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Irinel Adriana Badea Lacramioara Axinte Luminita Vladescu 《Environmental monitoring and assessment》2013,185(3):2367-2375
A new HPLC method was developed for the simultaneous determination of aminophenol isomers by means of a mixed-mode stationary phase containing both SCX and C18 moieties. All factors influencing the separation were discussed and optimized. The chromatographic conditions for the separation of aminophenols are the stationary phase duet SCX/C18, the mobile phase of aqueous phosphate buffer (pH 4.85):methanol?=?85:15 (v/v) delivered with a flow rate of 1 mL/min and a detection at 285 nm. The method proposed was validated in terms of linearity, limits of detection and quantification, accuracy and precision. The HPLC method elaborated here was applied with good results on river water samples. In order to survey the quality of surface rivers entered in treatment plants which deliver water for Bucharest, two major rivers were included in a monitoring program which last more than 1 year. 相似文献
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采用高效液相色谱紫外检测器测定水中四乙基铅,用二氯甲烷液液萃取,以甲醇/水混合溶液(体积比为95:5)为流动相,Z0RBAX Eclipse XDB-C18色谱柱分离,选择测定波长为280 nm.方法在0.100mg/L~1.00mg/L范围内线性良好,检出限和测定下限分别为0.01μg/L和0.04μg/L,水样平行... 相似文献
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采用固相萃取-高效液相色谱法同时测定水中12种磺酰脲类除草剂,样品经磷酸调节pH值为2后,经Watens Oasis HLB SPE柱净化浓缩,乙腈洗脱,选择检测波长为230 nm,以乙腈-水溶液(0.02%磷酸)为流动相梯度洗脱,保留时间在14 min~32 min范围内.12种磺酰脲类除草剂在0.050 mg/L~... 相似文献
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Henneken H Lindahl R Ostin A Vogel M Levin JO Karst U 《Journal of environmental monitoring : JEM》2003,5(1):100-105
A diffusive sampling method for the determination of methyl isocyanate (MIC) in air is introduced. MIC is collected using a glass fiber filter impregnated with 4-nitro-7-piperazinobenzo-2-oxa-1,3-diazole (NBDPZ). The urea derivative formed is desorbed from the filter with acetonitrile and analyzed by means of high-performance liquid chromatography (HPLC) using fluorescence detection (FLD) with lambdaex = 471 nm and lambdaex = 540 nm. Additionally, a method was developed using tandem mass spectrometric (MS-MS) detection, which was performed as selected reaction monitoring (SRM) on the transition [MIC-NBDPZ + H]+ (m/z 307) to [NBDPZ + H]+ (m/z 250). The diffusive sampler was tested with MIC concentrations between 1 and 35 microg m(-3). The sampling periods varied from 15 min to 8 h, and the relative humidity (RH) was set from 20% up to 80%. The sampling rate for all 15 min experiments was determined to be 15.0 mL min(-1) (using HPLC-FLD) with a relative standard deviation of 9.9% for 56 experiments. At 80% RH, only 15 min sampling gave acceptable results. Further experiments revealed that humidity did not affect the MIC derivative but the reagent on the filter prior to and during sampling. The sampling rate for all experiments (including long term sampling) performed at 20% RH was found to be 15.0 mL min(-1) with a relative standard deviation of 6.3% (N = 42). The limit of quantification was 3 microg m(-3) (LC-MS-MS: 1.3 microg m(-3)) for 15 min sampling periods and 0.2 microg m(-3) (LC-MS-MS: 0.15 microg m(-3)) for 8 h sampling runs applying fluorescence detection. 相似文献
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液相色谱法测定土壤中苯并(a)芘 总被引:1,自引:0,他引:1
用快速溶剂萃取法ASE300对土壤样品进行前处理,以配有荧光检测器的高效液相色谱仪分析土壤样品中苯并(a)芘的含量,该方法以乙腈、水梯度比例混合作为流动相,流速为1.0 ml/min;激发波长和发射波长分别为255 nm和420 nm;保留时间为27.58 min。样品的称样量为25 g时,测定检出限为8.28×10-5mg/kg,相对标准偏差(RSD)为1.0%~12%,回收率为60%~87%,以上指标均能满足环境中土壤样品的检测要求。 相似文献
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固相萃取-高效液相色谱法测定水中呋喃丹、甲萘威和阿特拉津 总被引:2,自引:0,他引:2
采用固相萃取-高效液相色谱(SPE - HPLC)二极管阵列检测器同时测定水中呋喃丹、甲萘威和阿特拉津,以甲醇-水为流动相,采用梯度洗脱方式,选择220 nm为检测波长,二氯甲烷为洗脱剂.呋喃丹在0.200 mg/L ~5.00 mg/L、甲萘威和阿特拉津在0.020 mg/L~5.00 mg/L范围内线性良好,检出限... 相似文献
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Dissipation of fentrazamide in soil and water under flooded (anaerobic) conditions was studied. Fentrazamide was applied to soil at 100 g ha(-1). Soil was extracted with 0.1 N HCl?:?acetone (1?:?1 v/v) followed by partition and cleanup with silica SPE. Separation was achieved in an ODS-II column with a mobile phase of acetonitrile?:?water (70?:?30 v/v) and detection at 214 nm. Recovery of fentrazamide varied from 75.2-90.4% and 89.9-97.8% in soil and water, respectively. Fentrazamide dissipated rapidly and fentrazamide residues were not detected after 100 and 35 days of application in soil and water, respectively. Half life in soil and water was 9.06 and 3.66 days, respectively. Dissipation followed monophasic first order kinetics pattern. No fentrazamide was detected in soil, rice grain and rice straw at harvest of crop. Calibration curves for quantification were linear and relative standard deviation (RSD) was 1.78%. LOD for instrument was 0.002 μg mL(-1) and LOQ for methods were 0.005 μg g(-1) for soil and water. 相似文献
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磁性分散固相萃取-气相色谱法测定水中氯苯类化合物 总被引:1,自引:0,他引:1
采用磁性分散固相萃取技术富集水中氯苯类化合物,用气相色谱法测定,并对萃取剂的用量、萃取时间、解吸溶剂、氯化钠加入量等条件进行优化。试验表明,方法在0.001 mg/L~2.50 mg/L 范围内,氯苯类化合物各组分线性良好,方法检出限在0.600μg/L~5.00μg/L范围内。地表水实际水样的加标回收率为83.1%~93.4%,RSD为4.8%~7.3%。 相似文献
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Tao X Tang C Wu P Han Z Zhang C Zhang Y 《Journal of environmental monitoring : JEM》2011,13(11):3269-3276
Occurrence, variation and behaviour of nonylphenol (NP) and octylphenol (OP) were studied in surface water and groundwater in Guiyang, Guizhou Province, southwestern China. Discharge of wastewater from Guiyang City was the main source of alkylphenols (APs) entering the aquatic environment. The concentrations of NP and OP in river water ranged from 40 to 1582 ng L(-1) and from below the lowest limit of detection (LOD) to 67 ng L(-1), respectively. NP and OP were also detected in groundwater. Both NP and OP exhibited spatial and temporal variations in river water and groundwater. It was found that concentrations of NP and OP in river water was low upstream and dramatically increased downstream, and higher concentration of NP was found in winter compared to that in summer. Proportions of NP and OP were trapped by suspended particulate matter (SPM), which accounted for 7.6-50.0% and 3.4-25.6% of their total concentration in the river water system, respectively. Seasonal changes in water flow were responsible for the temporal variations of APs. To determine the behaviour of APs along the river, a mass balance equation based on chloride was used. The results showed that a mixing process was the predominant factor to determine upstream APs concentrations; while the discharge of wastewater controlled the concentrations of APs downstream. Considering the adverse effect of APs on organisms, combined effect modeling was used to assess the toxicity to fish. It was found that the predicted mixture effect for APs in river water on fish vitellogenin induction was low upstream and medium downstream, respectively. 相似文献
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Development of a novel solid-phase extraction element for the detection of nonylphenol in the surface water of Hangzhou 总被引:1,自引:0,他引:1
Nonylphenol (NP) is a representative environmental endocrine-disrupting chemical and persistent toxic pollutant. Previous studies have shown that the average concentration of NP in environmental waters was approximately tens to hundreds of ng L(-1) and it could even reach up to tens of μg L(-1). A simple, fast and accurate method employing a novel solid-phase extraction element named "Magic Chemisorber" (MC) followed by high-performance liquid chromatography (HPLC) using a fluorescence detector (FLD) was used for detecting NP. The most important parameters that affect the extraction process, including extraction time, desorption time, desorption solvent and repeatability, were optimized. The MC-HPLC method showed good linearity with concentrations of NP from 10 to 200 μg L(-1), a correlation coefficient of 0.9995 and the limit of detection (LOD) and limit of quantification (LOQ) of this method was 0.44 and 1.47 μg L(-1), respectively. Compared to commercial polydimethylsiloxane (PDMS) glass fiber, MC had both higher capacity and recovery and it could be used repeatedly. Using the MC-HPLC method we found that the concentration of NP in river water from Hangzhou city ranged from 8.54 ± 1.23 μg L(-1) (Qiantang River) to 65.77 ± 3.69 μg L(-1) (Tiesha River), which was similar to that of international regions heavily polluted with NP and higher than that of Bohai Bay, the Yellow River and the Pearl River Delta in China. This level of NP pollution is possibly related to the rapid development of the textile, printing and paper industries of Zhejiang province. 相似文献
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建立了固相微萃取-气相色谱法测定水中痕量甲萘威的方法,并对固相微萃取条件进行了优化。结果显示,固相萃取的最佳条件为:水样pH值≤3,不添加无机盐,聚二甲基硅氧烷(PDMS,100μm)作为萃取纤维,萃取温度为80℃,萃取时间为30 min,解吸时间为90 s。优化后的方法,在甲萘威质量浓度0.01~1.0 mg/L范围内线性良好,相关系数为0.999 5,方法的精密度为1.9%,检出限为0.3μg/L,加标回收率为85.6%~92.4%,可满足地表水中甲萘威的测定要求。 相似文献
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An effective and sensitive method for simultaneous analysis of malachite green (MG), enrofloxacin (ENFLX) and ciprofloxacin (CPFLX) by liquid chromatography-diode array detection with solid-phase extraction (SPE) is developed. The conditions of SPE and LC were investigated and optimised. The effective separation of these compounds was achieved using a ZY1104 C18 column (250 × 4.6 mm, 5 μm) with 20 mM tetrabutyl ammonium bromide (pH 3.0)-acetonitrile as mobile phase and gradient elution. The diode array detection was used at 278 nm for ENFLX and CPFLX and at 613 nm for MG. Under the optimal conditions, the method LOD values of MG, ENFLX and CPFLX were 0.01, 0.07 and 0.10 μg L(?-1) for fish farming water samples and 1.5, 10.5 and 15 μg kg(?-1) for fish feed samples, respectively. The relative recoveries of the three analytes were achieved to be 76.7-82.3% with the RSDs (n = 5) of 3.2-4.6% for spiked fish farming water samples and 78.8-93.7% with the RSDs (n = 5) of 3.1-4.8% for spiked fish feed samples. 相似文献
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对测定水中硝基苯类化合物的锌还原-盐酸萘乙二胺分光光度法进行优化,简化了操作步骤,并将参加显色反应的水样体积由4.0 mL增加至8.0 mL,比色皿厚度由10 mm增加至20 mm,方法推荐检出限由0.20 mg/L降至0.05 mg/L,实验室检出限为0.042 mg/L,改进后的方法对标准样品的测定结果符合要求。 相似文献
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用对二甲氨基苯甲醛分光光度法测定水中水合肼,将显色剂用量由5.0 m L降至3.0 m L,比色皿厚度由30 mm增至50 mm,水样酸度由1 mol/L降至0.5 mol/L,同时增加低浓度校准曲线,实现对其方法检出限的优化。结果表明,优化后方法检出限由0.007 8 mg/L降至0.001 0 mg/L,精密度及加标回收率均符合规范要求,能够保证低浓度水样的准确测定。 相似文献
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石墨炉原子吸收法测定水中铊的方法改进 总被引:1,自引:0,他引:1
采用石墨炉原子吸收法测定水中铊,对样品前处理的多个细节进行改进,使前处理过程耗时缩短,回收率提高。试验表明,方法在0μg/L ~50.0μg/L范围内线性良好,相关系数r为0.9995;检出限为2.0μg/L,取样量为500 mL,富集50倍时,方法检出限为0.04μg/L;实际水样测定结果的 RSD 为4.9%~8.4%;实际样品的加标回收率为94.0%~102%。 相似文献
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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