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1.
建立了离子印迹壳聚糖/凹凸棒石(IICA)分离富集-火焰原子吸收光谱(FAAS)测定中药材中痕量Cd(Ⅱ)的新方法。在动态吸附条件下,系统研究了溶液pH值、流速、洗脱条件和干扰离子对痕量Cd(Ⅱ)分离富集的影响。研究表明,在pH为4.5,上样流速为0.60mL/min条件下,Cd(Ⅱ)能被IICA定量富集;吸附的Cd(Ⅱ)可用1.0mol/L HCl-0.1mol/L甲基异丁酮的乙醇溶液,在流速为0.96mL/min条件下完全洗脱。优化条件下,IICA对Cd(Ⅱ)的动态吸附容量为56.45mg/g。线性范围为0.00097~1.28mg/L,r=0.9994,检出限(3σ,n=11)为0.97μg/L,相对标准偏差为1.32%(n=6,c=0.08mg/L),回收率在96.5%~106.4%之间。该方法操作简便,灵敏度和精密度高,可应用于实际中药材样品中痕量镉的测定。  相似文献   

2.
建立了用离子印迹壳聚糖/凹土(ⅡGA)分离富集-火焰原子吸收光谱(FAAS)测定痕量镉的新方法.在动态吸附条件下,系统地研究了溶液pH值、流速、洗脱条件和干扰离子对痕量镉分离富集的影响;在pH4.5、上样流速为0.60 mL/min的条件下,镉能被ⅡCA定量富集;吸附的镉可用1.0 mol/L HCl-0.1 mol/...  相似文献   

3.
纳米二氧化钛对痕量铅的吸附性能研究   总被引:6,自引:1,他引:5  
提出了纳米TiO2分离富集, 火焰原子吸收光谱法测定水样中痕量铅的新方法.考察了铅在纳米TiO2上的吸附动力学、最佳酸度和吸附容量.实验结果表明:在最佳实验条件下,纳米TiO2能定量、快速地吸附水中的痕量Pb^2+,其静态吸附容量为17.90 mg/g.吸附在纳米TiO2上的Pb^2+可用0.1 mol/L HNO3+0.1 mol/L CH3COOH完全洗脱.对Pb2+的检出限为2.57 ng/mL, 相对标准偏差为2.5% (n=11, ρ=0.10 μg/mL),加标回收率在94.5%~102.5%之间.可用于实际水样中铅的测定.  相似文献   

4.
肖艳  周方钦  彭佳  廖运霞 《分析测试学报》2015,34(11):1281-1285
该文制备了一种新型吸附材料三乙烯四胺修饰β-环糊精交联树脂(TETA-β-CDP),并对其进行红外光谱表征,优化了该吸附材料对痕量铅、镉的吸附和解析条件,建立了动态条件下同时分离富集/原子吸收光谱测定大米中铅和镉的新方法。在p H 5.5时,样品溶液以1.0 m L/min流速过柱,试液中的Pb2+和Cd2+可被该树脂定量富集,其动态饱和吸附容量分别为22.8,31.3 mg/g,吸附在TETA-β-CDP上的Pb2+和Cd2+可用0.1 mol/L HCl以0.8 m L/min流速完全洗脱。该方法对铅、镉的检出限(3σ,n=11)分别为0.038 mg/L和0.016 mg/L;线性范围分别为0.2~20 mg/L和0.05~2.5 mg/L;相对标准偏差(RSD)分别为2.8%和1.7%;加标回收率分别为97.5%~101.0%和95.0%~102.5%。该方法用于大米样品中痕量铅、镉的测定,结果满意。  相似文献   

5.
纳米SiO_2分离富集-火焰原子吸收法测定水中痕量银   总被引:4,自引:0,他引:4  
研究了纳米SiO_2分离富集-火焰原子吸收法测定水中痕量银的新方法.考察了溶液pH、吸附时间、洗脱条件和干扰离子等因素对Ag~+分离富集的影响,确定了纳米SiO_2对Ag~+吸附的最佳条件.结果表明:在pH 4.1时,纳米SiO_2能定量吸附银,吸附在纳米SiO_2上的Ag~+可用0.5 mol/L HCl+0.5 mol/L硫脲定量洗脱.该法对银的检出限为0.77 ng/mL(3σ,n=11);线性范围为0.005~1.5μg/mL,对0.5μg/mL的Ag~+标液进行7次测定,RSD为3.6%,回收率在94.0%~101.5%之间;方法可用于环境水样中痕量银的测定.  相似文献   

6.
提出了纳米硅羟基磷灰石(Si-HAP)分离富集,火焰原子吸收光谱法(FAAS)测定水样中痕量铅的新方法。考察了铅在纳米Si-HAP上的吸附动力学、最佳酸度和吸附容量。实验结果表明:在最佳实验条件下,纳米Si-HAP能定量、快速地吸附水中的痕量Pb2+,其静态吸附容量24.33 mg/g;吸附在纳米Si-HAP上的Pb2+可用0.01mol/L EDTA-Ca完全洗脱。本法对Pb2+的检出限为1.33 ng/mL,相对标准偏差为4.0%(n=11,c=1μg/mL),加标回收率在94.9%~102.0%之间。方法用于实际水样中铅的测定,结果满意。  相似文献   

7.
本文采用化学修饰技术制备了新型固相萃取材料罗丹宁-壳聚糖,用傅立叶红外(IR)光谱对其进行了表征。以该材料作为固相萃取剂,采用火焰原子吸收(FAAS)法为检测手段,在动态条件下系统研究了该吸附材料对痕量Ag+的吸附性能。研究结果表明:在pH=5.0,室温下以1.8mL/min速度流过分离柱,试液中的Ag+能被该材料定量吸附,其动态饱和吸附容量为72.62mg/g。吸附的Ag+可用8mL 0.1mol/L硫脲-0.05 mol/L HNO3混合液以0.7 mL/min流速完全洗脱,洗脱液中的Ag+用FAAS法测定。该方法对Ag+的检出限(3σ,n=11)为8.50μg/L,线性范围为0.01~5.0mg/L,相对标准偏差(RSD)为0.72%;加标回收率在97.8%~102.7%之间。方法用于实际环境水样中痕量Ag+的测定,结果满意。  相似文献   

8.
研究了用海带吸附法分离富集水中痕量Pb2 和Cd2 的方法.在25℃下,pH4.0~5.0,水样经过预先用海带制成吸附柱后,用10mL 1 mol/L的HCl,流速为1 mL/min对吸附柱进行洗脱,采用原子吸收光谱法测定洗脱液中Pb2 和Cd2 .Pb2 和Cd2 的饱和吸附量分别为164.67和8.73 mg/g,回收率在95.8%~103.1%之间.  相似文献   

9.
以2-巯基苯骈噻唑为修饰剂,铅离子为印迹离子成功制备分子印迹功能介孔材料,并用扫描电镜(SEM)、傅里叶红外光谱对材料进行了结构表征。铅离子分子印迹功能介孔材料能很好地将Pb(II)与性质相近的二价重金属离子Cu(II),Cd(II)和Hg(II)分离,具有非常好的吸附选择性,且静态吸附容量0.64 mmol/g。利用该材料制备的分离富集柱可以很好地富集溶液中痕量铅离子,且仅用2 mL 0.5 mol/L EDTA以0.4 mL/min流速即可完全洗脱,富集倍数高达250倍。样品预富集后的火焰原子吸收光度法线性范围为0.5~1.2×104μg/L,r=0.999 2,检出限(3σ,n=11)为0.04μg/L。利用功能介孔材料分离富集水样中痕量铅离子,用火焰原子吸收法测定含量,相对标准偏差(RSD)小于等于3%(n=6),回收率在98.2%~99.1%之间。  相似文献   

10.
报道了色谱301固载硫杂杯芳烃树脂分离预富集-火焰原子吸收光谱法测定痕量银的新方法。探讨了固载硫杂杯芳烃树脂对银的吸附原理与最佳条件。将含Ag 试液在pH=10、温度为23±2℃的条件下恒温震荡10min,静置10min,Ag 可被树脂定量富集被吸附的Ag 可用5mL酸性硫脲(0.15mol/LHCl 0.15mol/L硫脲)完全洗脱,洗脱液中的银用火焰原子吸收光谱法测定。该法对银的检出限为0.17μg/L(3σ,n=11);线性范围为0.006~3mg/L。对0.18mg/L的Ag 标液进行7次测定,RSD=1.53%,回收率在99.9%~105.0%之间。用于“二次资源”锌矿渣和环境水样中痕量银的测定,结果满意。  相似文献   

11.
研究了介孔Al2O3分离富集-火焰原子吸收法测定麻黄和马钱子中的铅的新方法.探讨了溶液pH、吸附温度、洗脱条件及共存离子对铅分离富集的影响.在最佳实验条件下,介孔Al2O3能定量、快速吸附试液中的痕量pb2+,其静态饱和吸附容量为8.53 mg/g.吸附在介孔Al2O3上的pb2可用0.2 mol/LEDTA完全洗脱....  相似文献   

12.
A flow injection (FI) on-line preconcentration procedure by using a nanometer-sized alumina packed micro-column coupled to inductively coupled plasma mass spectrometry (ICP-MS) was described for simultaneous determination of trace metals (V, Cr, Mn, Co, Ni, Cu, Zn, Cd and Pb) in the environmental samples. The effects of pH value, sample flow rate, preconcentration time, and interfering ions on the preconcentration of analytes have been investigated. Under the optimized operating conditions, the adsorption capacity of the nanometer-sized alumina for V, Cr, Mn, Co, Ni, Cu, Zn, Cd and Pb were found to be 11.7, 13.6, 15.7, 9.5, 12.2, 13.3, 17.1, 17.7 and 17.5 mg g−1, respectively. With 60 s preconcentration time and 60 s elution time, an enrichment factor of 5 and the sampling frequency of 15 h−1 were obtained. The proposed method has been applied to the determination of trace metals in environmental certified reference materials and natural water samples with satisfactory results.  相似文献   

13.
建立了中孔分子筛Al-MCM-41分离富集-火焰原子吸收光谱法测定水样中痕量铅的新方法。采用扫描电镜(SEM)、红外光谱(IR)等检测方法对自制的中孔分子筛Al-MCM-41吸附材料进行了表征,优化了中孔分子筛Al-MCM-41对试液中痕量铅的吸附和解吸条件。在pH5.5时,室温振荡20 min,中孔分子筛Al-MCM-41能定量、快速吸附水中的痕量Pb2+,其静态饱和吸附容量为2.5 mg/g。吸附在中孔分子筛Al-MCM-41上的Pb2+可用0.2 mol/L EDTA完全洗脱。其他金属离子共存不影响铅的测定。洗脱铅后的吸附材料经再生可循环使用10次以上。Pb2+的线性范围为0.5~30 mg/L,富集后方法检出限(3σ)为0.05μg/L,对5 mg/L的Pb2+溶液平行测定11次,相对标准偏差为1.2%,加标回收率为98%~104%。该方法用于环境水样中铅的测定,结果满意。  相似文献   

14.
In this article, a new method that utilizes a diethyldithiocarbamate-modified nanometre TiO2 (TiO2–DDTC) as solid-phase extractant has been developed for simultaneous preconcentration of trace Cu(II), Pb(II), Zn(II), and Cd(II) prior to measurement by inductively coupled plasma atomic emission spectrometry (ICP-AES). The separation/preconcentration conditions of analytes, which include the effects of pH, sample flow rate and volume, elution conditions, and interfering ions on the recovery of the analytes, were investigated. At pH 5, the adsorption capacity of modified nanometre TiO2–DDTC was found to be 6.2, 19, 4.7, and 6.0?mg/g for Cu(II), Pb(II), Zn(II), and Cd(II), respectively. According to the definition of IUPAC, the detection limits (3σ) of this method for Cu(II), Pb(II), Zn(II), and Cd(II) were 0.41, 1.7, 0.39, and 0.52?ng/mL, respectively. The proposed method achieved satisfied results when applied to the determinations of trace Cu(II), Pb(II), Zn(II), and Cd(II) in biological and natural water samples.  相似文献   

15.
本文将纳米氧化铝微柱分离系统与石墨炉原子吸收光谱法联用,用于测定环境水样中的痕量铅和镉。较系统地考察了纳米Al2O3材料对镉和铅离子的吸附性能及影响因素;在优化的实验条件下本法对Pb和Cd的检出限(3σ)分别为0.189 ng/mL和0.0039 ng/mL;RSD%分别为3.9%和2.9%。  相似文献   

16.
A novel method for the rapid extraction and determination of a ppt level of Pb2+ and Cu2+ ions using partial silylated MCM-41 modified by a new salophen and inductively coupled plasma atomic emission spectrometry (ICP-AES) is introduced. The preconcentration factor of the method is 500, and the detection limits of Pb2+ and Cu2+ are 335 and 34 ng L(-1), respectively. The time and efficiency of extraction, the pH and flow rate, the type and minimum amount of acid for stripping of Pb2+ and Cu2+ from modified MCM-41 and the break-through volume were investigated. The maximum capacity of 4 mg of silylated MCM-41 modified by salophen used was found to be 150 +/- 4 and 117 +/- 3 microg of Pb2+ and Cu2+, respectively.  相似文献   

17.
A solid phase extraction system for separation and preconcentration of trace amounts of Pb(II), Ni(II), Cd(II) and Cu(II) is proposed. The procedure is based on the adsorption of Pb2+, Ni2+, Cd2+ and Cu2+ ions on a column of 1-(2-pyridylazo)-2-naphthol (PAN) immobilised on surfactant-coated clinoptilolite prior to their determinations by Flame Atomic Absorption Spectroscopy (FAAS). The effective parameters including pH, sample volume, sample flow rate and eluent flow rate were also studied. The analytes collected on the column were eluted with 5 mL of 1 mol L?1 nitric acid. A concentration factor of 180 can be achieved by passing 900 mL of sample through the column. The detection limits (3 s) for Cd, Cu, Pb and Ni were found to be 0.28, 0.12, 0.44 and 0.46 µg L?1, respectively. The relative SDs at 10 µg L?1 (n = 10) for analytes were in the range of 1.2–1.4%. The method was applied to the determination of Pb, Ni, Cd and Cu in water samples.  相似文献   

18.
施踏青  梁沛  李静  江祖成  胡斌 《分析化学》2004,32(11):1495-1497
提出了纳米TiO2分离富集,GFAAS测定水样中痕量铅的新方法。详细考察了纳米TiO2对铅的吸附行为,结果表明:在pH4.0时,Pb^2 可被纳米TiO2定量富集,吸附于纳米TiO2上的Pb^2 可用0.1mol/L的硝酸完全解脱。本法对Pb^2 的检出限为52ng/L,相对标准偏差为4.7%(n=10,C=0.02mg/L)。本法已用于实际水样中铅的测定,结果满意。  相似文献   

19.
A new method using dithizone-modified TiO2 nanoparticles (nanometer TiO2-DZ) as solid-phase extractant has been developed for the simultaneous preconcentration of trace amounts of chromium and lead prior to their measurement by inductively coupled plasma atomic emission spectrometry (ICP-AES). The preconcentration conditions of the analytes, including the effects of pH, sample flow rate and volume, elution conditions and interfering ions on the recovery of the analytes were investigated. At pH 5, the adsorption capacity of the nanometer TiO2-DZ was found to be 5.8 mg g−1 and 22.5 mg g−1 for Cr and Pb, respectively. According to the definition of IUPAC, the detection limits (3σ) of this method for Cr and Pb were 0.38 and 1.72 ng mL−1, respectively. The proposed method was applied to the determination of trace chromium and lead in foodstuffs, plants and water samples with satisfactory results.  相似文献   

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