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1.
建立了纺织品和食品包装材料中壬基酚、辛基酚和双酚A的液相色谱-串联质谱分析方法。不同类型的纺织品和食品包装材料样品采用加速溶剂萃取法,以无水乙醇为提取剂,在10.3 MPa和120℃下静态循环提取2次,提取液经Supelclean Envi-Carb石墨化碳黑固相萃取柱净化,收集甲醇-二氯甲烷(1∶4,V/V)洗脱液,采用Waters XBridge C18色谱柱,以甲醇-0.1%氨水溶液为流动相,梯度洗脱分离后,在LC/MS/MS多反应监测模式下进行定性与定量分析。壬基酚、辛基酚和双酚A的方法检出限为0.5μg/kg,在0.5~10μg/kg的3个添加水平范围内,纺织品样品的平均回收率为86.9%~92.5%,相对标准偏差均小于9.1%;食品包装材料样品的平均回收率为87.8%~93.0%,相对标准偏差均小于8.8%。本方法准确、快速、灵敏度高,可用于纺织品和食品包装材料的实际检验。  相似文献   

2.
建立高效液相色谱法测定土壤和淤泥中双酚A、壬基酚和辛基酚.样品采用超声波萃取,以体积比1∶1的正己烷和丙酮作为提取剂,体积比90∶10的乙腈和水作为流动相,经SupelcosilTM LC PAH色谱柱(250×4.6 mm,5 μm)分离后荧光检测器检测,双酚A、壬基酚和辛基酚的荧光激发波长是227 nm,发射波长为313 nm,样品在6 min中内完全出峰.该方法的线性范围在0.1~20 μg/mL之间,在0.1μg/mL、0.5μg/mL和1.0 μg/mL3个浓度的添加水平下土壤和淤泥样品的加入回收率分别在83.7%~115.6%之间和94.3%~106.2%之间.该方法简单、快速和经济,可用于淤泥和土壤实际样品检测.  相似文献   

3.
建立了纺织品与食品包装材料中烷基酚及双酚A迁移量的液相色谱-串联质谱分析方法.纺织品和食品包装材料浸泡液经Supelclean Envi-Carb石墨化碳黑固相萃取柱净化,以Waters XBridge C_(18)(150 mm×2.1 mm,3.5 μm)色谱柱分离后,进行LC-MS/MS多反应监测模式下的定性及定量分析.烷基酚和双酚A在纺织品模拟汗液、食品模拟物介质中特定迁移量的定量下限分别为2、4 μg/kg.在低、中、高3个添加水平下,测得纺织品样品的回收率为83%~91%,相对标准偏差为4.1%~9.0%;食品包装材料样品的回收率为82%~94%,相对标准偏差为3.9%~8.7%.  相似文献   

4.
建立了测定纺织品中壬基酚聚氧乙烯醚和辛基酚聚氧乙烯醚的硅胶吸附色谱-电喷雾质谱分析方法.不同类型的纺织品样品采用加速溶剂萃取法,以无水乙醇为提取溶剂,在10.3 MPa和100 ℃下静态循环提取2次,提取液经Sep-Pak Carbon/NH2石墨化碳黑/氨基复合型固相萃取柱净化,以Waters Spherisorb S3W(150 mm×2.0 mm, 3 μm)色谱柱为分离柱,乙腈-水体系为流动相梯度洗脱,在电喷雾质谱正离子模式下进行定性及定量分析.壬基酚聚氧乙烯醚的方法检出限为10~40 μg/kg,在1~20 mg/kg的3个添加水平范围内的平均回收率为81.4%~95.9%,相对标准偏差均小于12.5%.辛基酚聚氧乙烯醚的方法检出限为10~30 μg/kg,在1~20 mg/kg的3个添加水平范围内的平均回收率为80.2%~96.8%, 相对标准偏差均小于13.0%.本方法准确、简便、快速,可用于纺织品的实际检验工作.  相似文献   

5.
王小芳  曾文芳  王菁  任韧 《色谱》2009,27(3):328-332
建立了高效液相色谱法(HPLC)-二极管阵列检测器(DAD)/荧光检测器(FLD)串联技术同时测定精油中7种性激素(雌二醇、雌三醇、雌酮、睾酮、甲基睾酮、孕酮、己烯雌酚)的方法。样品先用正己烷溶解后,用90%的甲醇水溶液提取,弃去正己烷层,下层清液再用正己烷脱脂、净化2次,目标化合物以水-甲醇-乙腈(体积比为50:30:20)为流动相,经XTerraRP18色谱柱(250 mm×4.6 mm, 5 μm )分离,用DAD-FLD串联法进行检测。雌二醇、雌三醇、雌酮、己烯雌酚的DAD检测波长为197 nm,睾酮、甲基睾酮、孕酮的DAD检测波长为240 nm。雌二醇、雌三醇、雌酮同时用FLD定性定量,激发波长为280 nm,发射波长为310 nm。7种性激素分离效果良好并消除了样品中杂质峰的干扰。7种性激素除孕酮的回收率为79.5%以外,其余组分的平均回收率均在93%以上;相对标准偏差为0.90%~1.89%;检出限为0.010 ~1.0 mg/L。该方法简便、准确,可用于同时测定精油中的7种性激素。  相似文献   

6.
固相萃取-高效液相色谱法测定水中BPA、NP和OP含量   总被引:1,自引:0,他引:1  
采用国产新型D4020大孔吸附树脂自制固相萃取柱,研究了柱长、上样速度、样品溶液的pH、盐浓度等因素对壬基酚、辛基酚和双酚A吸附率的影响,确定了最佳固相萃取条件,建立了固相萃取-高效液相色谱测定水中痕量壬基酚、辛基酚和双酚A的分析方法.该法双酚A、壬基酚和辛基酚的检出限分别为0.432 μg/L、0.998 μg/L和1.336 μg/L,回收率为91%~96%,相对标准偏差(RSD)为1.5%~5.6%.方法简便快速、成本低廉,灵敏度高,准确度好,用于实际水样分析,取得满意结果.  相似文献   

7.
高效液相色谱法测定大鼠组织中双酚A和4-壬基酚浓度   总被引:8,自引:0,他引:8  
肖全伟  黎源倩  吴德生 《色谱》2004,22(6):579-582
建立了大鼠组织中双酚A和4-壬基酚的提取和含量测定方法。大鼠组织样品经甲醇-乙酸铵缓冲液匀浆、 正己烷-乙醚混合溶剂提取、氮气吹干后用流动相溶解,以乙腈-0.01 mol/L乙酸铵缓冲液(pH 4.5)(体积比为75∶25)为流动相,经C18色谱柱分离,在激发波长227 nm、发射波长313 nm下进行荧光检测。大鼠心、脑、肝和肾脏组织样品中,双酚A的检出限为3.2~4.6 ng/g,4-壬基酚的检出限为11.8~15.6 ng/g;日内检测精密度为0.89%~4.50%,日间检测精密度为3.10%~12  相似文献   

8.
邵兵  韩灏  李冬梅  赵榕  孟娟  马亚鲁 《色谱》2005,23(4):362-365
建立了测定内分泌干扰物质烷基酚、双酚A的液相色谱-电喷雾串联质谱(负离子模式)分析方法,优化了样品前处理方法。以二氯甲烷作提取溶剂,采用加速溶剂萃取法萃取动物组织样品,萃取液用500 mg OASIS氨基固相萃取柱进行浓缩净化。对流动相组分和流动相添加剂对质谱的离子化效率进行了考察,测得3种化合物在高、中、低3个添加水平的回收率为88%~101%,相对标准偏差小于15%;双酚A、壬基酚和辛基酚的方法检出限分别为0.3, 0.05和0.1 μg/kg。对从北京市场上采集的27份动物组织样品进行检测,结果表明壬基酚广泛存在于各种动物源性食品中,检出含量为0.49~55.98 μg/kg,其中鱼肉组织中都检出壬基酚,而且其含量也较高(9.13~55.98 μg/kg)。  相似文献   

9.
建立了超高效液相色谱-串联质谱法测定食品接触材料中双酚A、四溴双酚A、壬基酚和辛基酚迁移量的方法。样品经蒸馏水、3%乙酸溶液、10%乙醇溶液、20%乙醇溶液、50%乙醇溶液和异辛烷6种食品模拟物浸泡处理,浸泡液经C18色谱柱分离,以多反应监测(MRM)模式进行定性和定量。检测结果表明:在水基、酸性、酒精类食品模拟物中,双酚A、四溴双酚A、壬基酚、辛基酚的质量浓度均在0.001~0.50μg/mL范围内与其质谱响应值具有良好的线性关系,相关系数均不小于0.9995,方法检出限为0.01~0.25μg/kg,定量限为0.03~0.83μg/kg;在油基食品模拟物中,双酚A、四溴双酚A、壬基酚、辛基酚的线性范围均为0.01~0.50μg/mL,相关系数均不小于0.9989,方法检出限为0.10~2.50μg/kg,定量限为0.33~8.32μg/kg。双酚A、四溴双酚A、壬基酚、辛基酚的加标回收率为87.2%~101.2%,相对标准偏差为1.5%~3.4%(n=6)。该法样品处理步骤简单,准确度高,灵敏度好,可用于食品接触材料中烷基酚类化合物的检测。  相似文献   

10.
建立了纺织品中烷基酚聚氧乙烯醚的凝胶过滤色谱-串联质谱(GFC-MS/MS)分析方法。纺织品样品采用加速溶剂萃取法,以无水乙醇为提取溶剂进行提取,提取液经Sep-Pak Carbon/NH2石墨化碳黑/氨基复合型固相萃取柱净化。烷基酚聚氧乙烯醚经Shodex MSpak GF-310 2D色谱柱(150×2.0 mm)分离后,在多反应监测(MRM)模式下进行串联质谱定性及定量分析。方法对壬基酚聚氧乙烯醚(NPnEO)和辛基酚聚氧乙烯醚(OPnEO)的定量限均为0.2 mg/kg,在0.2~5 mg/kg的3个添加水平范围内,NPnEO的平均回收率为84.2%~93.5%,相对标准偏差(RSD)为3.9%~7.5%;OPnEO的平均回收率为85.5%~96.1%,RSD为3.4%~8.1%。该方法能够满足纺织品中烷基酚聚氧乙烯醚的检测要求。  相似文献   

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We review our research on the synthesis and study of the physical and biological properties of furyl- and thienylgermatranes and -silatranes.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 6, pp. 725–732, June, 1992.  相似文献   

13.
The use of the insect cell/baculovirus expression system for producing recombinant proteins of bacterial, plant, insect, and mammalian origin has become widespread. The popularity of this eukaryotic expression system is due to many factors, including (1) potentially high protein expression levels, (2) ease and speed of genetic engineering, (3) ability to accommodate large DNA inserts, (4) protein processing similar to higher eukaryotic cells (e.g., mammalian cells), and (5) ease of insect cell growth (e.g., suspension growth). The following review of the literature discusses two engineering aspects of recombinant protein synthesis by insect cell cultures: bioreactor scale-up and insect cell line selection. Following this review patent abstracts and additional literature pertaining to expression of recombinant proteins in insect cell culture are listed.  相似文献   

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The aromaticity and antiaromaticity of the ground state (S 0), lowest triplet state (T 1), and first singlet excited state (S 1) of benzene, and the ground states (S 0), lowest triplet states (T 1), and the first and second singlet excited states (S 1 and S 2) of square and rectangular cyclobutadiene are assessed using various magnetic criteria including nucleus-independent chemical shifts (NICS), proton shieldings, and magnetic susceptibilities calculated using complete-active-space self-consistent field (CASSCF) wave functions constructed from gauge-including atomic orbitals (GIAOs). These magnetic criteria strongly suggest that, in contrast to the well-known aromaticity of the S 0 state of benzene, the T 1 and S 1 states of this molecule are antiaromatic. In square cyclobutadiene, which is shown to be considerably more antiaromatic than rectangular cyclobutadiene, the magnetic properties of the T 1 and S 1 states allow these to be classified as aromatic. According to the computed magnetic criteria, the T 1 state of rectangular cyclobutadiene is still aromatic, but the S 1 state is antiaromatic, just as the S 2 state of square cyclobutadiene; the S 2 state of rectangular cyclobutadiene is nonaromatic. The results demonstrate that the well-known "triplet aromaticity" of cyclic conjugated hydrocarbons represents a particular case of a broader concept of excited-state aromaticity and antiaromaticity. It is shown that while electronic excitation may lead to increased nuclear shieldings in certain low-lying electronic states, in general its main effect can be expected to be nuclear deshielding, which can be substantial for heavier nuclei.  相似文献   

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Under investigation is the structure and process that gives rise to hard-soft behavior in simple anionic atomic bases. That for simple atomic bases the chemical hardness is expected to be the only extrinsic component of acid-base strength, has been substantiated in the current study. A thermochemically based operational scale of chemical hardness was used to identify the structure within anionic atomic bases that is responsible for chemical hardness. The base's responding electrons have been identified as the structure, and the relaxation that occurs during charge transfer has been identified as the process giving rise to hard-soft behavior. This is in contrast the commonly accepted explanations that attribute hard-soft behavior to varying degrees of electrostatic and covalent contributions to the acid-base interaction. The ability of the atomic ion's responding electrons to cause hard-soft behavior has been assessed by examining the correlation of the estimated relaxation energies of the responding electrons with the operational chemical hardness. It has been demonstrated that the responding electrons are able to give rise to hard-soft behavior in simple anionic bases.  相似文献   

19.
A QuEChERS (quick, easy, cheap, effective, rugged, and safe) method for the determination of benazolin-ethyl and quizalofop-p-ethyl in rape and soil by high-performance liquid chromatography-tandem mass spectrometry has been developed in this study. The residue and dissipation of benazolin-ethyl and quizalofop-p-ethyl in rape and soil were determined with the developed method. The half-lives of benazolin-ethyl in rape straw and soil were 3.7–5.1 days and 14.3–26.3 days, respectively. The half-lives of quizalofop-p-ethyl in rape straw and soil were 5.0-6.1 days and 0.3–9.7 days, respectively. The residue of benazolin-ethyl and quizalofop-p-ethyl in rapeseed and soil were below the detection limit (i.e., 0.5?mg?kg?1, the maximum residue level of European Union for quizalofop-p-ethyl).  相似文献   

20.
The P-anilino-P-chalcogeno(imino)diazasilaphosphetidines [Me(2)Si(mu-N(t)Bu)(2)P=E(NHPh)] (E = O (3), S (4), Se (5), N-p-tolyl (6)) were synthesized by oxidizing the P-anilinodiazasilaphosphetidine [Me(2)Si(N(t)Bu)(2)P(NHPh)] (2) with cumene hydroperoxide, sulfur, selenium, and p-tolyl azide, respectively. The lithium salt of 4 reacted with thallium monochloride to produce ([Me(2)Si(mu-N(t)Bu)(2)P=S(NPh)-kappaN-kappaS]Tl)(7), which features a two-coordinate thallium atom. Treatment of 4-6 with AlMe(3) gave the monoligand dimethylaluminum complexes ([Me(2)Si(mu-N(t)Bu)(2)P=E(NPh)-kappaN-kappaE]AlMe(2)) (E = S (8), Se (9), N-p-tolyl (10)), respectively. In these complexes the aluminum atom is tetrahedrally coordinated by one chelating ligand and two methyl groups, as a single-crystal X-ray analysis of 8 showed. A 2 equiv amount of 4-6 reacted with diethylzinc to produce the homoleptic diligand complexes ([Me(2)Si(mu-N(t)Bu)(2)P=E(NPh)-kappaN-kappaE](2)Zn)(E = S (11), Se (12), N-p-tolyl (13)). A crystal-structure analysis of 11 revealed a linear tetraspirocycle with a tetrahedrally coordinated, central zinc atom.  相似文献   

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