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731.
建立了一种能够测定地表水中7种氯酚类化合物的固相萃取-超高效液相色谱方法。调节水样p H=2,经固相萃取柱富集后,用丙酮和二氯甲烷洗脱,浓缩定容后分析。以甲醇-水溶液(含0.2%乙酸)为流动相,柱温为30℃,紫外检测波长为分段检测(285、290、300、304 nm)。结果表明,检测方法对7种氯酚类化合物具有良好的线性相关性,相关系数≥0.999 7。当水样萃取体积为1 L,浓缩至1 m L,进样量为5μL时,方法检出限为12.7~32.1 ng/L,测定下限为50.8~128.4 ng/L;高低两组浓度的平均加标回收率为79.2%~108.4%,相对标准偏差为4.6%~13.3%。 相似文献
732.
采用固相微萃取处理废水样,用高效液相色谱法测定水样中10种硝基苯酚类化合物。通过优化前处理和仪器测定的条件,使该方法在0.020 0 mg/L~3.00 mg/L范围内线性良好。方法检出限为5μg/L~39μg/L,空白水样的3个质量浓度水平加标回收率为49.3%~82.9%,RSD为8.3%~18.1%。用该方法测定某企业的实际废水样,结果未检出,其3个质量浓度水平加标回收率为50.6%~79.7%,RSD为7.6%~18.4%。 相似文献
733.
固相萃取-高效液相色谱法同时测定饮用水中苯胺和联苯胺 总被引:3,自引:0,他引:3
用Waters Oasis MCX固相萃取小柱富集水中的苯胺和联苯胺,以2%氨水-甲醇混合溶液为洗脱液,采用高效液相色谱法DAD检测器在285 nm波长下测定。苯胺和联苯胺分别在0 mg/L~100 mg/L和0 mg/L~10.0 mg/L范围内线性良好,检出限分别为0.3 μg/L和0.1 μg/L,饮用水加标平行测定6次的RSD分别为0.9%和0.3%,回收率分别为98.3%~99.1%和97.6%~102%。 相似文献
734.
735.
加速溶剂萃取-固相萃取小柱净化-气相色谱法测定土壤中有机磷农药 总被引:1,自引:0,他引:1
建立了加速溶剂萃取-固相萃取小柱净化-气相色谱法测定土壤中12种有机磷农药的方法。推荐了12种有机磷农药快速分离的色谱条件。采用加速溶剂萃取技术实现了对土壤中有机磷农药残留的提取,选取最佳条件参数,减少了组分的损失,提取回收率达88%~108%。选择不同填料的SPE小柱和洗脱溶剂形成3种方案法进行净化实验,结果表明,方案2采用混合溶剂(正己烷、丙酮、二氯甲烷体积比为1∶1∶1)洗脱上样后的硅胶SPE小柱的净化效果好,回收率为91%~121%。方法检出限为0.000 1~0.000 2 mg/kg,石英砂基体和实际污染土壤样品加标回收率为62%~112%,相对标准偏差为0.7%~8.6%。该方法操作简便,快捷,灵敏度高,检出限低,试剂用量少,准确度和精密度符合质量控制要求。 相似文献
736.
建立了固相微萃取与车载气相色谱-质谱联用技术现场快速定量分析突发性水环境污染事故中的硝基苯、苯酚、苯胺3种半挥发性有机物的方法。选用PA萃取纤维,调节水样p H为8.5,加入30%的氯化钠,45℃顶空萃取30 min可得最佳萃取效果。在最佳实验条件下,硝基苯、苯酚、苯胺的方法检出限分别为0.68、3.2、4.88μg/L;平行测定7次的相对标准偏差分别为5.37%、8.31%、2.86%;3种化合物的相关性系数均大于0.99;对实际样品测定的加标回收率在61.1%~120%。 相似文献
737.
738.
固相萃取气相色谱法测定水中痕量六六六和滴滴涕 总被引:7,自引:1,他引:7
建立了固相萃取气相色谱测定水质中六六六、滴滴涕的方法,详尽地叙述了水样预处理过程。方法检测限较低,α六六六和γ六六六为1ng/L,β六六六、δ六六六和pp′DDE为2ng/L,op′DDT和pp′DDT为3ng/L,pp′DDD为4ng/L。加标回收率在88%~93%之间,回收较好,相对标准差均<2.5%,精密度好。方法快速、简便,避免了液液萃取的繁多手续。 相似文献
739.
The ability of polydimethlysiloxane coated solid phase microextraction (SPME) fibers to predict bioavailability has been documented for a number of species and compounds. There are also a variety of established methods for establishing SPME-based bioavailability estimates; however, factors such as time until equilibrium and exposure regimen could affect fiber concentrations and have not yet been thoroughly tested. Exposure time may influence SPME fiber concentrations at equilibrium. Co-exposure of the fibers with different animals or the invertebrate species used could yield different estimates than those acquired using a shaker table system to achieve equilibrium between the sediment and SPME fibers. The current study examined the effects of time and exposure method (shaker table versus co-exposure with test species) on SPME fiber concentrations for two hydrophobic compounds: permethrin and p,p′-dichlorodiphenyldichloroethylene (DDE). An additional experiment with permethrin determined whether animal densities or fiber number influenced fiber concentrations. There were significant differences between the time required for SPME fibers to reach equilibrium when co-exposed with different species or separately, but fiber concentrations at equilibrium among treatments for both compounds were similar. Furthermore, among the 12 variations in species and fiber densities, there were no significant differences among treatments indicating that neither the route of exposure, animal density, nor fiber volume influenced SPME fiber estimates. This demonstrated that SPME fiber concentrations at equilibrium were not affected by exposure conditions, increasing their versatility in environmental assessments. 相似文献
740.
Comparisons of polybrominated diphenyl ethers levels in paired South Korean cord blood, maternal blood, and breast milk samples 总被引:1,自引:0,他引:1
Kim TH Bang du Y Lim HJ Won AJ Ahn MY Patra N Chung KK Kwack SJ Park KL Han SY Choi WS Han JY Lee BM Oh JE Yoon JH Lee J Kim HS 《Chemosphere》2012,87(1):97-104
Polybrominated diphenyl ethers (PBDEs), commonly used flame retardants, have been reported as potential endocrine disruptor and neurodevelopmental toxicants, thus giving rise to the public health concern. The goal of this study was to investigate the relationship between umbilical cord blood, maternal blood, and breast milk concentrations of PBDEs in South Korean. We assessed PBDE levels in paired samples of umbilical cord blood, maternal blood, and breast milk. The levels of seven PBDE congeners were measured in 21 paired samples collected from the Cheil Woman’s Hospital (Seoul, Korea) in 2008. We also measured thyroid hormones levels in maternal and cord blood to assess the association between PBDEs exposure and thyroid hormone levels. However, there was no correlation between serum thyroxin (T4) and total PBDEs concentrations. The total PBDEs concentrations in the umbilical cord blood, maternal blood, and breast milk were 10.7 ± 5.1 ng g−1 lipid, 7.7 ± 4.2 ng g−1 lipid, and 3.0 ± 1.8 ng g−1 lipid, respectively. The ranges of total PBDE concentrations observed were 2.28-30.94 ng g−1 lipid in umbilical cord blood, 1.8-17.66 ng g−1 lipid in maternal blood, and 1.08-8.66 ng g−1 lipid in breast milk. BDE-47 (45-73% of total PBDEs) was observed to be present dominantly in all samples, followed by BDE-153. A strong correlation was found for major BDE-congeners between breast milk and cord blood or maternal blood and cord blood samples. The measurement of PBDEs concentrations in maternal blood or breast milk may help to determine the concentration of PBDEs in infant. 相似文献