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1.
将分散固相萃取和分散液液微萃取(d-SPE-DLLME)相结合,并与气相色谱-三重四极杆质谱(GC-MS/MS)联用,建立了快速测定茶叶中7种拟除虫菊酯类农药残留的方法。样品经乙腈提取,N-丙基乙二胺(PSA)和多壁碳纳米管(MWCNTs)净化,四氯化碳(CCl_4)浓缩萃取后,采用GC-MS/MS进行分析。以全发酵红茶为基质,考察了提取剂种类、萃取剂的种类和体积、分散剂体积以及萃取时间对萃取效率的影响。以乙腈为提取剂进行分散固相萃取,在进行分散液液微萃取时,以200μL CCl4为萃取剂,1 m L乙腈为分散剂,萃取时间为1 min。结果表明,7种拟除虫菊酯类农药在10~500μg/kg浓度范围内线性关系良好,定量下限为1.0~10.0μg/kg。7种农药在4种茶叶(红茶、绿茶、乌龙茶和黑茶)中4个添加水平下的平均回收率为75.4%~113.6%,相对标准偏差(RSD,n=5)不大于8.8%。该方法具有简单、快速、成本低、检出限低的特点。应用所建立的方法对12种市售茶叶样品进行检测,结果满意。  相似文献   

2.
刘丽  张琦  王海雁  冯锋  曹海荣  杨震  柯志军  陈希尧 《色谱》2017,35(8):860-866
建立了气相色谱-串联质谱定量检测花茶、绿茶、红茶和黑茶4类茶叶中氟氯氰菊酯、氯氰菊酯和氰戊菊酯3种拟除虫菊酯农药残留量的方法。样品采用乙腈进行提取,优化洗脱液配比,选择Carb/NH2和SLH双柱串联净化富集。采用外标法定量,30 min内完成农药残留检测。3种拟除虫菊酯的检出限分别为0.4、1.0和0.3μg/kg,在0.05~2.00 mg/kg内线性关系良好,相关系数均大于0.999。在0.10、0.50和2.00 mg/L 3个添加水平下,空白加标样品的回收率为80.6%~116.3%。茶叶实际样品检测结果的日内相对标准偏差(RSD)为1.3%~12.6%,日间RSD为2.7%~12.1%。该法操作简单,重现性好,适用于茶叶中拟除虫菊酯类农药残留的检测。  相似文献   

3.
建立了羟基化多壁碳纳米管作为吸附剂的改进Qu ECh ERS方法,联合气相色谱-质谱联用法快速检测茶叶中24种有机氯农药和拟除虫菊酯类农药残留量。茶叶样品中的农药残留经正己烷-丙酮(2∶1)提取,以羟基化多壁碳纳米管(MWCNTs-OH)和N-丙基乙二胺键合固相吸附剂(PSA)吸附提取液中的杂质,提取液离心后过滤,经气相色谱-电子轰击源质谱法测定,外标法定量。研究了不同吸附剂种类、提取溶剂、吸附剂用量对提取净化效率的影响。在优化实验条件下,目标物质在0.01~0.50 mg/kg范围内线性关系良好。空白茶叶样品在低、中、高3个加标水平下的平均回收率为78.6%~109.6%,相对标准偏差(n=5)为2.1%~9.3%;方法的定量下限为0.002~0.050 mg/kg。该方法操作简单、快速、灵敏、成本低,能满足茶叶中常见有机氯和拟除虫菊酯类农药残留的检测要求,特别适合在小型实验室和企业中推广使用。  相似文献   

4.
建立了快速滤过型净化(m-PFC)结合气相色谱-串联质谱(GC-MS/MS)测定茶叶中10种拟除虫菊酯类农药残留的方法。比较了采用不同提取溶剂(乙腈、丙酮和乙酸乙酯)和不同提取方式(不加水浸泡和加水浸泡)时10种农药的提取效率;比较了2种QuEChERS净化管和m-PFC柱对茶叶提取液的净化效果和农药残留的回收率。结果表明,茶叶样品不加水浸泡,用乙腈提取效果最好;m-PFC柱对茶叶提取液净化效果良好,而且能保证较高的农药回收率。10种拟除虫菊酯农药在相应的范围内有良好的线性关系,相关系数(R2)大于0.9980;10种农药在4个水平添加下的回收率为87.5%~111.3%,RSD为2.1%~8.9%。方法的检出限为0.001~0.015 mg/kg,定量限为0.003~0.05 mg/kg。利用该方法检测市售50例茶叶样品中10种拟除虫菊酯农药的残留,检出率为48%,但农药残留量均在国家标准限量值以下。与传统QuEChERS法和固相萃取法相比,该方法具有操作简单、准确度和精密度良好等优点,为多种拟除虫菊酯类农药在茶叶中的残留测定提供了快速检测的新方法。  相似文献   

5.
采用基质固相分散法从3种基质(白菜、梨、鸡肉)中提取、净化28种拟除虫菊酯类农药,用气相色谱-质谱(GC-MS)法进行检测.通过对基质固相分散的条件,如吸附剂、洗脱剂、洗脱体积等参数进行优化,建立了3种基质中28种拟除虫菊酯类农药残留分析的前处理方法.利用所建立的方法进行0.01 mg/kg、0.02 mg/kg和0....  相似文献   

6.
黄微  李娜  徐瑞晗  李婷  李崇勇 《色谱》2018,36(12):1303-1310
建立了加速溶剂萃取(ASE)-固相萃取净化(SPE)-气相色谱-串联质谱(GC-MS/MS)同时测定茶叶中9种拟除虫菊酯类农药残留的方法。ASE萃取溶剂为丙酮-正己烷(1:1,v/v),萃取温度为100℃,萃取压力为10 MPa,加热时间为3 min,静态萃取时间为5 min,循环1次,冲洗体积为40%萃取池体积,氮气吹扫100 s。萃取结束后用Cleanert TPT固相萃取柱净化,净化液浓缩定容后,采用GC-MS/MS测定,外标法定量。9种拟除虫菊酯类农药在2~1000 μg/L范围内呈现良好的线性关系,相关系数(r2)均大于0.99,方法检出限为0.2~4.5 μg/kg,定量限为0.8~15.0 μg/kg。在绿茶、红茶空白基质中做加标回收试验,添加水平为0.02、0.1、0.4 mg/kg以及定量限水平,得到的平均回收率为69.87%~110.0%,相对标准偏差(RSD)为0.7%~11.2%。该方法背景干扰低、灵敏度高、重现性好、回收率稳定,适用于茶叶中拟除虫菊酯类农药残留量的检测。  相似文献   

7.
建立了8种植物提取物中15种拟除虫菊酯类农药残留的气相色谱-三重四级杆串联质谱(GC-MS/MS)分析方法。试样经正己烷提取,弗罗里硅土(Florisil)固相萃取小柱净化,采用GC-MS/MS法在多反应离子监测(MRM)模式下进行检测,外标法定量。结果表明,15种拟除虫菊酯农药在0.008~1.0mg/L范围内线性关系良好,相关系数(r2)均大于0.9989;加标回收率为63.4%~133.0%;RSD为2.9%~17%(n=6);方法的定量限(LOQ)为0.001~0.06mg/kg。方法适用于石榴皮等8种植物提取物中15种拟除虫菊酯类农药残留的定性、定量分析。  相似文献   

8.
采用QuEChERS前处理技术,结合内标前置法建立了气相色谱-串联质谱同时检测茶叶中37种农药残留的方法,待测农药包括14种有机磷类、10种有机氯类、8种拟除虫菊酯类和5种有机杂环类。比较了提取溶剂、加水量、内标放置方式对37种农药提取效果的影响,考察了不同类型茶叶的基质效应,确定最优的实验条件为:茶叶样品加入内标后,加水浸泡,经乙腈超声提取,QuEChERS法净化,采用气相色谱-串联质谱仪多反应离子监测模式(MRM)进行检测,基质匹配标准曲线内标法定量。结果表明:内标前置法比内标后置法的回收率高,绿茶、红茶、白茶、黑茶基质均以基质增强效应为主。在优化实验条件下,37种农药在相应的质量浓度范围内呈良好的线性关系,相关系数(r2)均大于0.99。方法检出限(LOD)为0.2~15.7 μg/kg,定量下限(LOQ)为0.7~52.2 μg/kg。37种农药在LOQ、2LOQ和10LOQ 3个加标水平下的回收率为70.2%~120%,相对标准偏差(RSD)为1.1%~11%。该方法操作简单、准确高效、成本较低,适用于茶叶中农药多残留的日常检测。  相似文献   

9.
采用亲水作用色谱-串联质谱(HILIC-MS/MS)测定茶叶中的杀螟丹农药残留。样品经乙腈-甲醇-乙酸(93:5:2)提取,C18固相萃取(SPE)或GCB与C18分散固相萃取(d-SPE)净化。以乙腈-10mmol/L乙酸铵为流动相,ZIC-HILIC色谱柱分离,电喷雾电离(ESI),多反应监测模式(MRM)质谱检测。结果表明,基质效应随着茶叶种类、样品质量的变化而变化。杀螟丹在0.005~0.5mg/L范围内线性关系良好(r2≥0.998),方法的定量下限(LOQ)为0.008mg/kg(绿茶)和0.005mg/kg(红茶)。采用绿茶和红茶基质进行1倍、5倍、10倍LOQ 3个水平的加标回收率实验,测得回收率为70%~89%,相对标准偏差(RSD)低于6%。该方法灵敏、准确,满足茶叶中杀螟丹农药残留检测的要求。  相似文献   

10.
建立快速、准确测定果蔬中5种拟除虫菊酯类农药残留量的方法。采用漩涡振荡提取农药残留,固相萃取柱净化,毛细管柱气相色谱法-μECD检测器测定。该法可同时分离检测5种拟除虫菊酯类农药残留,检出限为0.001~0.005μg/mL。拟除虫菊酯类农药残留量在0.01~1μg/mL范围内与色谱峰高线性关系良好,相关系数大于0.9998。测定结果的相对标准偏差为4.8%~10.5%(n=6),回收率为89.9%~105.0%。  相似文献   

11.
建立了浊点萃取-异辛烷反萃取-气相色谱(ECD)检测茶叶中联苯菊酯(Bifenthrin)、甲氰菊酯(Fenpropathrin)、功夫菊酯(Cyhalothrin)、氯菊酯(Permethrin)、氰戊菊酯(Fenvalerate)、溴氰菊酯(Deltamethrin)6种拟除虫菊酯农药残留的方法.对含1.2%(m/V)聚乙二醇6000(PEG6000)表面活性剂和40%(m/V)(NH4)2SO4的6种拟除虫菊酯溶液进行加热萃取,所获得的富集相用异辛烷超声反萃取,并经离心对上层异辛烷溶液进行进一步净化处理,即可获得富集倍数达75倍的6种农药.本方法的检出限(LOD)为:联苯菊酯、甲氰菊酯和功夫菊酯0.4 μg/kg;氰戊菊酯2.1 μg/kg;氯菊酯和溴氰菊酯3.0 μg/kg;用本方法测定了新鲜茶叶中6种拟除虫菊酯农药,含量分别为4.17, 4.15, 4.09, 4.01, 3.93和3.51 μg/kg.在上述茶叶样品中添加20 μg/kg 的6种农药后测定,添加回收率为72.3%~85.6%; 相对标准偏差为2.2%~5.6%.  相似文献   

12.
A quantitative method consisting of solid-phase extraction (SPE) followed by liquid chromatography/electrospray ionization ion trap mass spectrometry (LC/ESI-ITMS) analysis was developed for the identification and quantitation of ten pyrethroid pesticides commonly used in vegetables. The best HPLC separation was achieved using a gradient program of methanol/water mixture. For the vegetable samples, an SPE procedure to clean up the matrices was carried out prior to LC/MS analysis. Under the optimum conditions, the limits of quantification of the pyrethroid pesticides (tetramethrin, allethrin, fenpropathrin, lambda-cyhalothrin, cypermethrin, deltamethrin, fenvalerate, bioresmethrin, permethrin and bifenthrin) ranged from 0.03 to 0.1 mg kg-1 with relative standard deviations<20%, and the mean recoveries ranged from 69.5 to 102.5%. The proposed method has been successfully applied to the determination of pyrethroids in six vegetables with satisfactory results.  相似文献   

13.
A gas chromatographic method was developed for the simultaneous determination of 12 pyrethroids (tefluthrin, bifenthrin, fenpropathrin, cyhalothrin, permethrin, cyfluthrin, cypermethrin, alpha-cypermethrin, flucythrinate, fenvalerate, fluvalinate, and deltamethrin) in tomato puree, peach nectar, orange juice, and canned peas. A miniaturized extraction-partition procedure requiring small amounts of nonchlorinated solvents is used. Samples are extracted with acetone, partitioned with ethyl acetate-cyclohexane (50 + 50, v/v), and cleaned up on a Florisil cartridge. The final extract is analyzed by gas chromatography with both electron capture and mass spectrometric detection modes. Studies at fortification levels of 0.010-0.100 mg/kg gave mean recoveries ranging from 70.2 to 96.0% and coefficients of variation between 4.0 and 13.9% for all compounds. Quantitation limits were < 0.010 mg/kg for electron capture detection.  相似文献   

14.
纳米纤维在分析菊酯类农药残留中的应用   总被引:1,自引:0,他引:1  
以电纺聚苯乙烯纳米纤维作固相萃取材料,对茶叶样品中的拟除虫菊酯农药进行分离富集,用气相色谱-电子捕获器进行检测,并对影响纤维萃取效率的因素进行优化,联苯菊酯、氯菊酯、氰戊菊酯、溴氰菊酯和甲氰菊酯在纳米纤维柱上的最大吸附量分别为7.8、7.5、7.2、6.6、7.0μg/mg,5种农药的3种标准混合液通过纳米纤维小柱后回收率为65.5%~89.0%,RSD为1.2%~3.0%。测定喷洒5种农药后的茶叶样品添加回收率为61.3%~87.1%,RSD为0.9%~2.8%,方法的测定下限为1.0×10-4~1.0×10-2mg/kg。该方法可以满足茶叶中拟除虫菊酯类农药残留检测的要求。  相似文献   

15.
Graphene‐grafted ferroferric oxide microspheres were used as the adsorbent to extract some pyrethroid pesticides (bifenthrin, λ‐cyhalothrin, cyfluthrin, cypermethrin, fenvalerate, and deltamethrin) from orange and lettuce samples prior to their determination by GC–MS. The main variables that could affect the extraction, including the amount of the adsorbent, pH of the sample solution, extraction time, concentration of salt, and desorption conditions, were investigated and optimized. Under the optimized conditions, a linear response was obtained in the concentration range of 0.3–100.0 ng/g for the analytes with the coefficients of determination ranging from 0.9877 to 0.9925. The LODs for the pyrethroids ranged from 0.01 to 0.02 ng/g. The method provided a good repeatability with RSDs < 10.6%. The recoveries for the six pyrethroid pesticides were in the range from 90.0 to 103.7%. The method was applied to the determination of the pesticides in orange and lettuce samples with a satisfactory result.  相似文献   

16.
Magnetic CoFe2O4‐embedded porous graphitic carbon nanocomposites were prepared through a facile solid‐phase thermal reaction with NaCl as a template. The material was applied in the magnetic solid‐phase extraction process coupled with high performance liquid chromatography with a diode array detector to detect the trace fenpropathrin, cyhalothrin, S‐fenvalerate, and bifenthrin in different water samples. The synthesis conditions of nanomaterial including glucose concentration and calcination time on extraction performance for pyrethroid pesticides have been investigated. Different magnetic solid‐phase extraction parameters have been studied, such as the nanomaterial amount, solution pH, eluent types, adsorption time, and the reusability. Under the optimum conditions, good recoveries (80.2–110.9%) were achieved with relative standard deviations of 0.2–5.8%. There are probably hydrophobic interactions and dipole–dipole attractions between nanocomposites and the analytes.  相似文献   

17.
Huang Y  Zhou Q  Xiao J 《The Analyst》2011,136(13):2741-2746
This paper described a new method for the enrichment and determination of pyrethroid pesticides from environmental water samples with ordered TiO(2) nanotube array micro-solid phase equilibrium extraction (μ-SPEE) prior to gas chromatography (GC) with electron capture detection (ECD). Several factors such as the anodization voltage, the kind of organic solvents, sample pH, equilibrium extraction time, desorption time and salting-out effect were optimized. Under the optimal conditions, ordered TiO(2) nanotube arrays demonstrated excellent merits on the preconcentration of pyrethroid pesticides and good detection limits were achieved as 0.018, 0.020, 0.031, 0.041, and 0.070 μg L(-1) for bifenthrin, fenpropathrin, cyhalothrin, fenvalerate, and deltamethrin, respectively. Four real water samples were used to validate the proposed method and the spiked recoveries were over the range of 81.9-110.6%. Compared to conventional solid phase extraction (SPE), the present method showed better recoveries and good reproducibility. These results showed that this μ-SPEE technique could be an important alternative to multistep SPE for the extraction and determination of such analytes in complex samples and become a useful tool in monitoring such analytes in the environment.  相似文献   

18.
Ramesh A  Balasubramanian M 《The Analyst》1998,123(9):1799-1802
A simple and rapid solid-phase extraction (SPE)-GC method for the preconcentration and quantification of pyrethroids at low nanogram levels in oils and high fat content samples is presented. The method was studied using seven highly persistent pyrethroid insecticides, viz., cypermethrin, deltamethrin, fenvalerate, cyfluthrin, allethrin, cyhalothrin and permethrin. Preconcentration was achieved by treating the oil samples with methyltrioctylammonium chloride and subsequent elution of the pyrethroid molecules from a graphitized carbon black SPE cartridge using 5 ml of acetonitrile. Pyrethroid quantification was achieved by GC with electron capture detection. Recoveries of the pyrethroids at fortification levels of 0.05-0.5 ppm were 94-105%. Storage on graphitized carbon black for 30 d lowered the recovery of the pyrethroids by only 3-6%. The method compared well with results obtained by a GC-MS method. The relative standard deviation at a concentration level of 0.05-0.2 microgram ml-1 ranged from 1.31 to 5.16%. The limit of detection achieved was 0.002 microgram ml-1 without any additional clean-up and with little interference from lipids during analysis.  相似文献   

19.
通过合成羟基聚甲基苯基硅氧烷(PMPS-OH)材料,制备固相微萃取(SPME)纤维涂层.通过与商品化聚二甲基硅氧烷(PDMS)、聚丙烯酸酯(PA)和PDMS/聚二乙烯基苯(DVB)纤维对六六六异构体(α,β,γ,δ-BHC)、DDT及其衍生物(p,p′-DDD,p,p′-DDE,o,p′-DDT,p,p′-DDT)、联苯菊酯、甲氰菊酯、高效氟氯氰菊酯、三氟氯氰菊酯、氯氰菊酯和氰戊菊酯等选定农药萃取效果的比较,所制备的PMPS-OH纤维具有更好的萃取效率.对SPME实验条件进行了研究和优化,测定方法对各种农药的线性范围多在0.01~2 ng/g之间,相应的检出限在0.001~0.05 ng/g范围,回收率在50.5%~103%.方法已被应用于蔬菜样品中农残的检测.  相似文献   

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