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1.
建立了液下单液滴微萃取/快速气相色谱-质谱联用测定蔬菜中多种有机磷农药残留的方法,并对前处理条件进行了优化。采用液下单液滴微萃取技术对样品进行萃取和浓缩,以快速气相色谱-质谱(GCMS)分离检测,内标法定量。在优化条件下,治螟磷、甲拌磷、异稻瘟净、甲基对硫磷、皮蝇磷、马拉硫磷、毒死蜱、水胺硫磷和喹硫磷9种有机磷农药的色谱峰分离良好,相关系数均不低于0.995 8,检出限为0.32~0.91μg/kg,加标回收率为83.2%~134.5%,相对标准偏差(n=5)为3.4%~16.5%。该方法样品前处理简单,分析快速,灵敏度高,能够应用于蔬菜中这9种有机磷农药残留的检测。  相似文献   

2.
宋晓娟  贺心然  尹明明  万延延 《色谱》2018,36(10):1038-1044
建立了快速溶剂萃取(ASE)-气相色谱-串联质谱(GC-MS/MS)同时分析土壤中8种有机氯农药(OCPs)和5种有机磷农药(OPPs)的方法。样品由正己烷-丙酮(1:1,v/v)溶液萃取,经无水硫酸钠脱水、氮吹仪浓缩后,采用硅胶(Si)固相萃取小柱进行净化,正己烷-丙酮(1:1,v/v)溶液进行洗脱,然后经HP-5MS色谱柱(30 m×0.25 mm×0.25 μm)分离,在电子轰击电离源下以多反应监测(MRM)模式进行检测,内标法定量。分析结果表明,13种目标物在1.00~100 μg/L范围内线性关系良好,相关系数(R)大于0.995;加标回收率为66.8%~88.4%,能够实现准确定量;日内精密度与日间精密度均小于10%。当取样量为10.0 g时,8种OCPs的方法检出限为0.02~0.04 μg/kg,5种OPPs的方法检出限为0.06~0.12 μg/kg,能够满足土壤农药残留的检测要求。  相似文献   

3.
低温提取气相色谱法测定荞头中13种有机磷农药残留量   总被引:6,自引:1,他引:6  
建立了荞头中13种有机磷农药(OPPs)残留量的气相色谱分析检测方法;探讨了OPPs残留的微量化学法、低温提取及固相萃取等前处理技术。结果表明,在2℃低温条件下用乙酸乙酯、乙酸乙酯-正己烷(1 1)二次提取荞头中OPPs残留,然后用LC-Si小柱净化的效果较好。本法可同时测定荞头中13种OPPs残留量;方法的回收率在61.5%~135%(除敌敌畏)之间,精密度为2.6%~15%;多种有机磷浓度在0.020~1.0mg/kg范围有良好的线性关系(r=0.9998~0.9999);检出限为0.005~0.04 mg/kg。  相似文献   

4.
固相萃取-高效液相色谱联用分析蔬菜中5种有机磷   总被引:3,自引:1,他引:2  
建立了固相萃取(SPE)-高效液相色谱(HPLC)联用测定蔬菜中甲基对硫磷、三唑磷、乙基对硫磷、倍硫磷和辛硫磷的分析方法.采用自制Florisil SPE柱,优化了萃取溶剂、SPE柱填料类型、SPE柱填料用量和SPE淋洗溶剂等前处理条件以及HPLC仪器条件.方法线性范围为0.02~2.00μg/L;检出限介于0.10~0.17μg/g.分析加标实际样品,回收率为76.5%~109.0%,RSD为2.1%~8.0%.方法完全符合蔬菜中痕量有机磷农药残留的快速分析要求.  相似文献   

5.
采用分散固相萃取和分散液液微萃取联用方法,建立了气相色谱-串联质谱法(GC-MS/MS)同时测定蔬菜中19种有机磷农药残留量的分析方法。分散固相萃取方法以乙腈为萃取液,以N-丙基-乙二胺(PSA)和C18为吸附剂。对影响分散液液微萃取效率的因素(萃取溶剂种类及体积、分散剂体积等)进行优化,同时分析了实验过程中添加掩蔽试剂L-古洛糖酸γ-内酯(AP)对基质效应补偿作用的影响。在最佳实验条件下,19种有机磷在辣椒和大葱中3个添加水平(0.05,0.1,0.5 mg/kg)的回收率为76.9%~126.8%,相对标准偏差为0.6%~7.3%,检出限(S/N=3)为0.10~0.50μg/kg。该方法简单、高效、重现性好、富集倍数高,可用于蔬菜中有机磷农药的快速检测。  相似文献   

6.
以聚苯乙烯电纺纳米纤维为固相萃取介质填装固相萃取小柱,对白菜中的5种有机磷农药(杀扑磷、马拉硫磷、辛硫磷、丙溴磷、毒死蜱)富集净化,甲醇洗脱吸附在小柱上的农药后,用高效液相色谱-紫外检测器进行检测.对萃取次数、白菜样品提取液、洗脱液、pH值进行了优化,杀扑磷、马拉硫磷、辛硫磷、丙溴磷、毒死蜱在固相萃取小柱上的最大吸附量分别为2.9、3.5、5.6、3.7、7.8 mg/g,5种有机磷农药的平均加标回收率为68% ~97%,相对标准偏差为1.6% ~4.7%.测定喷洒5种农药后的白菜样品的萃取回收率为65% ~93%,相对标准偏差为1.6% ~4.0%,5种农药的检出限为0.02 ~0.1 mg/kg.该方法操作简单、价廉,能够用于白菜中有机磷农药的测定.  相似文献   

7.
非平衡固相微萃取联用气相色谱测定蔬菜中残留有机磷   总被引:2,自引:1,他引:1  
建立了非平衡固相微萃取与气相色谱联用测定蔬菜中残留有机磷农药的方法。探讨了影响SPME萃取效果的纤维涂层、搅拌类型、离子强度、萃取时间等因素,并对蔬菜样品的预处理进行了研究。该方法检出限分别为乙硫磷7.5 ng/g;甲拌磷2.5 ng/g;二嗪农5.0 ng/g;异硫磷5.0 ng/g;对硫磷8.3 ng/g。线性范围为0.005~1μg/mL(相关系数r=0.9968);回收率为77.6%~91.6%;相对标准偏差(RSD)为0.97%~9.0%。  相似文献   

8.
建立了分散液-液微萃取/气相色谱质谱(DLLME/GC-MS)联用技术分析蔬菜样品中甲胺磷、甲拌磷、甲基对硫磷、毒死蜱和乐果5种有机磷农药残留的新方法。优化后的萃取条件:10μL氯苯为萃取剂,1.0 mL丙酮为分散剂,萃取时间为3 m in。5种有机磷农药均具有良好的线性关系,相关系数不低于0.995,加标回收率为60%~95%,相对标准偏差为2.8%~9.1%,检出限为0.001~0.140 mg/kg。应用于蔬菜中有机磷农药残留的检测,结果满意。  相似文献   

9.
吴永慧  邓云  吕亚宁  淦五二 《色谱》2020,38(8):961-967
制备了羰基铁粉掺杂硅胶整体柱,用于拟除虫菊酯类农药残留萃取,并与气相色谱-串联质谱(GC-MS/MS)法联用,建立了在线富集、热解吸GC-MS/MS测定茶叶样品中拟除虫菊酯类农药残留方法。研究将端羟基聚二甲基硅氧烷共价键合到SiO2网络表面,并同时键合羰基铁粉。将目标分析物吸附并浓缩在聚二甲基硅氧烷位点上后,利用羰基铁粉的高频感应加热特性成功实现了GC-MS/MS直接气体进样并可达到快速、均匀解吸的目的。实验结果表明,在最佳条件下,本方法的富集倍数可达到约1000倍。拟除虫菊酯类农药残留的检出限为3.8~7.5 μg/kg,相对标准偏差为3.2%~6.8%(n=6)。该方法的提取回收率为97.7%~110.5%,相关系数≥0.9960。该法的吸附容量大,在电磁感应的条件下进行热脱附继而直接与GC-MS结合实现在线分析以及无溶剂洗脱。与常规固相微萃取(SPME)方法相比,该方法具有富集因子高、整体柱吸附容量大、可重复使用、自动化程度高、普适性好等优点。在样品前处理及复杂基质中农药残留的提取方面具有重要的研究意义。  相似文献   

10.
采用搅拌棒吸附萃取结合液相色谱-串联质谱法测定微山湖水中的马拉硫磷、三唑磷、喹硫磷、伏杀硫磷等4种有机磷农药残留。对影响有机磷农药残留吸附萃取效率的萃取涂层、样品溶液的酸度、振荡速率、萃取时间、溶液的离子强度、解吸液、解吸时间和解吸模式等因素进行了优化,确定了最佳吸附萃取条件。样品经搅拌棒萃取、解吸后,采用ZORBAX Eclipse Plus C_(18)色谱柱分离。在多反应监测模式下检测,外标法定量。4种有机磷农药的质量浓度在一定范围内与峰面积呈线性关系,检出限(3S/N)在0.16~0.73μg·kg~(-1)之间。加标回收率在72.3%~107%之间,测定值的相对标准偏差(n=6)在7.8%~11%之间。  相似文献   

11.
Magnetic solid-phase extraction (MSPE) coupled with gas chromatography–mass spectrometry was applied for the analysis of organophosphorus pesticides (OPPs) in water samples. We chose C18-functionalized Fe3O4@mSiO2 microspheres as the magnetic sorbents to extract and enrich OPPs from water samples with the advantages of good solubility in water, large surface area and fast separation ability. In this study, six kinds of OPPs were analyzed and various parameters of MSPE procedure, including eluting solvent, the amount of magnetic absorbents and extraction time were optimized. Validation experiments showed that the optimized method had good linearity with correlation coefficients r 2 > 0.98 and satisfactory precision with the relative standard deviation ≤10.7 %. The limits of detection were 1.8–5.0 μg L?1 and the limits of quantification ranged from 6.1 to 16.7 μg L?1. We concluded that the proposed method was successfully applied to analyze OPPs in real water samples and the results indicated that it had the advantages of simplicity, convenience and efficiency.  相似文献   

12.
In the present study, ionic liquid (IL)‐modified Fe3O4 magnetic nanoparticles (Fe3O4) were synthesized by the thiol‐ene click reaction for magnetic solid‐phase extraction (MSPE) of polycyclic aromatic hydrocarbons (PAHs) in water and smoked meat samples. An IL 1‐vinyl‐3‐butylimidazolium bromide was firstly synthesized, and then immobilized on the surface of thiol group‐functionalized Fe3O4 via a thiol‐ene click reaction. The as‐synthesized Fe3O4@ILs were characterized using Fourier transform infrared spectroscopy, X‐ray diffraction, and transmission electron microscopy. Various parameters (including the amount of adsorbent, extraction time, sample volume, and desorption conditions) affecting MSPE were optimized. Under the optimum conditions, the limits of detection of four PAHs in the range of 0.6–7.2 ng/L were obtained using high‐performance liquid chromatography–ultraviolet detection. The accuracy of the method was assessed by recovery measurements on spiked real samples and good recovery of 80–108% with relative standard deviations lower than 8.16% was achieved. The enrichment factors ranging from 699 to 858 were obtained for the analytes. This result indicated that the proposed method had great potential for sample preparation.  相似文献   

13.
A novel magnetic solid-phase extraction (MSPE) sorbent, magnetite/silica/poly (methacrylic acid–co-ethylene glycol dimethacrylate) (Fe3O4/SiO2/P(MAA-co-EGDMA)), was developed. This MSPE material was prepared by distillation–precipitation polymerization of MAA and EGDMA in the presence of Fe3O4/SiO2 microspheres with the surface containing abundant reactive double bonds. The resultant sorbent material was characterized by elemental analysis, electron microscopy, X-ray diffraction and Fourier-transformed infrared spectroscopy. In this work, eleven sulfonamides (SAs) were selected as model analytes to validate the extraction performance of this new MSPE sorbent. Noticeably, the extraction can be carried out quickly, the extraction time for the SAs onto Fe3O4/SiO2/P(MAA-co-EGDMA) sorbent can be clearly shortened to 0.5 min. The desorption solution of SAs was analyzed by LC–MS/MS, and the results showed that the recoveries of these compounds were in the range of 87.6–115.6%, with relative standard deviations ranging between 0.9% and 10.8%; the limit of detection were in the range of 0.5–49.5 ng/L.  相似文献   

14.
A novel magnetic material Fe3O4/SiO2/P(MAA‐co‐VBC‐co‐DVB) was prepared via the hypercrosslinking of its precursor which was produced via precipitation polymerization of methacrylic acid (MAA), vinylbenzyl chloride (VBC), and divinylbenzene (DVB) in the presence of Fe3O4/SiO2 submicrospheres with the surface containing abundant reactive double bonds. The resultant sorbent was characterized by scan electron microscopy, N2 adsorption, and Fourier transform infrared spectroscopy. It was found that this material had remarkable features such as large surface area (500 m2/g) and pore volume (0.32 cm3/g), as well as desirable chemical composition (including hydrophobic and ion‐exchange moieties). Taking advantages of the Fe3O4/SiO2/P(MAA‐co‐VBC‐co‐DVB), a magnetic SPE (MSPE) coupled with capillary electrophoresis (CE) method was developed for the determination of illegal drugs in urine samples. The extraction time could be clearly shortened up to 3 min. The recoveries of these drug compounds were in the range of 84.0–123% with relative standard deviations ranging between 1.7 and 10.5%; the limit of detection was in the range of 4.0–6.0 μg/L. The proposed method is simple, effective, and low‐cost, and provides an accurate and sensitive detection platform for abused drug analysis.  相似文献   

15.
Pathogenic bacterial contaminations in water cause serious or even lethal threats. Strategies that effectively kill bacteria without causing environmental contamination are urgently needed in a wide range of applications. We prepared recyclable antimicrobial magnetic nanoparticles, Fe3O4@P(St-co-AcQAC), through surfactant-free seeded emulsion polymerization involving a polymerizable, hydrophobic quaternary ammonium compound (QAC). Fe3O4 particles were first synthesized by a solvothermal reaction, followed by functionalization with a methacrylic silane (MPS), and then copolymerized with a QAC-containing acrylic monomer (AcQAC), leading to Fe3O4 @P(St-co-AcQAC) nanoparticles. As confirmed by antibacterial assays, these Fe3O4@P(St-co-AcQAC) nanoparticles exhibited strong antimicrobial action against both Gram-positive Staphylococcus epidermidis and Gram-negative Escherichia coli, without leaching out any bactericidal agent. An additional benefit of antimicrobial magnetic particles is that they can be easily recycled while maintaining excellent antimicrobial efficacy.  相似文献   

16.
ABSTRACT

This study describes a new magnetic solid-phase extraction (MSPE) technique based on Fe3O4/graphene oxide-soluble eggshell membrane protein (Fe3O4/GO-SEP) for accurate measurement of malachite green (MG) residue in various water samples residues by UV-Vis spectroscopy. The morphology of the prepared adsorbent has been studied by scanning electron microscopy and atomic force microscopy in details. Parameters affecting the MSPE were optimised and determined with UV-Vis spectrophotometry thoroughly. Under the optimised extraction circumstances, the introduced method represented a wide linearity over the concentration of 0.5–250 ng mL?1, a high enrichment factor of 83.3 and low detection limit of 0.2 ng mL?1. The prepared Fe3O4/GO-SEP was successfully used for preconcentration and determination of MG in river and fish farming water samples with suitable precision and accuracy.  相似文献   

17.
A magnetic solid-phase extraction (MSPE) method coupled to high performance liquid chromatography with UV (HPLC-UV) was proposed for the determination of organophosphorus pesticides (OPPs) at trace levels in environmental water samples. The ternary nanocomposite of graphene-carbon nanotube-Fe3O4 (G-CNT-Fe3O4) has been synthesised via a simple solvothermal process and the resultant material was characterised by powder X-ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM) and Fourier transform infrared (FTIR) spectroscopy. Significant factors that affect the extraction efficiency, such as amount of magnetic nanocomposite, extraction time, ionic strength, solution pH and desorption conditions were carefully investigated. The results demonstrated that the proposed method had a wide dynamic linear range (0.005–200 ng mL?1), good linearity (R2 = 0.9955–0.9996) and low detection limits (1.4–11 pg mL?1). High enrichment factors were achieved ranging from 930 to 1510. The results show that the developed method is suitable for trace level monitoring of OPPs in environmental water samples.  相似文献   

18.
A simple and sensitive method was developed for preconcentration and determination of bisphenol A (BPA) in environmental samples by high performance liquid chromatography (HPLC). The hydrophilic silicon-dioxide- and nylon66-functionalised magnetic material (Fe3O4@SiO2@nylon66) was used as a sorbent for magnetic solid-phase extraction (MSPE). With the anhydrous microemulsion reaction, the Fe3O4@SiO2@nylon66 had shown great characteristics such as good magnetic responsivity, water dispersibility and stability. Based on the materials, various extraction parameters including pH, extraction time, elution time, the number of sorbents, sample volume and elution times were optimised. The whole extraction procedure could be accomplished within 20 min and the materials could be used more than 10 times after regeneration. Under the optimised conditions, different types of water samples (Tap water, river water, sea water and underground water) were successfully analysed to verify the applicability of the proposed method. The recoveries of different samples ranged from 88.54% to 104.46%. An enrichment factor of 250 was achieved with 0.05 μg/L detection limit. Thus, the developed MSPE is a potential technique that can be used for water samples preconcentration or combined with other analytical methods for determination of BPA.  相似文献   

19.
Iron oxide@Poly(Glycidylmethacrylate‐methyl methacrylate‐divinyl benzene) magnetic composite core shell microspheres Fe3O4@P(GMA‐MMA‐DVB) with epoxy group on the surface was designed and synthesized by solvothermal process followed by distillation polymerization. The surface epoxy group was modified with amino group of ethylene diamine (EDA) to prepare Fe3O4@P(GMA‐MMA‐DVB)/NH2 microspheres, and then effects of modification on the structure, interfacial behavior and hence demulsification of the amino modified epoxy coating were examined. The prepared magnetic microspheres were characterized using a laser particle size analyzer, transmission electron microscopy, Fourier transform infrared spectroscopy, vibrating sample magnetometry, and thermogravimetric analysis. Fourier transform infrared spectrometer analysis indicates the presence of epoxy group, amino group and Fe3O4 in the final Fe3O4@P(GMA‐MMA‐DVB) and Fe3O4@P(GMA‐MMA‐DVB)/NH2 magnetic core shell microspheres. Our experimental results show that Fe3O4@P(GMA‐MMA‐DVB)/NH2 magnetic core shell microspheres exhibit good interfacial and demulsification properties and able to remove emulsified water from stable emulsion. The resulting microspheres showed excellent magnetic properties and further these can be recycled and reused by magnetic separation.  相似文献   

20.
This work describes a magnetic Fe3O4/graphene oxide (GO)-based solid-phase extraction (MSPE) technique for high performance liquid chromatography (HPLC) detection of malachite green (MG) and crystal violet (CV) in environmental water samples. Fe3O4/ GO magnetic nanoparticles were synthesised by a chemical co-precipitation method and characterised by scanning electron micrograph, transmission electron microscope, Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy and surface area analyser. The prepared Fe3O4/GO magnetic nanoparticles were used as the adsorbents of MSPE for MG and CV. By coupling with HPLC, a sensitive and cost-effective method for simultaneous determination of MG and CV was developed. The important parameters including the amount of Fe3O4/GO, pH of the sample solution, extraction time, salt effect, the type and volume of desorption solvent were investigated in detail. Under optimised conditions, the calibration curves were linear in the concentration range of 0.5–200 μg L?1, and the limits of detection were 0.091 and 0.12 μg L?1 for MG and CV, respectively. Finally, the established MSPE-HPLC method was successfully applied to determine MG and CV in environmental water samples with the recoveries ranging from 91.5% to116.7%.  相似文献   

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