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1.
建立了水中15种酞酸酯的液液萃取/固相萃取—气相色谱测定方法。就液液萃取探讨了萃取溶剂、萃取溶剂用量和水样pH值的影响,就固相萃取探讨了固相萃取柱、水样pH值和洗脱溶剂的影响。根据研究结果,确定液液萃取条件为调节pH至7,以二氯甲烷为萃取溶剂,萃取5 min;固相萃取条件为水样调节pH至7,经C18柱萃取后,以正己烷/丙酮混合溶剂(V∶V=5∶1)洗脱。测定15种酞酸酯类化合物的实际水样,液液萃取加标回收率为68%~128%,固相萃取加标回收率为65%~135%;液液萃取方法检出限为0.36~0.47μg/L,固相萃取方法检出限为0.20~0.39μg/L。  相似文献   

2.
采用固相萃取-气相色谱/质谱法测定水中15种酞酸酯类化合物,确定方法的最优条件为:依次用10 m L正己烷和丙酮混合溶剂(V/V=5∶1)、甲醇和空白试剂水活化C18固相萃取柱后,水样以5 m L/min过柱萃取,再以8 m L正己烷:丙酮(V/V=5∶1)混合溶剂洗脱后,浓缩至1 m L,进气相色谱/质谱测定。该法的检出限为0.18~0.38μg/L,在0.50~20.0 mg/L范围内线性良好,相关系数均0.996。空白水样的加标回收率为71.8%~120%,相对标准偏差为1.73%~12.7%;实际废水水样的加标回收率为64.8%~135%,相对标准偏差为2.75%~18.0%。  相似文献   

3.
利用超高效液相色谱-串联质谱,建立土壤和沉积物中痕量氨基甲酸酯农药的分析方法。该方法用体积比1:1的二氯甲烷/甲醇对土壤和沉积物样品进行加速溶剂萃取,GCB/PSA固相萃取小柱对萃取液进行净化,内标法定量,用超高效液相色谱-串联质谱法分析土壤和沉积物中20种氨基甲酸酯农药。20种氨基甲酸酯农药在0.02~1.0 μg/mL范围内线性良好(r≥0.99),检测限为0.20~0.60 ng/g。沉积物加标样品(20ng/g)和土壤加标样品(20ng/g)的回收率分别为33.2%~101.9%、38.8%~120.5%,相对标准偏差为6.1%~28.0%、2.3%~16.0%。沉积物加标样品(2.0 ng/g)回收率为43.0%~100.0%,相对标准偏差为2.1%~11.3%。  相似文献   

4.
用丙酮和正己烷(体积比为1∶1)作溶剂,在100℃和1 500 psi的压力下,用快速溶剂萃取仪从土壤中萃取出有机氯农药,用分子筛进行脱水和净化,GC-MS进行分析,对土壤中有机氯农药进行测定。方法的检出限为0.000 4~0.000 7 mg/kg,曲线的相关系数在0.998以上。对进口标准土进行测定,回收率为77.1%~105.2%,相对误差为-22.9%~5.2%,测定结果在证书允许误差范围内。用硅藻土制成高、中、低3个浓度级别的加标回收和精密度实验,加标回收率为84.3%~101.5%,相对标准偏差为0.6%~11.4%,表明方法准确可靠,方法用于实际土壤测定时发现土壤有不同程度的有机氯农药污染。  相似文献   

5.
建立了超声提取-高效液相色谱法测定土壤中氨基苯磺酸的方法。以甲醇/水(V∶V=1∶1)为萃取溶剂,室温下进行超声波提取,通过固相萃取小柱净化后,以带季铵基团的聚乙烯醇离子色谱柱分离,二极管阵列检测器测定。该实验方法具备较好的抗干扰性,方法曲线相关系数r>0.999,取样量为5 g时,对、间、邻氨基苯磺酸的方法检出限分别为0.1,0.2和0.2 mg/kg,加标回收率分别为83.5%~99.5%,83.1%~98.0%和77.8%~92.5%。对5个地区的土壤样品加标回收实验结果表明,该方法适用性较强,可满足实际样品的测定。  相似文献   

6.
建立了分散液液微萃取与超高效液相色谱-串联质谱联用技术测定土壤和沉积物中三丁基锡的方法。考察了影响分散液液微萃取的因素(包括有机萃取溶剂、萃取剂体积、分散剂、分散剂体积、萃取时间和盐效应)。在最佳实验条件下,方法在0.5~50μg/kg范围内线性关系良好,相关性系数为0.999 0,方法检出限(3倍信噪比)为0.1μg/kg,加标回收率为83.1%~104%,相对标准偏差小于8.5%(n=6),适用于土壤和沉积物中三丁基锡的检测。  相似文献   

7.
植物性食品中拟除虫菊酯类农药测定方法的改进   总被引:3,自引:0,他引:3  
基于色素和含水率两方面的考虑,选用了大米、荼叶和西红柿作为实验介质,在植物性食品中拟除虫菊酯类农药提取条件和净化条件等方面均进行了改进和优化.结果发现,采用正己烷/丙酮混合液(97.5∶2.5,V/V)提取植物性食品中菊酯类农药,40~50℃下超声萃取40min;选用弗罗里硅土和活性炭混合填充物制作层析柱;选用石油醚/乙酸乙酯(9∶1,V/V)作为洗脱溶剂,实验回收率达70%以上,结果令人满意.  相似文献   

8.
建立了用加速溶剂萃取法(ASE)提取、气相色谱-串联质谱法分析土壤中20种有机氯农药的方法。用正己烷和丙酮(1∶1,V/V)的混合溶剂为提取剂,萃取温度100℃,压力1 500 psi,静态提取10 min,循环提取2次,提取液经石墨化碳黑固相萃取柱净化,浓缩后进行GC-MS/MS测定,外标法定量。试验结果表明,采用串联质谱多反应监测模式,降低了背景干扰,当取5 g土壤时,有机氯农药的检出限在0.1~3.0μg/kg之间,低浓度水平(8μg/kg)的基体加标回收率为70.3%~134%,相对标准偏差〈23%。测定方法背景干扰低,灵敏度高,适合土壤中20种有机氯农药残留的同时测定。  相似文献   

9.
采用直接进样法和萃取浓缩法2种前处理方式,通过超高效液相色谱-串联质谱法对水中20种拟除虫菊酯类和有机磷类农药进行了测定,并对仪器条件的选择和前处理条件的优化进行了探讨。结果表明,20种农药的线性关系良好,相关系数均>0.999,直接进样法检出限为0.21~2.47μg/L,回收率为81.0%~119%,相对标准偏差<10%。萃取浓缩法检出限为0.0022~0.0043μg/L,回收率为71.5%~115%,相对标准偏差<15%。该方法简便、快捷,精密度和准确度较高,可满足水中拟除虫菊酯类和有机磷类农药的检测要求。  相似文献   

10.
建立了土壤中15种酞酸酯的加压流体萃取-弗罗里硅土柱净化-气相色谱测定方法。就萃取条件探讨了溶剂、温度、时间和循环次数对萃取效率的影响,就净化条件探讨了净化柱和洗脱溶剂对萃取效率的影响。根据研究结果,确定萃取条件以二氯甲烷为萃取溶剂,在萃取温度120℃、压强1 500 psi时,预热5 min,静态提取5 min,循环萃取2次,用体积为60%萃取池体积的萃取溶剂冲洗萃取池,之后用氮气吹扫萃取池90 s;净化条件为萃取溶液过弗罗里硅土固相萃取柱净化后,以正己烷∶丙酮(体积比为5∶1)洗脱。15种酞酸酯类化合物加标回收率为67.1%~124%,方法检出限为0.017~0.048 mg/kg。  相似文献   

11.
建立了同时测定水中27种有机农药的LLE-GC-MS法。该法前处理前需调节水样pH值2,不加甲醇作为改性剂,以1:1(V/V)正己烷-石油醚为萃取溶剂进行液液萃取,GC-MS法进行检测。方法在各目标化合物质量浓度0.010~0.500 mg/L范围内线性良好,相关系数R2均0.995,检出限为0.021~0.250μg/L,加标回收率为73.6%~113.6%,相对标准偏差RSD为4.0%~14.1%,适用于水中27种有机农药的检测。  相似文献   

12.
A molecularly imprinted polymer (MIP) was prepared using chlorsulfuron (CS), a herbicide as a template molecule, methacrylic acid as a functional monomer, ethylene glycol dimethacrylate (EDMA) as a cross-linker, methanol and toluene as a porogen, and 2,2-azobisisobutyronitrile as an initiator. The binding behaviors of the template chlorsulfuron and its analog on MIP were evaluated by equilibrium adsorption experiments, which showed that the MIP particles had specific affinity for the template CS. Solid-phase extraction (SPE) with the chlorsulfuron molecularly imprinted polymer as an adsorbent was investigated. The optimum loading, washing, and eluting conditions for chlorsulfuron molecularly imprinted polymer solid-phase extraction (CS-MISPE) were established. The optimized CS-MISPE procedure was developed to enrich and clean up the chlorsulfuron residue in water, soils, and wheat plants. Concentrations of chlorsulfuron in the samples were analyzed by HPLC-UVD. The average recoveries of CS spiked standard at 0.05~0.2 mg L(-1) in water were 90.2~93.3%, with the relative standard deviation (RSD) being 2.0~3.9% (n=3). The average recoveries of 1.0 mL CS spiked standard at 0.1~0.5 mg L(-1) in 10 g soil were 91.1~94.7%, with the RSD being 3.1~5.6% (n=3). The average recoveries of 1.0 mL CS spiked standard at 0.1~0.5 mg L(-1) in 5 g wheat plant were 82.3~94.3%, with the RSD being 2.9~6.8% (n=3). Overall, our study provides a sensitive and cost-effective method for accurate determination of CS residues in water, soils, and plants.  相似文献   

13.
The aim of this study was the development of analytical methods for the simultaneous determination of 25 selected pharmaceuticals, metabolites, and pesticides, belonging to the various chemical classes, in river sediments and their corresponding surface and ground water with the purpose of monitoring the contamination levels. The methods were based on the solid-phase extraction as the sample preparation method for water samples, and the ultrasonic solvent extraction for the sediment samples, followed by the liquid chromatography–tandem mass spectrometry. High recoveries were achieved for extraction from both water and sediment samples for the majority of analytes. Low limits of detection were achieved for all investigated compounds in the water sample (1–5 ng L?1) as well as in the sediment (1–3 ng g?1). Applicability of the developed methods was demonstrated by determination of pharmaceutical and pesticide residues in 30 surface water, 44 groundwater, and 5 sediment samples from the Danube River Basin in Serbia. Sixty percent of target compounds were detected in environmental samples. The most frequently detected analytes in river sediments were the pesticides dimethoate and atrazine, while carbamazepine and metamizole metabolites 4-AAA and 4-FAA were the most frequently found in water samples.  相似文献   

14.
以正己烷/丙酮混合溶剂(体积比为1∶1)为提取剂,采用Florisil柱净化、气相色谱电子捕获检测器测定土壤中菊酯类农药残留,优化了提取条件。4种菊酯类农药在0.010 mg/L~1.00 mg/L范围内线性良好,方法检出限为0.005 mg/L~0.010 mg/L,甲氰菊酯回收率为85.2%~103%,RSD为2.3%~5.4%;氯氰菊酯回收率为80.5%~103%,RSD为2.8%~6.7%;氰戊菊酯回收率为80.2%~103%,RSD为2.3%~6.0%;溴氰菊酯回收率为80.8%~103%,RSD为2.4%~6.2%。  相似文献   

15.
通过对加速溶剂萃取、平行蒸发及净化方法等环节的优化实验,建立了加速溶剂萃取-凝胶净化色谱-气相色谱质谱法测定农用地土壤中23种有机氯农药的检测方法。结果表明,方法检出限为0.0034~0.0052 mg/kg;对化合物质量分数为0.25 mg/kg的土壤加标样品进行平行实验,回收率为82.0%~93.7%;测定结果的相对标准偏差(RSD)≤8.7%。对土壤有证标准质控样品进行分析,测定结果均在验收范围之内。该方法准确可靠,灵敏度较高,样品净化效果较好,能够满足农用地土壤中有机氯农药残留痕量分析的要求。  相似文献   

16.
Pesticides are shown to have a great effect on soil organisms, but the effect varies with pesticide group and concentration, and is modified by soil organic carbon content and soil texture. In the humid tropical islands of Andaman, India, no systematic study was carried out on pesticide residues in soils of different land uses. The present study used the modified QuEChERS method for multiresidue extraction from soils and detection with a gas chromatograph. DDT and its various metabolites, α-endosulfan, β-endosulfan, endosulfan sulfate, aldrin, and fenvalerate, were detected from the study area. Among the different pesticide groups detected, endosulfan and DDT accounted for 41.7 % each followed by aldrin (16.7 %) and synthetic pyrethroid (8.3 %). A significantly higher concentration of pesticide residues was detected in rice–vegetable grown in the valley followed by rice–fallow and vegetable–fallow in the coastal plains. Soil microbial biomass carbon is negatively correlated with the total pesticide residues in soils, and it varied from 181.2 to 350.6 mg?kg?1. Pesticide residues have adversely affected the soil microbial populations, more significantly the bacterial population. The Azotobacter population has decreased to the extent of 51.8 % while actinomycetes were the least affected though accounted for 32 % when compared to the soils with no residue.  相似文献   

17.
于2018年4—6月采集了江苏省10个市的茶园和农田表层土壤样品,采用气相色谱-三重四级杆质谱仪分析样品中12种拟除虫菊酯类农药的质量比和组成。结果表明,江苏省茶园和农田土壤中广泛检出拟除虫菊酯类农药,总量分别为27.1~50.7,56.9~97.0 ng/g。研究区域的拟除虫菊酯类农药含量存在差异,但组成相近,均是高效氯氟氰菊酯和联苯菊酯的比例较高。与国内其他地区土壤相比,江苏省茶园和农田土壤中拟除虫菊酯含量处于中等水平。  相似文献   

18.
In the present study we quantified the residues of organophosphorus (e.g. ethion and chlorpyrifos), organochlorine (e.g. heptachlor, dicofol, alpha-endosulfan, beta-endosulfan, endosulfan sulfate) and synthetic pyrethroid (e.g. cypermethrin and deltamethrin) pesticides in made tea, fresh tea leaves, soils and water bodies from selected tea gardens in the Dooars and Hill regions of West Bengal, India during April and November, 2006. The organophosphorus (OP) pesticide residues were detected in 100% substrate samples of made tea, fresh tea leaves and soil in the Dooars region. In the Hill region, 20% to 40% of the substrate samples contained residues of organophosphorus (OP) pesticides. The organochlorine (OC) pesticide residues were detected in 33% to 100% of the substrate samples, excluding the water bodies in the Dooars region and 0% to 40% in the Hill region. The estimated mean totals of studied pesticides were higher in fresh tea leaves than in made tea and soils. The synthetic pyrethroid (SP) pesticide residues could not be detected in the soils of both the regions and in the water bodies of the Dooars. Sixteen percent and 20% of the made tea samples exceeded the MRL level of chlorpyrifos in Dooars and Hill regions respectively. The residues of heptachlor exceeded the MRL in 33% (April) and 100% (November) in the Dooars and 40% (April) and 20% (November) in the Hill region. Based on the study it was revealed that the residues of banned items like heptachlor and chlorpyrifos in made tea may pose health hazards to the consumers.  相似文献   

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