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81.
建立了顶空-气相色谱测定B-100生物柴油中游离甲醇含量的方法.B-100生物柴油样品使用N,N-二甲基乙酰胺溶解,90℃下顶空平衡45 min,在HP-INNOWAX色谱柱上进行分离和测定.方法建立了外标法定量的标准曲线,相关系数r大于0.999,样品中甲醇质量分数的检出限为0.005%.对实际样品进行检测,相对标准偏差为4.96%~6.83%(n=6),加标回收率为92.0%~110%.方法操作简单、快速、重复性好,适用于B-100生物柴油中游离甲醇含量的测定. 相似文献
82.
83.
采用液相色谱串联质谱法(LC/MS/MS)测定含藻水氯消毒产生7种亚硝胺类(NAms)消毒副产物(NDMA,NMEA,NDEA,NDPA,NDBA,NPyr,NPip).方法检出限分别为5.0,14,8.6,3.6,2.9,6.3和4.9 ng/L,相关系数r>0.999.除NDBA回收率(60%)较低外,其余6种亚硝胺回收率均在80%~120%之间,相对标准偏差为1.4%~12.6%.分别以藻原液和消毒后藻液配制基质标准曲线,采用其与纯水标准曲线斜率之比评估基质效应.藻原液的基质效应为0.79 ~0.94,藻液消毒后NDMA基质效应为0.36,其他亚硝胺为0.63~0.96.应用此方法检测了自来水、富营养江河水、景观水及藻类悬浮液氯消毒后的亚硝胺含量. 相似文献
84.
高效液相色谱-同位素稀释质谱法定量分析人生长激素 总被引:1,自引:0,他引:1
建立了人生长激素( hGH)纯化分析和高效液相色谱( HPLC)与同位素稀释质谱( IDMS)联用高准确度绝对定量方法。采用快速蛋白液相色谱来分离纯化hGH,以傅里叶变换离子回旋共振质谱仪( FTICR-MS)准确地测定蛋白质的分子质量。纯化的hGH经酸水解后,采用KINETEX C18色谱柱为分析柱,以水(含0.1%三氟乙酸)和乙腈为流动相,等梯度分离,流速0.2 mL/min,温度40℃,采用电喷雾正离子模式进行电离,选择多反应监测模式进行检测,内标法定量分析。结果表明,FTICR-MS所测得的分子量实测值与理论值仅相差0.31 Da,脯氨酸、缬氨酸和苯丙氨酸在液相条件下5 min内达到基线分离,在最优条件下,hGH含量测定结果为186.80 mg/g,相对标准偏差为0.52%。利用本方法参加国际比对,比对结果与参考值等效一致。本方法具有简易、实用的特点,并且准确可靠,可作为hGH纯品标准物质的定值方法,为hGH的日常检测提供参考。 相似文献
85.
建立了基于HPLC-ICP-MS分离乙二胺二氯合钯[Pd(en)Cl2]与鸟嘌呤脱氧核糖核苷酸5’-d GMP反应产物的方法。方法得到两种能够随色谱流出的产物,产物在25 mmol/L磷酸盐缓冲液(pH 8.0)作为流动相时,得到的分离峰型良好。主产物保留时间为2.8 min,另一产物保留时间为3.2 min。主产物经富集后由ESI-MS(MS/MS)鉴定得到m/z为510,511,512,514和516的[M+1]+分子离子峰且丰度比与Pd同位素元素一致,再通过碎片推断结构为[Pd(en)(N1-5’-d GMP)],另一种产物经HPLC-DAD解析发现紫外吸收光谱与[Pd(en)(N1-5’-d GMP)]完全相同,HPLC-ICP-MS发现产物含Pd量也与[Pd(en)(N1-5’-d GMP)]相同,结合文献推断另一产物为[Pd(en)(N1-5’-d GMP)]的多聚物。研究表明,[Pd(en)(N1-5’-d GMP)]易在酸性条件下生成,其多聚物易在碱性条件下生成,在反应体系pH=6.0时,[Pd(en)(N1-5’-d GMP)]在12 h内生成且稳定存在。HPLC-ICP-MS图谱显示随着反应pH的增加两种产物的总量逐步减少。 相似文献
86.
Despo Louca Christodoulou Popi Kanari Olympiada Kourouzidou Maria Constantinou Panayiota Hadjiloizou Koula Kika 《International journal of environmental analytical chemistry》2015,95(10):894-910
This paper presents a cost-effective and validated multi residue confirmatory method for the determination of 167 chemically different pesticides and a survey study on Cyprus honey samples. This method uses ethyl acetate for the extraction of pesticides from honey and the determination is performed with liquid chromatography (LC) coupled to mass spectrometry (MS) operating in tandem mode (MS/MS) and with GC–ECD (gas chromatography with electron capture detector) analysis. The LC-MS/MS analytical system is especially important in the analysis of polar and non-volatile pesticides. For the validation of the method, blank honey samples were spiked with 146 pesticides (organophosphorous, carbamates, triazoles, amides, neonicodinoids, strobilurines, phenylureas, bendimidazoles and others) for the LC-MS/MS analysis at three levels: 0.01, 0.05 and 0.1 mg kg?1 and with 21 pesticides for the GC-ECD analysis at two levels: 0.01 and 0.05 mg kg?1for organochlorines and 0.05 and 0.2 mg kg?1for the pyrethroids. As blank sample, a sample of honey which did not contain detectable levels of the analytes sought was used. The validation study was in accordance to the DG SANCO guidelines. The scope of validation included recovery, linearity, limits of quantification and precision. Linearity is demonstrated all along the range of concentration that was investigated with correlation coefficients ≥0.98. Recoveries of the majority of compounds were in the 70%–120% range and were characterised by precision lower or equal to 20%. The validated method was used for a survey of 36 samples of honey produced in different areas of Cyprus and this is the first work on Cypriot honey samples investigating a broad range of pesticides. Only coumaphos was detected at concentrations higher than 0.01 mg kg?1 in the 58.6% of the honey samples analysed for Coumaphos. The results were evaluated in accordance to the provisions of the Commission Regulation (EU) No 37/2010 on pharmacologically active substances and their classification regarding maximum residue limits (MRLs) in foodstuffs of animal origin. The concentrations of coumaphos in all positive samples were at levels much lower than the MRL. 相似文献
87.
Pooya Paydary 《International journal of environmental analytical chemistry》2015,95(15):1450-1470
The prevalence of engineered metallic nanoparticles within electronic products has evoked a need to assess their occurrence and fate within environmental systems upon potential release of these nanoparticles. Quantum dots (QDs) are mixed-metal nanocrystals with the smallest of particle sizes (2–10 nm) that readily leach heavy metal cations in water, potentially creating a co-occurrence of nanoparticulate and dissolved metal pollutants. In this report, we develop a size exclusion chromatography–inductively coupled plasma–mass spectrometry method (SEC-ICP-MS) for the rapid separation and quantification of ~5-nm-sized CdSe/ZnS QDs and dissolved Cd2+ and Zn2+ cations in water. The SEC-ICP-MS method provided a wide chromatographic separation of CdSe/ZnS QDs and dissolved Cd2+ and Zn2+ cations only when using the smallest SEC column pore size available and an eluent composition that prevented loss of metals to column polymer surfaces by using a surfactant to ensure elution of QDs (ammonium lauryl sulfate) and a complexing ligand to ensure elution of metal cations (ethylenediaminetetraacetate). Detection limits were between 0.2 and 2 µg L–1 for Cd2+ and Zn2+ among dissolved cation and QD phases, and ranges of linearity covered two to three orders of magnitude. Gold nanoparticles of sizes 5, 10, 20 and 50 nm were also effectively separated from dissolved Au3+ cations, illustrating the method applicability to a wide range of nanoparticle sizes and compositions. QD and dissolved metal concentrations measured by SEC-ICP-MS were comparable to those measured using the more conventional method of centrifuge ultrafiltration on split samples for dissolved and total metals. The applicability of the SEC-ICP-MS method to environmental systems was verified by measuring QDs and dissolved metals added to samples of natural waters. The method was also applied to monitoring CdSe/ZnS dissolution kinetics in an urban river water. The SEC-ICP-MS developed here may offer improved automation for characterising heterogeneous suspensions containing >1 µg L–1 heavy metals. 相似文献
88.
89.
A Combined Experimental and Theoretical Study on the Stereodynamics of Monoaza[5]helicenes: Solvent‐Induced Increase of the Enantiomerization Barrier in 1‐Aza‐[5]helicene 下载免费PDF全文
Prof. Dr. Tullio Caronna Prof. Dr. Andrea Mele Prof. Dr. Antonino Famulari Dr. Daniele Mendola Prof. Dr. Francesca Fontana Dr. Markus Juza Dr. Matthias Kamuf Dr. Kerstin Zawatzky Prof. Dr. Oliver Trapp 《Chemistry (Weinheim an der Bergstrasse, Germany)》2015,21(40):13919-13924
Helicenes and heterohelicenes are attractive compounds with great potential in materials sciences to be used in optoelectronics as ligand backbones in enantioselective catalysis and as chiral sensors. The properties of these materials are related to the stereodynamics of these helical chiral compounds. However, little is known about features controlling stereodynamics in helicenes; in particular, for heterohelicenes the position of the heteroatom could be relevant in this respect. Herein the complete stereodynamic characterization of monoaza[5]helicenes is shown by enantioselective dynamic HPLC and DFT calculations. At variance with previous theoretical calculations, 1‐aza[5]helicene shows a surprisingly high enantiomerization barrier, which is triggered by specific solvent interactions. 相似文献
90.
Sylwia Studzińska Sandra Mounicou Joanna Szpunar Ryszard Łobiński Bogusław Buszewski 《Analytica chimica acta》2015
This text presents a novel method for the separation and detection of phosphorothioate oligonucleotides with the use of ion pair ultra high performance liquid chromatography coupled with inductively coupled plasma mass spectrometry The research showed that hexafluoroisopropanol/triethylamine based mobile phases may be successfully used when liquid chromatography is coupled with such elemental detection. However, the concentration of both HFIP and TEA influences the final result. The lower concentration of HFIP, the lower the background in ICP-MS and the greater the sensitivity. The method applied for the analysis of serum samples was based on high resolution inductively coupled plasma mass spectrometry. Utilization of this method allows determination of fifty times lower quantity of phosphorothioate oligonucleotides than in the case of quadrupole mass analyzer. Monitoring of 31P may be used to quantify these compounds at the level of 80 μg L−1, while simultaneous determination of sulfur is very useful for qualitative analysis. Moreover, the results presented in this paper demonstrate the practical applicability of coupling LC with ICP-MS in determining phosphorothioate oligonucleotides and their metabolites in serum within 7 min with a very good sensitivity. The method was linear in the concentration range between 0.2 and 3 mg L−1. The limit of detection was in the range of 0.07 and 0.13 mg L−1. Accuracy varied with concentration, but was in the range of 3%. 相似文献