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1.
文章研究并建立了一种快速便捷测定水中硝基氯苯类化合物的方法。采用固相微萃取方法富集水中目标物,使用便携式气相色谱/质谱仪进行检测。优化后的萃取条件为:使用65μm的PDMS/DVB萃取头,水温60℃、转速200r/min下萃取50min。结果表明,硝基氯苯类化合物在10.0~500μg/L范围内呈现良好线性,相关系数均大于0.980;空白水样加标相对标准偏差为2.28%~11.3%,加标回收率为77%~130%;实际水样加标相对标准偏差为3.93%~6.73%,加标回收率为90%~115%;检出限范围为1.37~3.57μg/L。  相似文献   

2.
固相萃取-液相色谱-串联质谱法测定水中5种雌激素   总被引:1,自引:1,他引:0       下载免费PDF全文
建立了固相萃取-液相色谱-串联质谱组合联用技术同时测定地表水、饮用水和污水处理厂出厂水中的5种雌激素(17β-雌二醇、雌三醇、雌酮、17α-炔雌醇、己烯雌酚)的方法。水样经过全自动固相萃取仪富集,以OASIS HLB柱为萃取柱,甲醇为洗脱剂,用液相色谱-串联四极杆质谱联用仪分析定量。分别在0.5~8、5~80μg/L范围内线性良好,相关系数为0.995~0.998。17β-雌二醇、雌三醇、17α-炔雌醇的检出限均为5μg/L,雌酮与己烯雌酚的检出限为0.5μg/L。5种雌激素的纯水加标回收率为63.6%~120.2%,地表水加标回收率为59.8%~91.5%,自来水加标回收率为55.3%~92.1%,精密度为3.7%~10.7%,该方法简单、可靠,可用于水中雌激素类污染物的同时测定。  相似文献   

3.
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   

4.
建立了以固相萃取为前处理条件,用液相色谱法测定水中10种硝基苯酚类化合物的分析方法。实验使用HLB(6 L/150 g)固相萃取柱富集水样中的目标化合物,二氯甲烷与乙酸乙酯体积比1:2的混合溶剂洗脱,采用Phenyl柱(4.6 mm×250 mm,5 μm)分离目标化合物,以乙腈(1%甲酸)/水(1%甲酸)为流动相进行梯度洗脱,二极管阵列检测器检测。10种硝基苯酚类物质在0.02~10 mg/L范围内呈现良好的线性。方法检出限为0.1~0.3 μg/L,水样加标相对标准偏差为5.19%~18.2%,平均加标回收率为49.8%~124%。该方法适用于水中10种硝基苯酚类化合物的测定。  相似文献   

5.
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   

6.
采用C 18柱固相萃取(SPE)-三重四级杆气相色谱-质谱法同时测定水中18种含有机氯的环境内分泌干扰物,方法在0.500μg/L^100μg/L范围内线性良好,方法检出限为0.04 ng/L^0.8 ng/L,空白水样的加标回收率为61.3%~108%,6次测定结果的RSD为3.8%~18.0%。将该方法用于饮用水源水监测,18种目标化合物的测定值为未检出~1.5 ng/L,平均加标回收率为71.9%~109%,平行测定结果的RSD<15%。  相似文献   

7.
采用固相萃取-高效液相色谱-串联质谱法(SPE-UPLC-MS-MS)测定自然水体中的10种典型药物污染。比较了2种萃取柱HLB和C18的富集效果,并对水样pH、萃取柱的淋洗溶剂及水样体积进行了优化。结果表明,采用HLB小柱进行富集净化,水样体积为500 mL,调节pH=3.0,95%甲醇洗脱,在0~200μg/L范围内10种药物的标准曲线线性关系良好(r≥0.999),方法检出限0.5~2.0 ng/L,精密度高(RSD10%),加标回收率为64.3%~100.7%。经过对太湖和某污水厂排水口水样的测试,表明该方法适用于自然水体药物的快速检测,同时大部分药物被检出,说明选择的10种目标药物及建立的检测方法对研究中国水体药物污染具有一定的参考价值。  相似文献   

8.
建立了液相色谱法直接测定水中的10种硝基苯类化合物的方法,C18色谱柱为分离柱,检测波长为254 nm,以甲醇和水为流动相,前处理过程水和甲醇以9∶1的体积比混合,水样过微孔滤膜后直接进液相色谱分析。该法分析10种硝基苯类化合物的检出限为4.3~5.5μg/L,加标回收率为79%~136%,精密度为6.8%~13%,符合监测要求。  相似文献   

9.
高效液相色谱-串联质谱法测定废水中5种喹诺酮类抗生素   总被引:2,自引:0,他引:2  
建立高浓度有机废水中5种喹诺酮类抗生素的高效液相色谱-串联质谱测定方法。水样经HLB固相萃取小柱富集净化,12 ml甲醇洗脱、浓缩并加入内标溶液后,定容至1 mL待测。以C18柱为分离柱,含0.01%甲酸的甲醇-含0.01%甲酸的水溶液为流动相,目标物质在10 min内分离。在0.25~1 250 ng/mL范围内,目标物质线性关系良好(R20.99)。基质加标试验结果表明,纯水中的回收率为61.40%~91.92%,废水中的回收率为54.92%~101.87%,检出限为0.25~2.5 ng/L,方法定量限为0.36~3.99 ng/L。应用该方法对21家猪场的64份废水样品进行分析,5种喹诺酮类抗生素的检出频率为47%~95%,平均检出浓度为980~5 734 ng/L。该方法快速、准确,适用于高浓度有机废水中喹诺酮类抗生素的同时测定。  相似文献   

10.
顶空气相色谱法测定浓海水中挥发性卤代烃   总被引:1,自引:0,他引:1  
采用顶空法分离并富集海水淡化排放的浓海水样品,用气相色谱法测定样品中的挥发性卤代烃,通过优化顶空时间、顶空温度、水样盐度等条件,提高顶空富集效率,使方法在2.00μg/L~100μg/L范围内线性良好,相关系数均0.999,方法检出限为0.019μg/L~0.052μg/L。标准溶液平行6次测定结果的RSD为3.9%~9.6%,加标回收率为80.5%~125%。  相似文献   

11.
建立了吹扫捕集-气相色谱-冷原子荧光(PT-GC-CAFS)联用技术、多功能自动进样器进样测定污水处理厂外排水中烷基汞残留量的方法。用烷基化试剂直接衍生,吹扫捕集吸附/富集,以PEG20M填充柱为分离柱,用冷原子荧光作为检测器进行测定,整体分析工作在10 min内完成。在所选实验条件下,方法对所测甲基汞、乙基汞的线性相关系数分别为0.999 9、1.000,最低检出限分别为0.002、0.003 ng/L,相对标准偏差为1.4%~10.2%,2.3%~9.7%;在不同质量浓度水平上进行加标回收率实验,甲基汞的回收率为93.7%~101.7%,乙基汞为94.1%~103.6%。该方法用于污水处理厂外排水中烷基汞残留量的分析测定,结果令人满意。  相似文献   

12.
水体中磺胺、四环素、喹诺酮类抗生素检测方法   总被引:6,自引:2,他引:4  
建立了固相萃取-高效液相色谱-串联质谱法(SPE-HPLC-MS/MS)同时检测水体中3类15种抗生素的分析方法。水样用Oasis HLB固相萃取小柱净化富集。通过对比水样在不同pH条件下的回收率,优化了环境水样中抗生素固相萃取过程中的前处理条件。采用甲醇和0.1%甲酸溶液作为流动相,经过梯度洗脱进行分离,在HPLC-MS/MS多反应监测模式下进行定性定量分析。结果表明,环境水体中15种抗生素的检出限和定量下限分别为0.12~1.6 ng/L和0.2~3.0 ng/L,自来水加标回收率为34.9%~102.5%(pH=4)。用该方法对海河流域13个地表水水样进行了初步检测,结果表明,部分抗生素普遍存在于地表水体中。其中,磺胺甲基异NFDA1唑检出频率最高,在13个地表水样品中均有检出。  相似文献   

13.
建立了一种超高效液相色谱串联质谱法同时测定饮用水源中17种超痕量水平抗生素的分析方法。采用Oasis HLB柱对500 mL pH=5含目标物的水样进行富集,干燥15 min后,用5%氨水甲醇洗脱,氮吹后定容至1 mL。用C18柱吸附目标物,并用0.1%甲酸水和甲醇对目标物进行分离,采用正离子电喷雾电离模式在多反应监测通道中对目标物同时进行分析。该方法检出限为0.07~0.78 ng/L,超痕量水平下回收率范围为75.8%~108%。该方法灵敏度高,精密度为1.8%~15.0%,适用于同时测定饮用水源等水体中的抗生素。  相似文献   

14.
通过两次采集北京某大型污水处理厂的水样,采用HPLC-MS技术对水样中的10种PPCPs进行分析.结果显示,进水口水样中PPCPs浓度为7122.92ng/L,其中咖啡因的检出浓度最高(4490.54ng/L),污水处理厂对咖啡因的去除率大于90%(浓度为78.01ng/L).与文献报道值比较发现,该污水处理厂出水水样中PPCPs的浓度与其他国家报道的浓度基本上处于同一数量级,但污水中PPCPs的去除率都普遍低于国际水平.因此,需加强对污水处理厂水样中PPCPs的监测,完善污水处理的工艺.  相似文献   

15.
The polycyclic musk fragrance compounds HHCB (1,3,4,6,7,8-hexahydro-4,6,6,7,8,8-hexamethylcyclopenta-(g)-2-benzopyran; trade name, e.g. galaxolide) and AHTN (7-acetyl-1,1,3,4,4,6-hexamethyl-1,2,3,4-tetrahydronaphthalene, trade name, e.g. tonalide) and the transformation product of HHCB (HHCB-lactone) were analysed in surface water samples and sewage treatment plants (STP) effluents in the Ruhr megalopolis. The STPs were the dominant source for these pollutants. In the part of the river where the drinking water is extracted from the river, about 60 ng L(-1) HHCB, 10 ng L(-1) AHTN and 20-30 ng L(-1) HHCB-lactone were found as typical riverine concentrations, while none of the compounds were detected near the spring of the river. On the other hand sewage treatment plant effluents exhibited concentrations up to 600 ng L(-1). The STP's effluent resulted in elevated concentrations in some parts of the river and in the lakes into which they discharge. As some of the plants emit HHCB-lactone with a significantly changed enantiomeric pattern, biotransformation of HHCB to HHCB-lactone occurs in some waste water treatment plants operating with activated sludge. In those parts of the river where no relevant discharges of waste water or fresh water takes place neither the concentration nor the pattern changes significantly. This holds true especially for the HHCB versus HHCB-lactone ratios which indicates degradation less than 15% of the HHCB inventory in the river Ruhr itself. In other rivers, such as the Rhine, higher levels of HHCB-lactone in comparison to HHCB were detected (ratio 1 : 1).  相似文献   

16.
建立了地表水中9种性激素的固相萃取-超高效液相色谱-串联质谱检测方法。利用HLB固相萃取柱富集水体中痕量性激素,用甲醇洗脱并浓缩,再以1 mmol/L氟化铵-乙腈为流动相,经C_(18)柱分离,采用电喷雾离子源、质谱多反应监测模式,内标法定量,实现了地表水中9种性激素的同时检测。方法检出限为0. 1~1. 8 ng/L,在低、中、高3个加标水平下,性激素的平均回收率为69. 6%~115. 0%,相对标准偏差为3. 2%~17. 7%。该方法灵敏度高,定性准确,操作简单高效,适用于地表水中9种性激素的定性定量分析。  相似文献   

17.
This study was carried out to measure and compare the concentration of bacterial endotoxin in a variety of samples from drinking tap and bottled water available in Kuwait by using the Limulus Amoebocyte lysate test. A total of 29 samples were tested. Samples were collected from a variety of locations throughout the six governorates of Kuwait and 23 brands of local and imported bottled water samples were collected from the local market. The concentration of bacterial endotoxin was measured by using the standard Limulus Amoebocyte lysate test, gel clot method. This study showed that measured endotoxin concentrations in tap drinking water varied from 2.4 to 33.8?EU/ml with the average endotoxin concentration of 14.2?EU/ml. While the results of endotoxin concentrations in the bottled water were <0.03 to 20.1?EU/ml with an average of 1.96?EU/ml. The average concentration of endotoxin in bottled water is 13.5 % of the average concentration of endotoxin in tap drinking water. This experimental investigation has proved that drinking bottled water has less endotoxin as compared to tap water in Kuwait. It is also demonstrated that the endotoxin concentration did not exceed the acceptable level in drinking tap water.  相似文献   

18.
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   

19.
Dispersive liquid?Cliquid microextraction followed by inductively coupled plasma-optical emission spectrometry has been investigated for determination of Cd(II) ions in water samples. Ammonium pyrrolidine dithiocarbamate was used as chelating agent. Several factors influencing the microextraction efficiency of Cd (II) ions such as extracting and dispersing solvent type and their volumes, pH, sample volume, and salting effect were optimized. The optimization was performed both via one variable at a time, and central composite design methods and the optimum conditions were selected. Both optimization methods showed nearly the same results: sample size 5 mL; dispersive solvent ethanol; dispersive solvent volume 2 mL; extracting solvent chloroform; extracting solvent volume 200  $\upmu $ L; pH and salt amount do not affect significantly the microextraction efficiency. The limits of detection and quantification were 0.8 and 2.5 ng L???1, respectively. The relative standard deviation for five replicate measurements of 0.50 mg L???1 of Cd (II) was 4.4%. The recoveries for the spiked real samples from tap, mineral, river, dam, and sea waters samples ranged from 92.2% to 104.5%.  相似文献   

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