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1.
为了快速低成本测定蒸馏酒中痕量重金属镉,利用钨丝电热蒸发器作为直接进样装置,与原子荧光光谱仪原子化器直接连接,构建了用于蒸馏酒中镉测定的直接进样原子荧光光谱检测系统(W-coil ETV-AFS),并对工作气体的气氛和流速、灰化和蒸发电压、样品承载量等参数进行了优化,建立了蒸馏酒中镉的直接进样快速检测方法.在最优条件下...  相似文献   

2.
氢化物发生-原子荧光法测定纯铜中镉   总被引:1,自引:0,他引:1  
陈明丽  邹爱美  王建华 《分析化学》2007,35(9):1339-1342
用717阴离子交换树脂填充柱选择性吸附CdCl42-阴离子,以实现其与大量铜基体的分离。在标准溶液中匹配适当基体浓度并采用氢化物发生-原子荧光法,实现了铜/镉质量比为2000~50000的纯铜中痕量镉的测定。在基体铜的浓度为50mg/L的样品消化液中,镉的检出限为0.2μg/L;精密度为3.0%(n=7,3.0μg/L),镉浓度在1.0~25.0μg/L范围内呈良好线性关系。本法适用于纯铜中痕量镉的测定。  相似文献   

3.
使用直接测汞仪和原子荧光光谱仪对海洋底栖生物脉红螺中痕量汞的测定进行了方法对比研究,实验结果表明:直接测汞仪在0~20.0ng和20.0~1 400.0ng范围内均呈良好的二次非线性拟合(R2=1.0000),原子荧光光谱仪在0.025~0.800μg/L范围内呈良好的线性关系(R2=0.9993)。在取样量相同的情况下,直接测汞仪的方法检出限为9.0×10-4μg/g,优于原子荧光光谱仪的3.9×10-3μg/g。采用国际标准物质贻贝组织(NIST SRM 2976)对比了方法的准确度和精密度,结果表明:直接测汞仪的回收率为97.95%,RSD为1.77%,原子荧光光谱仪的回收率为96.68%,RSD为3.99%。直接测汞仪简便快速,重现性好,准确度高,可用于海洋底栖生物中痕量汞的检测。  相似文献   

4.
建立了测定铝合金中痕量砷HG-AFS分析方法.采用王水溶解样品,在硫脲和抗坏血酸的存在下将As(Ⅴ)还原为As(Ⅲ),以KBH4溶液(20g/L)作为还原剂,HCl(5+95)溶液作为载流,用原子荧光光谱法测定样品中痕量砷.在选定的实验务件下,方法的线性范围为0.05~40μg/L,线性回归方程为,If=108.17+272.49ρ(μg/L),相关系数r=0.9997,检出限0.019μg/L.并与ICP-AES法进行了对照试验.  相似文献   

5.
研究了在硼氢化钠-1,10-二氮杂菲-钴(Ⅱ)体系中镉的荧光信号,发现1,10-二氮杂菲-钴(Ⅱ)能显著提高镉的荧光强度。据此,建立了一种蒸气发生-原子荧光光谱法测定痕量镉的新方法。优化了测定镉的实验参数,在优化的实验条件下。方法的检出限为0.014μg/L,线性范围为0~50μg/L,相关系数r=0.9971,相对标准偏差不超过3.2%。用该法测定了水系沉积物标准样品中镉的含量,取得了满意结果。  相似文献   

6.
离子液体双水相萃取-蒸气发生原子荧光法测定痕量镉   总被引:2,自引:0,他引:2  
研究了离子液体1-异戊基-3-甲基咪唑溴代盐-K2HPO4-水双水相体系对镉-双硫腙络合物的萃取性能,建立了测定痕量镉的蒸气发生-原子荧光光谱法.经离子液体双水相萃取后,在离子液体相中的镉-双硫腙络合物经酸化后可直接与还原剂(NaBH4)混合进行蒸气发生反应,并经气液分离后将蒸气引入原子化器中进行原子荧光检测,离子液体的存在不影响蒸气发生过程.考察了双水相系统的组成以及相关实验条件对镉-双硫腙络合物萃取的影响.在最佳实验条件下,样品体积为1 mL时,测定痕量镉的线性范围为0.25~5.0 μg/L,检出限为0.07 μg/L; 相对标准偏差为3.4%(n=9, 2.0 μg/L Cd2+).用国家标准物质GBW08608(水中镉、铬、铜、镍、铅、锌成分分析标准物质)验证了方法的准确性,并对实际水样中的痕量镉进行了测定.  相似文献   

7.
改变原子荧光光谱法以稀酸为载流的进样方式,以水为载流在新型双道原子荧光光谱仪上同时测定了土壤中的痕量砷(As)、汞(Hg)。采用王水水浴加热溶解样品,用50 g/L硫脲-抗坏血酸混合溶液预先将砷还原为As(Ⅲ),保持10%(体积分数)以上盐酸浓度,不转移直接定容静置后测定。优化了仪器工作条件,详细考察了以水为载流测定的可行性,选择了同时测定As、Hg所需的硼氢化钾浓度和盐酸浓度。节省了酸试剂用量,操作快速,单个样品测定仅需20 s左右。方法检出限As为0.005 mg/kg,Hg为0.0008 mg/kg,相对标准偏差(RSD,n=7)在1.0%~7.4%,经土壤国家标准物质和实际样品验证,适合土壤中痕量As、Hg的同时快速测定。  相似文献   

8.
郑琳  林力  金献忠 《分析试验室》2007,26(Z1):97-100
样品经HCl消解,加入硫氰酸钾 草酸 邻菲啰啉混合液抑制大量钴的干扰,在K3Fe(CN)6氧化体系下,实现了无需分离大量钴直接进行氧化钴中痕量铅的氢化物-原子荧光光谱法测定.回收率为91%~107%,检出限为0.56μg/L,线性范围0~80μg/L.用该方法分析氧化钴样品中的Pb,方法简便,结果准确,应用前景良好.  相似文献   

9.
利用HNO3–HClO4混合酸消解样品,采用氢化物发生–原子荧光光谱法测定牡蛎中镉的含量。在优化的仪器工作条件下,镉的质量浓度在0.20~1.50μg/L范围内与荧光强度呈良好的线性关系,线性相关系数为0.9992,检出限为0.10μg/L,测定结果的相对标准偏差为4.48%(n=12),加标回收率为94.3%~106.1%。测定了标准物质贻贝GB 08571中镉的含量,测定结果与标准值一致。该方法可满足牡蛎中微量镉的分析测定。  相似文献   

10.
陈焕文  李明  金钦汉  张燮 《分析化学》2006,34(6):839-842
近年来,以RDX为代表的痕量爆炸物检测已经是反恐斗争和国土安全领域的重要课题[1]。本实验将醋酸作为辅助试剂直接添加到待分析水样中,采用电喷雾电离直接进样,在正离子检测模式下,建立了直接快速测定水样中衡量RDX的电喷雾质谱分析方法。在样品流量为10.0μL/m in,喷雾电压为5.0 kV,毛细管温度为200℃条件下获得的RDX的检出限为0.001μg/L,线性范围为0.005~100μg/L。对天然湖水、矿泉水和自来水中添加的衡量RDX的回收率分别在92%~108%之间。单个样品分析(含串联质谱分析)所需时间不超过2 m in。  相似文献   

11.
In this work, the microsampling nature of tungsten coil electrothermal vaporization Ar/H2 flame atomic fluorescence spectrometry (W-coil ETV-AFS) as well as tungsten coil electrothermal atomic absorption spectrometry (W-coil ET-AAS) was used with cloud point extraction (CPE) for the ultrasensitive determination of cadmium in rice and water samples. When the temperature of the extraction system is higher than the cloud point temperature of the selected surfactant Triton X-114, the complex of cadmium with dithizone can be quantitatively extracted into the surfactant-rich phase and subsequently separated from the bulk aqueous phase by centrifugation. The main factors affecting the CPE, such as concentration of Triton X-114 and dithizone, pH, equilibration temperature and incubation time, were optimized for the best extract efficiency. Under the optimal conditions, the limits of detection for cadmium by W-coil ETV-AFS and W-coil ET-AAS were 0.01 and 0.03 μg L−1, with sensitivity enhancement factors of 152 and 93, respectively. The proposed methods were applied to the determination of cadmium in certified reference rice and water samples with analytical results in good agreement with certified values.  相似文献   

12.
A laboratory constructed molybdenum tube atomizer was used for direct determination of trace cadmium in drug samples by the electrothermal atomic absorption spectrometric (ETAAS) method. An ultrasonic agitation method for a solution including the sample powder was used. A calibration curve was constructed with a cadmium standard solution including matrix. To eliminate interference from other matrix elements, a chemical modifier thiourea, was used. The detection limit were 17 pg ml(-1) (3 S/N), and the RSD of the direct analysis was 5-17%. The results for cadmium in the four drug samples analysed by the direct ETAAS method matched well with those obtained with nitric acid digested samples. The recovery of added cadmium was 103-106%. An accurate method is elaborated for the determination of cadmium in drug samples by direct ETAAS techniques. The merits of this method are rapid calibration, simplicity, fast analysis, and low cost.  相似文献   

13.
Slurry sampling atomic absorption spectrometry with electrothermal atomization was used to the determination of cadmium (Cd) and lead (Pb) in soils and sediments using permanent modifiers. Comparison of action of mixed permanent modifiers niobium (Nb)/iridium (Ir) and tungsten (W)/iridium (Ir) were studied in detail. The effect of amount of Ir, W and Nb on analytical signals of Cd and Pb was examined. The optimal amounts of modifiers for Cd and Pb determination were stated. Niobium carbide formation on graphite surface was studied for different pyrolysis temperatures. Finally for Cd determination in sediments and soils 200 μg of Nb mixed with 5 μg of Ir was used as permanent modifiers and 15 μg of Nb mixed with 200 μg of Ir for Pb determination. Suspensions were prepared in 5% HNO3. The analytical procedure was optimized carefully basing on data from pyrolysis and atomization curves studies. Ammonium dihydrogen phosphate was used additionally as matrix modifier during Cd determination in samples in order to prevent interferences coming from matrix components. The analysis of CRMs confirmed the reliability of the proposed approach. The precision and accuracy of Cd and Pb determination by the described method for soils and sediments were acceptable.  相似文献   

14.
应用高效的在线流动注射螯合树脂预富集石英缝管增敏火焰原子吸收系统直接测定水中痕量镉和铜 ,试验用内装 2 0 0 mg Amberlite XAD- 4键合的 5-磺酸 - 8-羟基喹啉螯合树脂的锥形柱 ,在 p H6条件下 ,样品流速为 6.0 ml·min-1,90 s装样 ,用 0 .5mol· L-1HCl洗脱 ,分析速度为30样·h-1分别获得 38和 40倍的富集 ,经石英缝管增敏 ,总灵敏度分别提高 1 36和 1 2 0倍 ,检出限为 0 .1和 0 .2μg· L-1。对镉和铜含量分别为 2 .0 ,5.0μg· L-1的水样连续测定 1 1次的相对标准偏差分别为 2 .8%和 3.4% ,可直接测定水体中 μg· L-1级的镉和铜。  相似文献   

15.
A novel automatic sequential injection (SI) single-drop micro-extraction (SDME) system is proposed as versatile approach for on-line metal preconcentration and/or separation. Coupled to electrothermal atomic absorption spectrometry (ETAAS) the potentials of this SI scheme are demonstrated for trace cadmium determination in water samples. A non-charged complex of cadmium with ammonium diethyldithiophosphate (DDPA) was produced and extracted on-line into a 60 μL micro-drop of di-isobutyl ketone (DIBK). The extraction procedure was performed into a newly designed flow-through extraction cell coupled on a sequential injection manifold. As the complex Cd(II)-DDPA flowed continuously around the micro-droplet, the analyte was extracting into the solvent micro-drop. All the critical parameters were optimized and offered good performance characteristics and high preconcentration ratios. For 600 s micro-extraction time, the enhancement factor was 10 and the sampling frequency was 6 h−1. The detection limit was 0.01 μg L−1 and the precision (RSD at 0.1 μg L−1 of cadmium) was 3.9%. The proposed method was evaluated by analyzing certified reference material.  相似文献   

16.
The analytical utility of a tungsten (W)-coil atomization-laser-induced fluorescence (LIF) approach has been evaluated for trace level measurements of elemental chromium (Cr), arsenic (As), selenium (Se), antimony (Sb), lead (Pb), tin (Sn), copper (Cu), thallium (Tl), indium (In), cadmium (Cd), zinc (Zn) and mercury (Hg). Measurements of As, Cr, In, Se, Sb, Pb, Tl, and Sn were performed by laser-induced fluorescence using a single dye laser operating near 460 nm whose output was converted by frequency doubling and stimulated Raman scattering to wavelengths ranging from 196 to 286 nm for atomic excitation. Absolute limits of detection (LODs) of 1, 0.3, 0.3, 0.2, 1, 6, 1, 0.2 and 0.8 pg and concentration LODs of 100, 30, 30, 20, 100, 600, 100, 20, and 80 pg/mL were achieved for As, Se, Sb, Sn, In, Cu, Cr, Pb and Tl, respectively. Determinations of Hg, Pb, Zn and Cd were performed using two-color excitation approaches and resulted in absolute LODs of 2, 30, 5 and 0.6 pg, respectively, and concentration LODs of 200, 3000, 500 and 60 pg/mL, respectively. The sensitivities achieved by the W-coil LIF approaches compare well with those reported by W-coil atomic absorption spectrometry, graphite furnace atomic absorption spectrometry, and graphite furnace electrothermal atomization-LIF approaches. The accuracy of the approach was verified through the analysis of a multielement reference solution containing Sb, Pb and Tl which each had certified performance acceptance limits of 19.6-20.4 μg/mL. The determined concentrations were 20.05 ± 2.60, 20.70 ± 2.27 and 20.60 ± 2.46 μg/mL, for Sb, Pb and Tl, respectively. The results demonstrate that W-coil LIF provides good analytical performance for trace analyses due to its high sensitivity, linearity, and capability to measure multiple elements using a single tunable laser and suggest that the development of portable W-coil LIF instrumentation using compact, solid-state lasers is feasible.  相似文献   

17.
《Analytical letters》2012,45(10):1562-1572
A rapid and sensitive method for the determination of trace levels of cadmium in cigarettes, soil, and blood samples by flame atomic absorption spectrometry (FAAS) has been developed. It is based on the online sorption of Cd(II) ions on a minicolumn packed by sodium dodecyl sulfate–coated alumina modified with dithizone. The optimum experimental parameters for the adsorption and desorption of cadmium were investigated. The recovery obtained was found to be 96% with preconcentration factor of 150. The calibration curve was linear between 50–600 µg/L Cd with a detection limit of 3 µg/L, sample frequency of 30 h?1 and reuse of column for 10 times without loss of sensitivity. The accuracy of the method was confirmed by applying the standard addition method and quantitative recoveries (95–99%) were obtained.  相似文献   

18.
An electrothermal atomic absorption method (ETAAS) for the direct determination of trace elements (Cd, Cr, Cu, Mn, Se) both in blood fractions (erythrocytes, plasma and lymphocytes) and whole blood was developed. Zeeman background correction and graphite tubes with L’vov platforms were used. Samples were ¶diluted with HNO3/Triton X-100 and pipetted directly ¶into the graphite tube. Ashing, pretreatment and atomization steps were optimized carefully for the different fractions and elements applying different matrix modifiers ¶for each element. For the lymphocyte fraction a multi-fold injection technique was applied. Low detection limits ¶of the ETAAS method (Cd 0.13 μg/L, Cr 0.11 μg/L, ¶Cu 0.52 μg/L, Mn 0.13 μg/L, Se 0.7 μg/L of whole blood) combined with small quantities of sample necessary for analysis allow determination of trace elements in this matrix. Verification of possible differences in the trace element status of humans was performed with statistical significance (P < 0.05). In addition, a contribution to the determination of normal values of essential elements was achieved. The method was applied for determination of trace elements in human blood and blood fractions of two groups (n = 50) different in health status.  相似文献   

19.
A technique coupling the analyte electrodeposition followed by in-situ stripping with electrothermal atomic absorption spectrometry has been developed for determination of lead and cadmium in samples with high salt contents. To separate the analyte from the sample matrix, the analyte was in-situ quantitatively electrodeposited on a platinum sampling capillary serving as the cathode (sample volume, 20 μL). The spent electrolyte containing the sample matrix was then withdrawn, the capillary with the analyte deposited was washed with deionized water and the analyte was stripped into a chemically simple electrolyte (5 g/L NH4H2PO4) by reversing the polarity of the electrodeposition circuit. Electrothermal atomization using a suitable optimized temperature program followed.  相似文献   

20.
《Analytical letters》2012,45(18):2908-2920
A simple and rapid method was developed for the determination of cadmium in grain. Porous carbon was employed as an electrothermal vaporizer with a sampling boat for atomic fluorescence spectrometry with on-line ashing to eliminate matrix interferences. Grain was pulverized to a particle size less than 0.25 mm to provide good homogeneity. Pauwels’ equation was employed to determine that the minimum sample mass was approximately 2 mg. Optimal conditions for ashing (90 W and 50 s), vaporization (110 W and 20 s), and argon-hydrogen flow (0.6 L/min) were determined. Under the optimized conditions, the limit of quantification was 0.11 µg/kg, and the relative standard deviation was less than 10%. Furthermore, the mean fortified recovery in grains was between 83.5 and 107.7% (n = 6). To validate the method, cadmium was also determined in these samples by ICP-MS, and there were no significant differences between the results using the methods.  相似文献   

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