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1.
建立了极性搅拌棒吸附萃取-热脱附-气相色谱/质谱(GC/MS)法测定主流烟气捕集液中苯酚、邻甲酚、间甲酚、对甲酚4种酚类物质的分析方法。利用人工唾液收集主流烟气制备待测样品,样品用极性搅拌棒在室温下以900r/min吸附萃取60min;热脱附温度220℃,热脱附时间3min,冷阱温度-50℃进行热脱附后,通过GC/MS法进行分离检测。上述4种酚类物质在5~200μg/L范围内响应峰面积与其浓度呈良好的线性关系(r0.99),检出限在0.8~3.6μg/L之间,3个添加浓度(10、50、100μg/L)水平的平均回收率在82.8%~112.6%之间,相对标准偏差(RSD,n=5)为4.6%~12.2%。该方法操作简便,溶剂消耗少,灵敏度高,适用于烟气捕集液中苯酚、邻甲酚、间甲酚和对甲酚的分析检测。  相似文献   

2.
建立了闭路循环动态针捕集/气相色谱-质谱测定卷烟烟丝中挥发性化学成分的方法,优化了采集模式、捕集与解吸条件,考察了动态针捕集(NT)的解吸率,并与固相微萃取方法进行了对比。结果表明,填充Carboxen1000的捕集针,在样品加热温度为80℃,以3 m L/min流速浸入式闭路循环捕集30 min,并在250℃下解吸5 min为最佳条件;在卷烟烟丝中共检出有机酸、酯、醛、醇类等45种化合物,其中相对标准偏差(RSD)小于5%的有27种,占化合物数量的60%。NT捕集方式的灵敏度、重复性均优于固相微萃取,更适用于卷烟烟丝中挥发性成分分析。  相似文献   

3.
氟氯烃(Chlorofluorocarbons,CFCs)是一类重要的温室气体,可作为示踪剂应用于海洋学中.本研究建立了一套吹扫捕集系统以分析海水中CFCs.对吹扫捕集系统测定条件进行了考察,优化的实验条件为:捕集温度-60℃,吹扫时间8 min,吹扫气流速20 mL/min,脱附时间1.5 min,脱附温度130℃.本方法简单、灵敏,CFC-11,CFC-12,CFC-113及CCl4(Carbon tetrachloride)的检出限分别为0.004,0.008,0.001及0.006 pmol/L,回收率分别为99.92%±1.77%,98.77%±1.50%,98.95%±3.92%及97.13%±1.78%,标准工作曲线的线性相关系数均大于0.99.本方法成功应用于27次南极科学考察期间采集的普里兹湾水样的测定.  相似文献   

4.
建立了集萃取与净化于一体的加速溶剂/固液固萃取(AS/SLSE)卷烟烟气中痕量苯并[a]芘(BaP)的样品前处理方法。卷烟烟气经捕集后,用AS/SLSE提取和净化,萃取液浓缩后进行色谱分析。优化了AS/SLSE吸附剂、萃取温度、吹扫体积、静态萃取时间及循环次数等条件。在优化条件下(5 g硅镁型吸附剂、萃取温度100℃、吹扫体积40%、静态萃取时间3 min循环2次,样品连续萃取3次),AS/SLSE-气相色谱/质谱法(GC/MS)分析卷烟烟气中苯并[a]芘方法的检出限为1.0μg/L,回收率为97.1%,相对标准偏差(RSD)为2.5%。方法成功用于卷烟烟气样品的分析,测定结果与国家标准推荐方法吻合。  相似文献   

5.
侯英  杨蕾  王保兴  徐济仓  杨勇  杨燕  曹秋娥  谢小光 《色谱》2006,24(6):601-605
应用搅拌棒吸附萃取法(SBSE)提取烟用香料的化学成分,并利用热脱附(TD)和色谱-质谱联用(GC-MS)进行分析。对影响萃取效果的因素(萃取时间和氯化钠的加入量)进行了考察,并采用正交试验法对影响热脱附的3个主要因素(脱附温度、脱附时间和冷阱温度)进行了优化,得到了较优的实验条件。对方法的重现性进行了考察,同一样品6次测定所得30个组分的峰面积的相对标准偏差(RSD)平均值小于10%,说明所建立方法的重现性较好。在样品中鉴别出酯类、酮类和醛类等30种不同化学组分,这些物质反映了该香料的香气特点。实验证明SBSE和TD适用于烟用香料的快速分析测定。  相似文献   

6.
常温吹扫捕集-气相色谱法测定海水中氧化亚氮   总被引:4,自引:0,他引:4  
陈勇  袁东星  李权龙 《分析化学》2007,35(6):897-900
建立了海水中氧化亚氮的常温吹扫捕集-气相色谱检测方法。对吹扫捕集系统的条件进行了考察,优化结果如下:捕集温度30℃,脱附温度250℃,吹扫时间10min,吹扫气流速20mL/min。等实验条件进行了优化。本方法操作简单、灵敏、重现;检出限达2.8×10-10mol/L,标准工作曲线的线性相关系数大于0.9995(n=5);曲线斜率的相对标准偏差为2.8%(n=5);回收率为93.93%±3.1%(n=5)。用此方法测定了厦门近海表层海水样品中氧化亚氮的浓度。  相似文献   

7.
建立吹扫捕集-气相色谱-质谱法测定土壤和地下水中四氢呋喃。最佳的吹扫捕集条件:吹扫温度为40℃,吹扫时间为15 min,脱附温度为250℃,脱附时间为2 min。四氢呋喃的质量浓度在10~200μg/L范围内与色谱峰面积线性关系良好,相关系数不小于0.990。土壤和地下水中四氢呋喃的检出限分别为1.5、1.4μg/L,标准样品平均加标回收率分别为84.5%、77.2%,测定结果的相对标准偏差分别为3.3%、5.8%(n=6)。该方法适用于土壤和地下水中四氢呋喃含量的检测。  相似文献   

8.
建立吹扫捕集气相色谱-质谱法测定水中丙酮和丁酮的检测方法。对吹扫捕集条件进行优化,吹扫温度为20℃,吹扫时间为11 min,脱附温度为245℃,脱附时间为2 min。在全扫描模式下进行定性分析,在选择性离子扫描模式下进行定量分析。在优化实验条件下,丙酮和丁酮的质量浓度在5~200μg/L范围内与其响应值呈良好线性关系(r~2≥0.990),检出限分别为0.01,0.05μg/L,加标回收率分别为100.8%~116.9%,84.5%~101.4%,测定结果的相对标准偏差分别为0.94%~4.83%,0.67%~2.69%(n=6)。该方法检出限低,精密度、准确度高,适用于生活饮用水、地表水、地下水、生活污水和工业废水中丙酮和丁酮的分析。  相似文献   

9.
采用热脱附/冷阱捕集提取土壤中的挥发性有机物,以17种VOCs作为目标研究对象进行挥发性有机物的提取条件研究。试验确定的提取条件为:热脱附温度300℃,热脱附时间3 min,冷阱捕集温度–10℃。优化条件后添加水平为1 mg/kg的加标土壤样品测定结果在0.75~0.94 mg/kg之间,相对标准偏差为2.89%~7.16%。  相似文献   

10.
利用离子液体1-丁基-3-甲基咪唑双三氟甲烷黄酰亚铵盐[BMIM][NTF2]作为富集剂,建立了离子液体富集-热脱附-气相色谱-质谱联用(ILs-ATD-GC-MS)快速测定室内空气中5种邻苯二甲酸酯类物质(DMP、DEP、DBP、BBP、DEHP)和2种多溴联苯醚(PBDE-28、PBDE-47)半挥发性有机物的方法。采用白色担体负载[BMIM][NTF2]离子液体,主动采样的方式来进行采样,离子液体的负载量为15%,采样流量为1 L/min,采样时间为90 min;热脱附的条件为:二阶段脱附模式,脱附气体为氦气;第一阶段样品管脱附,脱附温度280℃,脱附时间15 min,脱附流速50 mL/min;冷阱捕集温度0℃,第二阶段冷阱脱附,脱附温度280℃,脱附时间5 min,升温速率40℃/s,阱前阱后均无分流;六通阀温度230℃,传输线温度280℃;气相色谱质谱的条件为:初始温度为100℃保持1 min,以10℃/min的速率升至200℃,再以6℃/min的速率升至250℃,保持10 min。本方法的检出限为0.001~0.014 ng,回收率为97.1%~113.8%,相对标准偏差RSD为3.3%~9.9%。对来自于北京市区内10个办公室的空气样品进行了测定。在这些样品中,主要检测到DMP,DEP,DBP,DEHP这4类物质,浓度在189.4~2074 ng/m3之间。结果表明,离子液体能够作为空气中SVOCs的富集材料,进一步开拓了离子液体应用的领域。  相似文献   

11.
The investigation of flower scent represents an important field of modern biological research which is directed towards special theories of biological recognition. The headspace solid phase microextraction coupled with gas chromatography-mass spectrometry was used to identify the volatile components of Carum copticum (C. copticum) cultivated in Iran. The compounds were identified according to their retention indices and mass spectra (EI, 70 eV). The effects of different parameters, such as the desorption time, the extraction temperature, the sample mass, the addition of salt, the pre-equilibration time and the extraction time, on the extraction efficiency were investigated. The optimized conditions were: the desorption time, 2 min; the extraction temperature, 58 degrees Celsius; the sample mass, 1.000 g in 4.0 mL 2.0 M NaCl solution; the pre-equilibration time, 25 min; the extraction time, 20 min. Finally, ten components were identified in the volatile components of C. copticum. The major components of C. copticum were thymol (68.2%), gamma-terpinene (13.9%), p-cymene (11.6%), myrcene (1.0%) and beta-pinene (0.6%). Precision of the proposed method is good and %RSD less than 14 was obtained.  相似文献   

12.
A novel magnetic method using polystyrene modified magnetic nanoparticles to perform thermoheadspace extraction was successfully developed for extraction and preconcentration of volatile organic components in dry Traditional Chinese Medicine(TCM) based on gas chromatography-ion trap/mass spectrometry with a Chromato Probe direct sample introduction device. The dried fruit of Amomum testaceum Ridl. was used as the object TCM. The optimum parameters of headspace magnetic solid-phase extraction were investigated, in which desorption solvent ethyl acetate played a key role in this method,and the headspace extraction temperature of 90℃ and the headspace extraction time of 15 min finally decided. Headspace solid-phase microextraction method was also used to analyze volatile compounds in the TCM to compare with the proposed method. The results show that 60 components were identified totally by two methods; most of the low boiling point chemical compounds are isolated by this new method. In this work, an environmental-friendly and cheap analytical method was established, and a new approach to analyze volatile compounds in dry Traditional Chinese Medicine was also provided.  相似文献   

13.
Highly porous polyaniline/hexagonally ordered silica sorbent was used for fabrication of the inside needle capillary adsorption trap (INCAT) device. Polyaniline/SBA-15 nanocomposite was synthesized via chemical polymerization technique. The fabricated INCAT device was evaluated to the extraction of some polycyclic aromatic hydrocarbons (PAHs) from aqueous sample solutions in combination with gas chromatography (GC)-mass spectrometry (MS). A one at-the-time optimization strategy was applied for optimizing the important extraction parameters such as extraction temperature, extraction time, ionic strength, sampling flow rate, desorption time, and desorption temperature. In optimum conditions (extraction temperature 55 °C, extraction time 20 min, ionic strength 20% (w/v), flow rate 4.5 mL min(-1), desorption temperature 270 °C, desorption time 3 min) the repeatability for one INCAT device (n = 4), expressed as relative standard deviation, was between 4.2 and 10.2% for the tested compounds. The quantitation limits for the studied compounds were between 1 and 5 pg mL(-1). The developed method was successfully applied to spring water sample which was spiked with PAHs with the relative recovery percentages of 87.3-109.1%. The developed method offers the advantage of being simple to use, with shorter analysis times, lower cost of equipment, and thermal stability.  相似文献   

14.
An analytical procedure based on in‐tube extraction followed by gas chromatography with mass spectrometry has been developed for the analysis of 24 of the main volatile components in cape gooseberry (Physalis peruviana L.) samples. According to their chemical structure, the compounds were organized into different groups: one hydrocarbon, one aldehyde, four alcohols, four esters, and 14 monoterpenes. By single‐factor experiments, incubation temperature, incubation time, extraction volume, extraction strokes, extraction speed, desorption temperature, and desorption speed were determined as 60°C, 20 min, 1000 μL, 20, 50:50 μL/s, 280°C, 100 μL/s, respectively. Quantitative analysis using authentic standards and external calibration curves was performed. The limit of detection and limit of quantification for the analytical procedure were calculated. Results shown the benzaldehyde, ethyl butanoate, 2‐methyl‐1‐butanol, 1‐hexanol, 1‐butanol, α‐terpineol, and terpinen‐4‐ol were the most abundant volatile compounds in analyzed fruits (68.6–585 μg/kg). The obtained data may contribute to qualify cape gooseberry to the group of superfruits and, therefore, increase its popularity.  相似文献   

15.
A highly porous fiber-coated SBA-15/polyaniline material was prepared for solid-phase microextraction (SPME). The SBA-15/polyaniline nanocomposite was synthesized via chemical polymerization. The prepared SBA-15/polyaniline particles were analyzed by scanning electron microscopy analysis. The prepared nanomaterial was immobilized onto a stainless steel wire for fabrication of the SPME fiber. The fiber was evaluated for the extraction of some polycyclic aromatic hydrocarbons (PAHs) from aqueous sample solutions in combination with gas chromatography-mass spectrometry (GC-MS). In optimum conditions (extraction temperature 60°C, extraction time 40 min, ionic strength 20%, stirring rate: 500 rpm, desorption temperature 260°C, desorption time 2 min), the repeatability for one fiber (n=3), expressed as relative standard deviation (RSD%), was between 5.3 and 8.6% for the test compounds. For deionized water, spiked with selected PAHs, the detection limits for the studied compounds were between 2 and 20 pg/mL.  相似文献   

16.
采用顶空固相微萃取-气相色谱-质谱联用(HS-SPME-GC-MS)分析麦冬中挥发性成分,对萃取温度、时间、脱附时间及样品用量等条件进行了优化,方法所得结果与同时蒸馏萃取-气相色谱-质谱联用(SDE-GC-MS)方法比较,相对含量较高的成分基本一致.固相微萃取方法可应用于麦冬中有机挥发性成分的快速分析.  相似文献   

17.
In this work, zinc oxide/polypyrrole nanocomposite coating was fabricated on stainless steel and evaluated as a novel headspace solid‐phase microextraction fiber coating for extraction of ultra‐trace amounts of environmental pollutants, namely, phthalate esters, in water samples. The fiber nanocomposite were prepared by a two‐step process including the electrochemical deposition of polypyrrole on the surface of stainless steel in the first step, and electrochemical deposition of zinc oxide nanosheets in the second step. Porous structure together with zinc oxide nanosheets with the average diameter of 30 nm were observed on the surface by using scanning electron microscopy. The effective parameters on extraction of phthalate esters (i.e., extraction temperature, extraction time, desorption temperature, desorption time, salt concentration, and stirring rate) were investigated and optimized by one‐variable‐at‐a‐time method. Under optimized conditions (extraction temperature, 90°C; extraction time, 40 min; desorption temperature, 270°C; desorption time, 5 min; salt concentration, 25% w/v; and stirring rate, 1000 rpm), the limits of detection were in the range of 0.05–0.8 μg/L, and the repeatability and fiber‐to‐fiber reproducibility were in the ranges of 6.1–7.3% and 8.7–10.2%, respectively.  相似文献   

18.
C18-MCM-41新型涂层在固相微萃取中的应用   总被引:2,自引:1,他引:1  
固相微萃取(SPME)是集采样、萃取和富集于一体的样品前处理技术,该技术于1990年由Pawliszyn提出。由于其不使用有机溶剂,且简便、快速、样品用量少,因而,倍受分析工作者的青睐。  相似文献   

19.
郭友嘉  戴亮  杨兰萍  任清 《色谱》1994,12(1):11-19
为了观察福州茉莉花源质量的稳定性,曾时其精油成分作过连续三年的成分研究 ̄[1]。本文继续对净油和头香成分作进一步探讨。本实验室用溶剂提取和用冷乙醇分离花蜡来获得净油.用低温吸附和溶剂洗脱获得头香样品。采用石英毛细管气相色谱(CGC)和色谱-质谱(CGC-MS)对成分进行剖析。实验结果对福州茉莉花源质量随气候变化的规律 ̄[1]作了进一步地确认。  相似文献   

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