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11.
采用微球硅胶键合C_(18)固相萃取柱萃取水样中的3-甲基吲哚,并用气质联用法测定,方法在0 mg/L~10.0 mg/L范围内线性良好,方法检出限为0.2μg/L。空白水样3个质量浓度水平的加标回收率为89%~94%,7次测定结果的RSD为2.3%~6.9%。用该方法测定7个实际地表水样品,其中4个地表水样品检出3-甲基吲哚,地表水样的加标回收率为81.5%~97.0%。 相似文献
12.
采用Envi-18固相萃取小柱富集水样,用正己烷/丙酮混合溶剂洗脱水样中42种POPs化合物,再用气质联用法测定。通过优化仪器监测条件,使目标物在0.250 mg/L~5.00 mg/L范围内线性良好。方法检出限为50.9 ng/L~11 640 ng/L,实际水样加标回收率为57.1%~129%,测定结果的RSD为0.1%~13.8%。将该方法用于测定浙江省东苕溪流域的45份水样,结果滴滴涕、六六六等有机氯农药的检出率较高,其他POPs的检出率较低。 相似文献
13.
高效液相色谱法测定水中7种三嗪类除草剂 总被引:1,自引:0,他引:1
采用液液萃取和固相萃取两种方法预处理,高效液相色谱二极管阵列检测器测定水中7种三嗪类除草剂,选择了合适的检测波长和梯度淋洗条件。方法在0.100 mg/L~2.00 mg/L范围内线性良好,检出限为0.06μg/L~0.15μg/L,水样平行测定的RSD为1.6%~6.5%,加标回收率为95.0%~106%。 相似文献
14.
固相萃取-高效液相色谱法测定武汉东湖水体中微囊藻毒素 总被引:1,自引:1,他引:0
建立了固相萃取-高效液相色谱法(SPE-HPLC)测定东湖水样中微囊藻毒素(MC)的方法,考察了不同流动相、淋洗液和洗脱液对MC-RR和MC-LR测定的影响。结果表明,MC-RR和MC-LR的方法检出限分别为0.0789μg/L和0.0234μg/L,其线性定量范围分别为0.1~10.0mg/L和0.06~10.0mg/L;样品测定回收率为78.4%~97.4%,RSD小于6.3%。该法灵敏度高,快速准确,用于实际水样测定的结果令人满意。 相似文献
15.
建立了加速溶剂萃取-固相萃取/超高效液相色谱-串联质谱法同时测定沉积物中5种微囊藻毒素(MC-LR、MC-RR、MC-LW、MC-LF、MC-YR)的方法。选择甲醇-水(1∶4,V/V)为ASE萃取溶剂,萃取温度和萃取压力分别为80℃和13.1 MPa,固相萃取过程以HLB小柱为萃取柱,采用液相色谱-串联质谱分析。方法在5种微囊藻毒素质量浓度5~100μg/L内线性良好(r0.995),回收率为76.0%~118%,相对标准偏差为1.9%~12.0%,检出限为2~3μg/kg,定量下限为8~12μg/kg。该方法已用于西太湖沉积物的检测,具有较好的方法适用性。 相似文献
16.
Ana L. de Toffoli Kamilla da Mata Márcia C. Bisinoti 《Journal of environmental science and health. Part. B》2013,48(11):753-759
A method for the identification and quantification of pesticide residues in water, soil, and sediment samples has been developed, validated, and applied for the analysis of real samples. The specificity was determined by the retention time and the confirmation and quantification of analyte ions. Linearity was demonstrated over the concentration range of 20 to 120 µg L?1, and the correlation coefficients varied between 0.979 and 0.996, depending on the analytes. The recovery rates for all analytes in the studied matrix were between 86% and 112%. The intermediate precision and repeatability were determined at three concentration levels (40, 80, and 120 µg L?1), with the relative standard deviation for the intermediate precision between 1% and 5.3% and the repeatability varying between 2% and 13.4% for individual analytes. The limits of detection and quantification for fipronil, fipronil sulfide, fipronil-sulfone, and fipronil-desulfinyl were 6.2, 3.0, 6.6, and 4.0 ng L?1 and 20.4, 9.0, 21.6, and 13.0 ng L?1, respectively. The method developed was used in water, soil, and sediment samples containing 2.1 mg L?1 and 1.2% and 5.3% of carbon, respectively. The recovery of pesticides in the environmental matrices varied from 88.26 to 109.63% for the lowest fortification level (40 and 100 µg kg?1), from 91.17 to 110.18% for the intermediate level (80 and 200 µg kg?1), and from 89.09 to 109.82% for the highest fortification level (120 and 300 µg kg?1). The relative standard deviation for the recovery of pesticides was under 15%. 相似文献
17.
Xiaosong Chang Xiaoyun Liu Hao Chen Zhiqun Qiu Jia Cao 《Environmental pollution (Barking, Essex : 1987)》2010,158(5):1444-6108
Sewage samples from 4 hospitals, 1 nursery, 1 slaughter house, 1 wastewater treatment plant and 5 source water samples of Chongqing region of Three Gorge Reservoir were analyzed for macrolide, lincosamide, trimethoprim, fluorouinolone, sulfonamide and tetracycline antibiotics by online solid-phase extraction and liquid chromatography-tandem mass spectrometry. Results showed that the concentration of ofloxacin (OFX) in hospital was the highest among all water environments ranged from 1.660 μg/L to 4.240 μg/L and norfloxacin (NOR, 0.136-1.620 μg/L), ciproflaxacin (CIP, ranged from 0.011 μg/L to 0.136 μg/L), trimethoprim (TMP, 0.061-0.174 μg/L) were commonly detected. Removal range of antibiotics in the wastewater treatment plant was 18-100% and the removal ratio of tylosin, oxytetracycline and tetracycline were 100%. Relatively higher removal efficiencies were observed for tylosin (TYL), oxytetracycline (OXY) and tetracycline (TET)(100%), while lower removal efficiencies were observed for Trimethoprim (TMP, 1%), Epi-iso-chlorotetracycline (EICIC, 18%) and Erythromycin-H2O (ERY-H2O, 24%). Antibiotics were removed more efficiently in primary treatment compared with those in secondary treatment. 相似文献
18.
《Journal of environmental science and health. Part. B》2013,48(5-6):765-777
Abstract Four methods were developed for the analysis of fluroxypyr in soil samples from oil palm plantations. The first method involved the extraction of the herbicide with 0.05 M NaOH in methanol followed by purification using acid base partition. The concentrated material was subjected to derivatization and then cleaning process using a florisil column and finally analyzed by gas chromatography (GC) equipped with electron capture detector (ECD). By this method, the recovery of fluroxypyr from the spiked soil ranged from 70 to 104% with the minimum detection limit at 5 µg/kg. The second method involved solid liquid extraction of fluroxypyr using a horizontal shaker followed by quantification using high performance liquid chromatography (HPLC) equipped with UV detector. The recovery of fluroxypyr using this method, ranged from 80 to 120% when the soil was spiked with fluroxypyr at 0.1–0.2 µg/g soil. In the third method, the recovery of fluroxypyr was determined by solid liquid extraction using an ultrasonic bath. The recovery of fluroxypyr at spiking levels of 4–50 µg/L ranged from 88 to 98% with relative standard deviations of 3.0–5.8% with a minimum detection limit of 4 µg/kg. In the fourth method, fluroxypyr was extracted using the solid liquid extraction method followed by the cleaning up step with OASIS® HLB (polyvinyl dibenzene). The recovery of fluroxypyr was between 91 and 95% with relative standard deviations of 4.2–6.2%, respectively. The limit of detection in method 4 was further improved to 1 µg/kg. When the weight of soil used was increased 4 fold, the recovery of fluroxypyr at spiking level of 1–50 µg/kg ranged from 82–107% with relative standard deviations of 0.5–4.7%. 相似文献
19.
20.
Pyrzynska K 《Chemosphere》2011,83(11):1407-1413
With increasing public concerns for agrochemicals and their potential movement in the ecosystem, very sensitive, selective and precise methods for the analysis of pesticides are needed. Because these substances are present usually at trace levels, the extraction and preconcentration steps are so far essential for their detection. Discoveries of novel nanomaterials with unique properties have significant impact on their use also in extraction techniques. This overview reports the recent application of carbon nanotubes in the analysis of pesticides. The largest numbers of reported applications of carbon nanotubes concern their role as a sorbent materials in solid-phase extraction and microextraction techniques. 相似文献