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1.
于洪梅  孙巍  陈明丽  田永  王建华 《分析化学》2010,38(12):1721-1726
以NaOH为沉淀试剂,将水样中的Ag+在线生成Ag2O沉淀,并即时被滞留在硅胶负载的碳纳米管表面。被吸附的Ag2O沉淀用HNO3(10%,V/V)洗脱,并用火焰原子吸收法检测。当进样体积为5.4mL时,线性范围为1~120μg/L,富集系数为34.5;检出限为0.35μg/L;相对标准偏差为0.5%(40μg/L,n=7),采样频率为47次/h。结果表明:本方法的富集系数、检出限及精密度均明显优于以纯碳纳米管和纯硅胶微珠为吸附剂收集Ag2O的体系。将此系统应用于实际水样中银的测定,加标回收率在96%~108%之间。  相似文献   

2.
流动注射预富集─石墨炉原子吸收联用测定海水中痕量钼   总被引:3,自引:1,他引:2  
用二乙基二硫代氨基甲酸钠作络合剂、乙醇作洗脱液的流动注射固相吸附萃取预富集─石墨炉原子吸收联用测定海水中痕量钼。设计了以固定体积取样法为基础的预富集装置。考察了实验参数对分析性能的影响。本法能在线分离干扰、富集被测物,当样品上柱体积为1.35mL时,富集倍数为13.3倍,检测下限为0.027μg/L,用于测定海水等标样中钼含量,精密度较好。  相似文献   

3.
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   

4.
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   

5.
谢发之  张峰君  宣寒  葛业君  王颖 《分析化学》2012,(11):1720-1724
以制备的硫代乙酰胺键合硅胶为微柱填充材料,建立酸性条件(pH 1 0)下流动注射微柱选择性预富集,0.6 mol/L硫脲溶液洗脱,火焰原子吸收测定环境样品中痕量铜的方法。流动注射在线固相萃取的最佳采样流速为8.0 mL/min;最佳洗脱流速为5.0 mL/min,时间为60 s。在优化的条件下,采样体积为10和50 mL时,线性范围分别为2.0~100.0μg/L和0.5~30.0μg/L;检出限(3σ)分别为0.36和0.07μg/L;富集倍数分别为80和170;相对标准偏差分别为(n=9)3.5%和2.0%。研究了环境样品中常见阴阳离子对测定的干扰。应用于灌木枝叶样品(GBW07602)、标准模拟水样(GBW08608)样品和环境样品中铜的分离与富集,取得满意结果。  相似文献   

6.
以1-(2-吡咯偶氮)-2-萘酚(PAN)为络合剂络合水样中的痕量铜,以磁性石墨烯(G)纳米材料为固相萃取吸附剂,建立了测定水样中痕量铜的磁性固相萃取/火焰原子吸收分光光度法。此方法将磁性石墨烯比表面积大、吸附性能好的优点与Fe3O4纳米粒子的磁性相结合,采用的磁性固相萃取避免了传统固相萃取中离心和过滤等繁琐的操作步骤。对影响G-Fe3O4萃取效率的实验因素进行了优化。在优化实验条件下,对铜离子的富集倍数为80.4倍,线性范围为0.5~100μg/L,相关系数(r)为0.998 1,检出限为0.067μg/L,相对标准偏差为2.1%~5.2%。此方法成功地应用于矿泉水、自来水、公园湖水中铜离子含量的测定,其加标回收率为94%~103%。结果表明,该磁性石墨烯纳米材料G-Fe3O4对水样品中铜的PAN络合物具有较高的富集能力。  相似文献   

7.
在纳米四氧化三铁表面包覆二氧化硅,并以十八烷基三甲氧基硅烷进行化学修饰,用作固相萃取吸附剂富集环境水样中的痕量银离子,用火焰原子吸收光谱法测定,建立了一种灵敏、快速、简便分析银离子的新方法。考察了水样pH值、吸附剂用量、螯合剂用量、振荡时间、洗脱剂、共存离子等对银离子回收率的影响。实验结果表明,对于200 mL水样,在pH 7.0、吸附剂用量为0.1 g、螯合剂5-Br-PADAP(0.5 g/L)用量为0.6 mL、吸附时间为10 min的条件下,材料对Ag+具有较好的吸附性,且用6 mL 1.0 mol/L的硝酸可完全洗脱所吸附的Ag+。在优化实验条件下,检出限(3σ)为0.15μg/L,相对标准偏差(10μg/L,n=6)为1.4%,富集因子达31。分别对河水、湖水样品中Ag+进行检测,加标回收率为85.0%~94.8%。  相似文献   

8.
建立了微波消解-固相萃取/石墨炉原子吸收法富集并测定米面中痕量铍的方法.采用微波消解制样,7-(2'-胂酸基-5'-羧酸)苯偶氮-8-羟基喹啉-5-磺酸(H2L)与Be2+螯合形成BeL络合物,C18固相萃取柱(C18-SPE)富集BeL,石墨炉原子吸收法测定C18柱洗脱液中的BeL.最佳实验条件为:采用50 μL pH 3.0的50 g/L H2L水溶液与样品中的铍螯合15 min,水相上柱,用2 mL 50%(体积分数)甲醇溶液洗脱.结果表明,方法的线性范围为0.05 ~14 μg/L,检出限为0.02 μg/L,对实际米面样品测定的加标回收率为90% ~110%,可用于食品等复杂基质中痕量铍的测定.  相似文献   

9.
合成了改性β-环糊精修饰的氧化硅复合材料(SiO_2@CD),并将其作为固相萃取材料,研究了该材料在重金属离子Cr(Ⅵ)的形态分析中的应用。结果表明,在pH 2.5的缓冲溶液中,材料能定量吸附Cr(Ⅵ),而几乎不吸附Cr(Ⅲ)。在优化条件下,材料对Cr(Ⅵ)的富集倍数为25,饱和吸附容量为16.8 mg/g。建立了SiO_2@CD固相萃取-火焰原子吸收联用测定Cr(Ⅵ)形态的新方法,方法的检出限为0.75μg/L。该方法用于检测汽水和茶水样品中Cr(Ⅵ),加标回收率为97.8%~106.3%,结果满意。  相似文献   

10.
制备了新型纳米B2O3/TiO2吸附材料,并采用扫描电镜(SEM)及红外光谱(IR)对其进行表征,优化了纳米B2O3/TiO2复合材料对试液中痕量银的吸附和解吸条件,建立了纳米B2O3/TiO2分离富集-原子吸收光谱测定痕量银的新方法。当pH 4.3时,在22℃下振荡20 min,Ag+能被该材料快速吸附,其静态饱和吸附容量为11.72 mg/g,吸附在纳米B2O3/TiO2上的Ag+可用0.1 mol/L HNO3-0.05 mol/L硫脲(1∶4)完全洗脱。该方法的检出限为2.01μg/L,线性范围为0.01~4.00 mg/L,相对标准偏差(RSD)为1.8%,加标回收率为95%~105%。方法应用于实际矿渣样品中痕量银的测定,结果满意。  相似文献   

11.
Formation of mixed adsorbed layers was tested for ternary liquid mixtures containing methanol or acetone and the binary solvent benzene+n — heptane. The specific excess adsorption isotherms from the liquid phase were measured on silica gel, silanized silica gel and aluminium oxide. The experimental adsorption data are discussed on the basis of the changes in the mixed solvent composition.  相似文献   

12.
借助分子模拟手段,研究了锶掺杂对氧化钙表面甲醇吸附行为的影响。构建了甲醇在CaO(100)和CaO(100)-Sr表面吸附的模型,计算了甲醇在氧化钙表面的吸附能和解离活化能,分析了甲醇在氧化钙表面成键的态密度以及锶掺杂前后甲醇在氧化钙表面电荷布局和差分电荷密度,评估了锶掺杂量对氧化钙表面甲醇吸附性能的影响。结果表明,锶掺杂能够显著强化氧化钙对甲醇的吸附性能,降低甲醇的解离活化能,且吸附性能随锶掺杂量的增加而增强;甲醇在氧化钙表面吸附时活化,锶掺杂后活化程度增加。  相似文献   

13.
采用表面改性法制备了负载型复合半导体NiO-MoO3/SiO2, 用程序升温还原、 X射线衍射、 拉曼光谱、 透射电镜、 比表面积测定和紫外-可见光漫反射光谱技术对固体材料的组成结构和光吸收性能进行了表征. 结果表明, NiO-MoO3/SiO2的平均粒径约为10 nm, 在载体表面存在xNiO·MoO3复合氧化物的微晶, NiO和MoO3在固体材料表面产生相互修饰作用. NiO的加入有助于提高MoO3在载体SiO2表面的分散程度, 抑制MoOx的聚合, 减小微晶尺寸, 而且可以增强固体材料的光吸收性能, 提高复合半导体对光能的利用率.  相似文献   

14.
Colloidal stabilization of nanoparticle dispersions is central to applications including coatings, mineral extraction, and dispersion of oil spills in oceanic environments, which often involves oil-mineral-aggregates (OMAs). We have an ongoing interest in the modulation of amphiphile micellization and adsorption behavior in aqueous colloidal dispersions in the presence of various additives. Here we evaluate the effect of added salts CaCl2, MgCl2, and NaCl on the micellization and adsorption behavior of the poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide) triblock copolymer Pluronic P105 (EO37PO56EO37). In 0.10 wt% silica nanoparticle (10.6 nm average diameter) dispersion, adsorbed block copolymer layer formation begins at a critical surface micelle concentration (csmc) of 0.02 wt%, well below the critical micellization concentration of Pluronic P105 in water. Dye solubilization experiments demonstrate an increase in the csmc upon addition of each salt. Each added salt reaches a level of maximum effectiveness in its ability to disfavor Pluronic P105 adsorption at the silica surface. These peak levels occur at concentrations of 0.005, 0.03, and 0.05 M for CaCl2, MgCl2, and NaCl, respectively, in the presence of 0.10 wt% silica nanoparticles. We explain these results in the context of an electrostatic displacer mechanism and discuss possible connections to OMA-dispersant formation.  相似文献   

15.
以2-异戊基环戊酮为虚拟模板,采用沉淀聚合法制备了粒径20~50 μm的分子印迹微球。 用傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)研究了分子印迹微球的表面化学特征及粒径分布,测试了印迹聚合物对玫瑰醚的吸附动力学、等温吸附性能及吸附选择性。 考察了分子印迹固相萃取玫瑰醚的应用效能。 结果表明:分子印迹聚合物(MIPs)对玫瑰醚的吸附可在25 min达到平衡,具有较快的吸附动力学,一级动力学模型更适合描述其吸附动力学行为。 Freundlich模型最适合描述MIPs对玫瑰醚的等温吸附行为,聚合物材料最大的印迹位点数目为149.3 μmol/g。 聚合物对玫瑰醚的平均吸附能为166 kJ/mol,表明主要为化学吸附。 虚拟模板印迹聚合物对玫瑰醚的选择因子相对于香叶醇和香茅醇分别为3.710和5.636,且对含玫瑰醚的混合物中的目标化合物仍具有较高的选择吸附能力(竞争吸附量为18.02 mg/g)。 在优化洗涤(1 mL乙腈+1 mL乙腈和水混合溶剂(体积比9.5:0.5)+2 mL乙腈、甲醇和水混合溶剂(体积比8:1:2)和洗脱(3 mL甲醇和醋酸混合溶剂(体积比9:1))条件下,通过分子印迹固相萃取可实现玫瑰醚的有效分离和富集,回收率为96.23%。  相似文献   

16.
Excessive bilirubin in the body of patient with liver dysfunction or metabolic obstruction may cause jaundice with irreversible brain damage, and new type of adsorbent for bilirubin is under frequent investigation. Herein, graphene oxide based core @ polyethersulfone‐based shell beads are fabricated by phase inversion method, amides and heparin‐like polymer are introduced to functionalize the core‐shell beads. The beads are successfully prepared with obvious core‐shell structure, adequate thermostability and porous shell. Clotting times and protein adsorption are investigated to inspect the hemocompatibility property of the beads. The adsorption of bilirubin is systematically investigated by evaluating the effects of contacting time, initial concentration and temperature on the adsorption, which exhibits improved bilirubin adsorption amount for the beads with amides contained cores or/and shells. It is worth believing that the amides and heparin‐like polymer co‐functionalized core‐shell beads may be utilized in the field of hemoperfusion for bilirubin adsorption.  相似文献   

17.
利用脉冲气相色谱保留体积法测定了不同还原温度的氧化铁样品对水的吸附特性并和X光衍射结果进行了关联,同时测定了含铬氧化铁对水的吸附特性。结果表明,中温还原样品有比较均匀的表面,低温和高温还原样品的表面均有一定程度的不均匀性且符合焦姆金吸附方程。铬的加入降低了氧化铁对水的吸附热,并增加吸附中心的数量  相似文献   

18.
19.
The graphene oxide (GO) is carbon based material that has high surface area, high adsorption ability, and is stable at high temperature. In this work, the GO phase was prepared and used for gas chromatographic separation. GO nanosheets were covalently bonded onto the inner surface of fused silica capillary column using 3-aminopropyldiethoxymethyl silane as cross-linking agent. The prepared GO nanosheets were characterized with TEM and the GO coating was characterized with SEM. As a high performance stationary phase, GO provides not only a high surface area to increase the phase ratio but also rich functional groups for the formation of hydrophobicity, hydrogen bonding, and π–π electrostatic stacking interactions with volatile aromatic or unsaturated organic compounds. Thus, mixtures of a wide range of organic compounds including alcohols and aromatic compounds were well separated and an efficiency of 1990 theoretical plates per meter for anisole was obtained on GO coated 1.0 m × 200 μm i.d. fused silica capillary column. The experimental results demonstrate that GO coated capillary columns are promising for gas chromatographic separation.  相似文献   

20.
It has been shown that the adsorption of ions at oxide/electrolyte interface should be treated in terms of adsorption on a heterogeneous solid surface. This is because the adsorption runs via formation of complexes with surface oxygen atoms. Because of the small degree of oxide surface organization, different surface oxygens may have different status with respect to electrostatic interactions and the strength of the chemical bonds formed between the surface oxygens and the adsorbed protons or metal ions. We have shown that the equations describing the equilibria of formation of surface complexes can be transformed to Langmuir-like equations for multicomponent adsorption. One can apply, therefore, for these systems theoretical methods used to describe mixed-gas adsorption on heterogeneous solid surfaces.  相似文献   

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