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221.
建立了ASE-GPC—GC-QqQ—MS/MS测定土壤中17种有机氯农药和19种多氯联苯以及MAE-SPE—GC-QqQ—MS/MS测定土壤中16种多环芳烃和18种邻苯二甲酸酯的方法。多环芳烃和邻苯二甲酸酯定量限在0.02~2.81μg/kg之间,有机氯农药和多氯联苯定量限在0.01~0.51μg/kg之间。样品加标浓度在5μg/kg时多环芳烃和邻苯二甲酸酯的平均回收率在66.6%~122.1%之间,相对标准偏差均小于20%;有机氯农药和多氯联苯平均回收率在79.6%~93.2%之间,相对标准偏差均小于15%。 相似文献
222.
Recent studies indicate that secondary ozonides of cyclic alkenes are formed in atmospheric reactions and may be relatively stable. The secondary ozonides (SOZs) of cyclohexene (1), 1-methylcyclohexene (2), 4-isopropyl-1-methylcyclohexene (3) and 4-isopropenyl-1-methylcyclohexene (limonene) (4) have been characterized by rapid gas chromatography electron ionization (EI), negative and positive chemical ionization (CI: ammonia, isobutane and methane) and collision-induced dissociation (CID) mass spectrometry. Both EI and positive CI spectra were found unsuitable for reproducible analysis. However, negative CI showed stable (M−H)− ions with minor fragmentation. CID of the (M−H)− ions resulted in simple and reproducible fragmentation patterns for all four SOZs with loss of m/z 18, 44 and 60, tentatively assigned as H2O, CO2 and C2H4O2 or CO3, respectively. Thus, negative CI-MS–MS in combination with rapid gas chromatography is the preferred method for identification of secondary ozonides of cyclohexenes. 相似文献
223.
Phenylated arsenic compounds occur as highly toxic contaminants in former military areas where they were formed as degradation products of chemical warfare agents. Some phenylarsenic compounds such as roxarsone and aminophenylarsonic acids were applied as food additive and veterinary drugs in stock-breeding and therefore pose an environmental risk in agricultural used sites. Very few data exist in the literature concerning uptake and effects of phenylarsenic compounds in plants growing on contaminated soils. In this study, the accumulation, extractability, and metabolization of five different phenylarsenic compounds, phenylarsonic acid, p- and o-aminophenylarsonic acid, phenylarsine oxide, and 3-nitro-4-hydroxyphenylarsonic acid called roxarsone, by the terrestrial plant Tropaeolum majus were investigated. Ion chromatography coupled to inductively coupled plasma mass spectrometry was used to differentiate these arsenic compounds, and inductively coupled plasma atomic emission spectroscopy was used for total arsenic quantification. All compounds considered were taken up by the roots and transferred to stalks, leaves, and flowers. The strongest accumulation was observed for unsubstituted phenylarsonic acid followed by its trivalent analogue phenylarsine oxide that was mostly oxidized in soil whereas the amino- or nitro- and hydroxy-substituted phenylarsonic acids were accumulated to a smaller degree.The highest extraction yield of 90% for ground leaf material was achieved by 0.1 M phosphate buffer, pH 7.7, in a two-step extraction with a total extraction time of 24 h. The extraction of higher amounts of arsenic (50–70% of total arsenic present in leaves depending on arsenic species application) from non-ground intact leaves with deionized water in comparison with the buffer (20–40% of total arsenic) is ascribed to osmotic effects. The arsenic species analysis revealed a cleavage of the amino groups from the phenyl ring for plants treated with aminophenylarsonic acids. A further important metabolic effect consisted in the production of inorganic arsenate and arsenite from the phenylated arsonic acid groups. 相似文献
224.
Soylak M Divrikli U Saracoglu S Elci L 《Environmental monitoring and assessment》2007,127(1-3):169-176
Cellulose nitrate membrane filter was used for the preconcentration-separation of Cu, Co, Cd, Pb and Cr ions. The analyte
ions were collected on the membrane filter by the aid of carmine. Then membrane filter was dissolved by using nitric acid.
The levels of the analytes in the final solutions were determined by flame atomic absorption spectrometry (FAAS). The analytical
parameters including pH, amounts of carmine, sample volumes etc. have been optimized. No influences have been observed from
the matrix ions. The detection limits for analytes were in the range of 0.08 μg/l-0.93 μg/l. The validation of the procedure
was checked by the analysis of standard reference sediment (GBW 07309). The present method has been successfully applied for
the FAAS determinations of analyte ions in real samples including black tea and magnesium salts. 相似文献
225.
Mass spectrometry fingerprinting of humic acids extracted from different soils has been carried out using laser desorption/ionization mass spectrometry (LDI-TOF MS). LDI-TOF MS provides characteristic mass spectra fingerprints for the humic acids of different origin. The information given in the fingerprints was evaluated for natural grouping trends in the samples by neural networks computing tools, such as self-organizing feature map (SOFM). This approach is efficient for recognizing patterns in the humic acids samples independently of their characteristic variability; variability characterizing natural products such as humic substances. The use of multi-layer perceptron artificial neural networks gave a successful classification of the samples. 相似文献
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229.
傅立叶变换红外光谱法直接定性分析水样中有机污染物 总被引:1,自引:1,他引:0
用蒸馏水作为样品红外光谱的背景图谱,在水样图谱中扣除背景图谱即得到其中主要污染物的红外谱图,通过解谱,可对水样中的成分作出快速定性,在环境应急监测中得到应用。 相似文献
230.
超高效液相色谱串联质谱法同时测定叶菜中13种抗生素 总被引:1,自引:0,他引:1
建立了超高效液相色谱串联三重四极杆质谱(UPLC-MS/MS)同时检测叶菜类蔬菜中磺胺类、喹诺酮类、大环内酯类13种抗生素的分析方法.优化蔬菜基质中抗生素的提取液种类、净化方式、洗脱液种类,以及探讨环境变化和实验条件对实验结果的影响后,确定最优方案为称取500 mg的蔬菜样品,加入20 mL甲醇-Mcllvaine-Na_2EDTA溶液,超声和离心提取3次后,旋转蒸发至20 mL过HLB固相萃取柱.以6 m L甲醇洗脱,收集洗脱液,氮吹近干,用乙腈∶水(体积比2∶8)混合溶液复溶,离心、过滤后采用UPLC-MS/MS进行检测.流动相A相为1‰的甲酸水溶液,B相为乙腈,梯度洗脱.结果显示,小白菜在300ng·g~(-1)加标时,13种抗生素的加标回收率为38. 05%~96. 97%,150 ng·g~(-1)时,加标回收率为34. 52%~111. 10%,50 ng·g~(-1)时,加标回收率为41. 75%~107. 13%,相对偏差RSD值均小于8. 68%.检出限为0. 4~1 ng·g~(-1)、定量限为1. 5~3 ng·g~(-1),在不同种类的叶菜上也表现出较好的提取和回收效率,具有较好的分析应用效果.实际的样品检测发现,4种叶菜不同程度地检测出了抗生素的残留.总的含量范围(以干重计)为1. 59~32. 01 ng·g~(-1).小白菜所含抗生素含量最高,其次为白菜、生菜和芫荽.磺胺二甲基嘧啶为叶菜中含量最高的抗生素种类.各抗生素检测出的含量虽很低,但仍不能忽略长期食用带来的潜在健康风险. 相似文献