the rate of 1.0 mL min−1 through 3 μL benzene as extraction solvent. Under the optimal extraction conditions, the developed method was found to yield a linear calibration curve in the concentration range from 0.05 to 15 ng mL−1. Furthermore, the accuracy and repeatability of the method were good by calculating from water samples spiked at known concentrations of PAHs, and the recovery of optimal method was satisfactory. The results showed that CFME was an efficient preconcentration method for extraction of PAHs from spiked water samples.  相似文献   

12.
Described is a solid-phase microextraction-gas chromatography-mass spectrometric procedure for the determination of three polycyclic musk fragrances (galaxolide, tonalide, celestolide) and a nitro musk fragrance (musk ketone) in natural river water. Both classes of the musk fragrances could be extracted reproducibly from water samples with a recovery in the range of 45-50% and relative standard deviation of 11-18% for fragrances at 25-260 ng/l levels. Detection limits were between 14 and 22 ng/l. To achieve this reproducibility it was necessary to use an internal standard, pentachloronitrobenzene, for all substances. Best recoveries were achieved with polydimethylsiloxane (PDMS)-divinylbenzene fibers (compared to recoveries obtained with PDMS, polyacrylate or carboxen fibers) and extraction times of 45 min at 30 degrees C, with no need for attainment of equilibrium conditions. The latter was achieved at about 2 h. For Elbe River water, in the vicinity of Magdeburg, no matrix effects were observed. While the average levels of celestolide and musk ketone for samples investigated were below the detection limits, 14 and 22 ng/l, respectively, and for tonalide below the limit of quantification, 22 ng/l, the ambient levels of galaxolide in the Elbe River were 117 ng/l.  相似文献   

13.
A novel microextraction method making use of commercial polymer fiber as sorbent, coupled with high-performance liquid chromatography-fluorescence detection for the determination of polycyclic aromatic hydrocarbons (PAHs) in water has been developed. In this technique, the extraction device was simply a length (8 cm) of a strand of commercial polymer fiber, Kevlar (each strand consisted of 1000 filaments, each of diameter ca. 9.23 μm), that was allowed to tumble freely in the aqueous sample solution during extraction. The extracted analytes were desorbed ultrasonically before the extract was injected into HPLC system for analysis. Extraction parameters such as extraction time, desorption time, type of desorption solvent and sample volume were optimized. Each fiber could be used for up to 50 extractions and the method showed good precision, reproducibility and linear response within a concentration range 0.05–5.00 μg L−1 with correlation coefficients of up to 0.9998. Limits of detection between 0.4 and 4.4 ng L−1 for seven PAHs could be achieved. The relative standard deviations (n = 3) of this technique were between 2.9% and 12.1%.  相似文献   

14.
Solid-phase extraction (SPE) and solid-phase microextraction (SPME) were evaluated for the analysis of short-chain chlorinated paraffins (SCCPs) in water samples using gas chromatography coupled to negative chemical ionisation mass spectrometry (GC-NCI-MS). For SPE optimisation, four commercially available SPE cartridges were tested and several SPE parameters, such as the elution solvent, elution volume and breakthrough volume were studied. The best results were obtained with Varian Bond Elut-C18. In order to achieve a high selectivity in the determination of SCCPs, GC-NCI-MS was used. Quality parameters of the optimised SPE and SPME procedures were determined, and the best results were obtained for the SPE/GC-NCI-MS method with LODs of 5 and 20 ng l(-1) for tap and river water, respectively. This method was successfully applied to the analysis of SCCPs in river water samples at concentrations below the microg l(-1) level.  相似文献   

15.
A solid-phase microextraction method (SPME) followed by gas chromatography with micro electron capture detection for determining trace levels of nitro musk fragrances in residual waters was optimized. Four nitro musks, musk xylene, musk moskene, musk tibetene and musk ketone, were selected for the optimization of the method. Factors affecting the extraction process were studied using a multivariate approach. Two extraction modes (direct SPME and headspace SPME) were tried at different extraction temperatures using two fiber coatings [Carboxen–polydimethylsiloxane (CAR/PDMS) and polydimethylsiloxane–divinylbenzene (PDMS/DVB)] selected among five commercial tested fibers. Sample agitation and the salting-out effect were also factors studied. The main effects and interactions between the factors were studied for all the target compounds. An extraction temperature of 100 °C and sampling the headspace over the sample, using either CAR/PDMS or PDMS/DVB as fiber coatings, were found to be the experimental conditions that led to a more effective extraction. High sensitivity, with detection limits in the low nanogram per liter range, and good linearity and repeatability were achieved for all nitro musks. Since the method proposed performed well for real samples, it was applied to different water samples, including wastewater and sewage, in which some of the target compounds (musk xylene and musk ketone) were detected and quantified. Figure Stardardized Pareto charts for the main effects and interactions  相似文献   

16.
Solid-phase microextraction method (SPME) coupled to GC/ECD has been developed and validated for the determination of phthalic acid esters (dimethyl-, diethyl-, di-n-butyl-, butylbenzyl-, di-2-ethylhexyl- and di-n-octyl phthalate) in water samples. Two types of coatings (PDMS, PA), altogether four different kinds of fibers have been investigated. Both parameters affecting the partition of analytes between a fiber coating and aqueous phase (i.e. extraction time, extraction temperature, agitation) and conditions of the thermal desorption in a GC injector were optimized. The final SPME method employing the polyacrylate fiber, extraction time 20 min, heating and stirring of the sample enabled the determination of all six phthalates in water samples. The method showed linear response over four orders of magnitude and the limits of quantification of the method ranged between 0.001 and 0.050 μg l−1. The repeatability expressed as R.S.D. was in the range 4-10% for the spiking level 7 μg l−1 of each analyte. The applicability of the developed SPME method was demonstrated for real water samples.  相似文献   

17.
《Analytica chimica acta》2004,506(1):71-80
We describe an estimation of measurement uncertainty calculated by the “bottom-up” approach for the determination of the oestrogenic compound nonylphenol in treated water samples by solid-phase extraction (SPE) and solid-phase microextraction (SPME) procedures and GC/MS detection. The results were compared and the different contributions to the uncertainty were evaluated. A study of the linear range was established and validation was performed for both methods using statistical analysis of several indicative parameters. In terms of validation data, precision (R.S.D. values <20%) and trueness (relative error <11%) were obtained for both methods under day-to-day conditions. The results of the estimation of measurement uncertainty obtained for both methods for concentrations higher than 1 μg/l have demonstrated that the time-consuming SPE method has a lower relative uncertainty (32%) than the SPME method (42.8%). The chromatographic uncertainty value was the main factor in the SPME method whereas the recovery factor (used to calculate the concentration) was the main contribution to uncertainty in the SPE method.  相似文献   

18.
A solid-phase microextraction (SPME) method was developed to quantitatively determine the amount of 6-hydroxyhexanoic acid in aqueous solutions. The SPME method in combination with GC-MS was then applied to identify and quantify the low-molecular-mass compounds migrating from a new poly(vinyl chloride) (PVC) material, PVC/polycaprolactone-polycarbonate (PCL-PC) during ageing in water. It was shown that only a small amount of 6-hydroxyhexanoic acid, the final hydrolysis product of PCL-PC, migrated from the blend during ageing at 37 and 70 degrees C. If, however, the temperature was raised to 100 degrees C rapid hydrolysis of PCL-PC resulted. In addition to 6-hydroxyhexanoic acid, 6-hydroxyhexanoic acid dimer, caprolactone, different carboxylic acids, acetophenone and phenol were identified. SPME-GC-MS was also applied to monitor the low-molecular-mass compounds migrating from the PVC/PCL-PC blend during thermo-oxidation.  相似文献   

19.
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   

20.
Summary Extra-fine powdered activated charcoal has been used as stationary phase (coating layer) in solid-phase microextraction (SPME). The efficiency and reliability of the prepared device have been investigated for the extraction of some volatile organic compounds such as benzene, toluene, ethylbenzene and xylene isomers (BTEX) from the headspace of water samples. Monitoring of the extracted compounds and further quantitative analysis of the real samples have been performed by capillary GC-FID. Effects of several factors such as temperature, addition of salt, and stirring speed on extraction efficiency and exposure time have been studied. Under optimum conditions, extraction recoveries for these compounds from 50 mL water were >95%. The calibration graphs were linear in the range 5 to 104 pg mL−1 and the detection limit for each BTEX compound was 1.5–2 pg mL−1. The results obtained by use of this porous layer activated charcoal (PLAC)-coated fiber have also been compared with results reported in the literature by use of a polydimethylsiloxane (PDMS)-coated fiber. Presented at the 21st ISC held in Stuttgart, Germany, 15th–20th September, 1996  相似文献   

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