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1.
本文采用单柱离子色谱系统测定了C2O^2-4,以1.3mmol/L葡萄糖酸钠/1.3mmol/L硼砂为淋洗液测定C2O^2-4,8常见阴离子Cl^-,NO^-3,HPO^2-4,SO^2-4不干扰测定,C2O^2-4的检出限为0.57mg/L,相对标准偏差为1.07%,工作曲线的线性范围为0.57-500mg/L,应用本方法测定了加C2O^2-4的自来水样,C2O^2-4的回收率为99.52%。  相似文献   

2.
反相离子对色谱法测定硫代硫酸根和碘离子的研究   总被引:4,自引:0,他引:4  
张晓彤  云自厚 《色谱》1997,15(1):57-59
首次利用S2O2-3和I-与Hg-EDTA二元络合物通过柱前衍生形成EDTA-Hg-S2O3和EDTA-Hg-I两种三元络合物的方法,实现了对S2O2-3和I-的间接反相离子对色谱分离和紫外检测。在ZorbaxODS柱上,用甲醇∶水=23∶77作流动相,内含对离子TBA+3.0mmol/L,EDTA1.0mmol/L,NaNO32.0mmol/L和缓冲剂KH2PO4-Na2HPO4(pH7.0),紫外254nm检测。S2O2-3和I-的最小检出限分别为61.1ng和37.6ng。方法简便,选择性好。  相似文献   

3.
离子色谱法测定固体颗粒中可溶性阴离子   总被引:4,自引:0,他引:4  
选用HPIC-As-4A离子色谱分离柱及AFS-2纤维抑制双柱系统,使用Na2CO3-NaHCO3双组份为淋洗液,采用电导检测器,利用峰高、峰面积法定量分析。F-(0.02~0.7)、Cl-(0.3~1.0)、NO-3(0.05~0.2)、SO2-4(0.6~2.0mg/L)范围内,其校正曲线有很好的线性关系,相关系数均在0.9984~0.9998。应用此方法分析了大气总悬浮颗粒物和粉煤灰陶粒试样中可溶性阴离子,获得了可靠的分析结果。NO-3、SO2-4回收率分别为93.90%、101.9%。  相似文献   

4.
离子色谱法测定α—氧化铝中微量硫酸根的研究   总被引:1,自引:0,他引:1  
吴介达  吕伟 《分析化学》1994,22(2):172-174
本建立了用氢氧化钠溶样,离子色谱测定α-Al2O3中微量硫酸根的方法。在DionexAS4A分离柱上,用1.8×10^-^3mol/LAa2CO3作流动相进行洗脱,电导检测器检测,分析方法简便,快速,硫酸根的检测限为1.0×10^-^2μg/ml,相对标准偏差为2.67%,回收率为97.5%,扩展了离子色谱法测定实际样品的范围。  相似文献   

5.
本文用硝酸盐水溶液等浸渍法制备了一系列Cr-Ag/γ-Al2O3双金属及单金属的 物催化剂,测定了CO氧化转化率。用BET,XRD,TPR,TPD-MS技术研究了助剂Ag对Cr/γ-Al2O3催化剂CO氧化反应的作用。  相似文献   

6.
采用浸渍-还原法制备的Ni/MgO/Al2O3在CH4与CO2重整制合成气反应中显示出良好的催化性能和一定的抗积炭能力;在1023K下流动反应气氛中连续运转100h,未见活性下降,CH4及C弦均为90%左右,CO收率高于90%,实验还发现,CH4转化率随着原料气中CO2浓度的增加而升高,当V(CO2)/V(CH4)=2时CH4转化率可达100%,通过BET比表面积测定及XRD,TEM等分析手段,比  相似文献   

7.
利用色谱微反联用技术对负载钯催化剂上甲醇、甲醛的深度氧化进行了较全面的研究。结果表明:Pd/Al2O3催化剂对甲醇氧化具有很高的转化效率和一定的深度氧化活性。以(NH4)2PdCl4为浸渍液、还原气氛下焙烧所得的0.1%Pd/γAl2O3性能最好,当进气O2/CH3OH比为6、并无CO存在时,其T50、T95分别为90℃、200℃,生成甲醛的最高转化率为17%左右。另外,反应原料气组分如O2、CO等也将严重影响Pd/γAl2O3对甲醇氧化的活性及选择性。  相似文献   

8.
用浸渍法分别在30T的恒稳磁场中和无磁场情况下,制备了NiO/γ-Al2O3和NiO/La2O3/γ-Al2O3两类催化剂共4个样品,对它们的结构和性能进行测定和比较,发现磁场作用能加强金属-载体间的相互作用,使原峰温升高,引起Ni^2+向载体深层扩散,促进尖晶石NiAl2O4和钙钛石LaNiO3新相形成,同时可降低CO歧化活性,使催化剂上积炭量减少。  相似文献   

9.
笼形聚偕胺肟树脂的研究HX/ACAO树脂吸附贵金属   总被引:3,自引:0,他引:3  
氢卤酸、硝酸、硫酸、磷酸和硼酸处理的笼形聚偕胺肟树脂(HX/A-CAO)对Ag+和等贵金属离子的吸附能力按如下顺序:PdCl42-:H3BO3/ACAO>BCAO>H3PO4/ACAO>HI/ACAO>H2SO4/ACAO>HCl/ACAO>HNO3/ACAO>HF/ACAO.IrCl62-:BCAO>H3PO4/ACAO>H3BO3/ACAO>HCl/ACAO>HF/ACAO>HI/ACAO>H2SO4/ACAO≥HNO3/ACAO.PtCl62:BCAO>H3BO3/ACAO>H2SO4/ACAO>HNO3/ACAO>HCl/ACAO>HF/ACAO>H3PO4/ACAO>HI/ACAO.Ag+:BCAO>H3BO3/ACAO>HI/ACAO>H2SO4/ACAO>HF/ACAO>HCl/ACAO>H3PO4/ACAO>HNO3/ACAO.AuCl4-:BCAO>H3BO3>H3PO4/ACAO>HF/ACAO>HCl/A-CAO>H2SO4/ACAO>HI/ACAO>HNO3/A-CAO.研究了H3BO3/ACAO树脂对Ag+和离子的吸附动力学,讨论了吸附机理.  相似文献   

10.
Ag/La0.6Sr0.4MnO3基催化剂上CH3OH和CO的完全氧化   总被引:1,自引:1,他引:0  
合成了Ag/La0.6Sr0.4MnO3、Ag/La0.6Sr0.4MnO3/γ-AI2O3两毓催化剂,发现钙钛矿型La0.6Sr0.4MnO3对低浓度CH3OH或CO的完全氧化显示出相当高的催化活性,适量Ag对钙钛矿型La0.6S50.4MnO3基质的修使其对CH3OH或CO完全氧化催化活性获明显提高;在6%Ag/20%La0.6Sr0.4MnO3/γ-AI2O3催化剂 ,CH3OH完全氧化的T  相似文献   

11.
建立利用气相色谱热导检测器分析气体激光器用氦中氧气、氮气、一氧化碳、二氧化碳及氙气混合气体标准物质的方法。试验比较了不同极性、不同类型的色谱柱,对柱箱温度、载气流量进行了优化,最终确定以HP–PLOT/分子筛色谱柱分离氧气、氮气、一氧化碳、氙气,柱箱温度保持40℃,以HP–PLOT Q柱分离二氧化碳,柱箱温度保持60℃,载气流量均为2 m L/min。在混合气体标准物质量值范围内,该分析方法测定结果的相对标准偏差不大于1%(n=6),对重量法配制得标准气体进行分析比对,测量误差不大于1%。  相似文献   

12.
建立了运用气相色谱对大气中一氧化碳、二氧化碳以及3种低级烃类甲烷、乙烯和乙炔进行同时分析的方法。气相色谱分析系统由自动进样器、1个十通阀协同1个六通阀,以及1个十通阀协同1个四通阀组成,可以实现进样、分离和反吹功能。HP-PLOT Q开口毛细管柱用于5种气体的分离,柱后连接热导检测器;分离完成后,一氧化碳和二氧化碳通过甲烷转化炉中的镍催化作用转化为甲烷,用氢火焰离子化检测器进行检测。5种目标分析物在9 min内完全分离。一氧化碳、甲烷、二氧化碳、乙烯以及乙炔的线性范围分别为3.3~4 990.0、3.3~5 010.0、6.6~4 990.0、4.2~5 080.0、3.9~5 030.0μmol/mol,检出限为1.0~2.0μmol/mol,相关系数不低于0.997,相对标准偏差(RSD,n=5)不大于3.5%。该方法简单、准确,可操作性强。  相似文献   

13.
顶空气相色谱-质谱法测定婴幼儿食品中的呋喃   总被引:2,自引:0,他引:2  
刘平  薛颖  金庆中  徐筠  张正  吴国华 《色谱》2008,26(1):35-38
通过顶空装置将样品中的呋喃提取出来,以D4-呋喃作为内标物,HP-PLOT Q石英毛细管柱作为分析柱,采用气相色谱分离,质谱定性定量,建立了婴幼儿食品中呋喃的顶空气相色谱-质谱联用分析方法。方法的低浓度工作曲线的线性范围为10~70 ng,高浓度工作曲线的线性范围为50.0~400.0 ng,两条曲线的相关系数均为0.997。方法的定性检出限(S/N≥3)为3.8 ng/g,定量检出限(S/N≥10)为10.0 ng/g。不同基底样品中高低添加浓度的加标回收率为90.0%~98.4%,相对标准偏差均小于10%。  相似文献   

14.
This paper illustrates a method for determining trace amounts of CO, CH4 and CO2 with the detection limit of 0.15, 0.15 and 0.20 microg/l, respectively, in refinery hydrogen gases or in air. A simple modification of a gas chromatograph equipped with a flame-ionization detector is presented. A Porapak Q column, additionally connected with a short molecular sieve 5A packed column and a catalytic hydrogenation reactor on the Ni catalyst have been applied. The principle of the analytical method proposed is the separation of CO from O2 before the introduction of CO to the methanizer. The analytical procedure and examples of the results obtained have been presented. The modification applied makes it possible to use the GC instrument for other determinations, requiring utilization of the Porapak Q column and the flame-ionization detector. In such cases, the short molecular sieve 5A column and the methanizer can be by-passed.  相似文献   

15.
We previously developed an analyzer able to detect hydrogen concentrations of less than 50 cm3/1000 m3. The analyzer uses a carrier gas purifier and a low temperature separation column to remove impurities preventing measurement of low concentrations from the carrier and sample gases. It uses a trace reduction detector with a mercuric oxide bed to detect the concentration of hydrogen based on the reduction reaction of mercuric oxide with hydrogen. We have now evaluated the performance of the analyzer by carrying out a series of tests that measured the spectrum peak and the retention time. We used three sample gases with hydrogen concentrations of 5, 20, and 50 cm3/1000 m3 in nitrogen dilution gas. The measured peak was stable (it was within a relative standard deviation of less than 10%), and there was a linear relationship between the peak and hydrogen concentration. However, the retention time gradually shortened as the measurements were repeated. The shortening was reduced by warming the low temperature separation column used in the analyzer; it was not observed when we used a hydrogen sample gas diluted by helium instead of nitrogen. Using nitrogen as a dilution gas apparently shortens the retention time. We thus added an MS-5A separation column and a thermal conductivity detector. The nitrogen and hydrogen in the sample/carrier gas are separated, and the nitrogen is efficiently removed by switching the pass line to a release line after the hydrogen has been sent to the low temperature separation column. An analyzer using this "after-cut method" was able to stably measure infinitesimal hydrogen concentrations and was not affected by nitrogen in the sample gas.  相似文献   

16.
Summary A simple dual-column system with a thermal conductivity detector is described, that can be used for the quantitative analysis of anesthetic gas mixtures of halothane (2-bromo-2-chloro-1,1,1-trifluoroethane), nitrous oxide and oxygen. The separation was performed on a Carbopack (SP 1000) column and a Porapak Q column arranged in series across the detector.  相似文献   

17.
FID/TCD并联气相色谱法测定天然气水合物的气体组成   总被引:4,自引:0,他引:4  
建立了一种氢火焰离子化检测器(FID)与热导检测器(TCD)并联检测的气相色谱分析技术。该方法一次进样,即可实现天然气水合物中C1~C6、CO2、H2S、O2+N2 16种气体成分的同时测定。实验优化了色谱柱、升温程序、柱流速、进样口温度、检测器温度、TCD参考气和尾吹气流速等仪器分析参数。在优化条件下,16种气体分子在实验浓度范围内线性关系良好,r2为0.999 03~0.999 98,方法检出限为0.000 3~0.046 mol/mol,相对标准偏差(n=6)为1.6%~5.0%。对祁连山冻土区、南海神狐海域、人工合成水合物样品的分析表明,该方法简便实用、灵敏可靠,可满足天然气水合物气体组成的分析要求。  相似文献   

18.
王虎  杨群慧  季福武  周怀阳  薛翔 《色谱》2011,29(1):70-74
利用微流路控制技术中心切割装置(Deans Switch)、两根色谱柱(PoraPLOT Q和Molsieve 5A)和3个检测器(脉冲氦离子化检测器、火焰光度检测器、热导检测器),建立了一种二维气相色谱分析系统,实现了海洋中多种示踪气体组分(氢气、甲烷、二氧化碳、硫化氢)的同时分析和精确测定。氢气、甲烷、二氧化碳、硫化氢的含量分别在2~1030、0.6~501、120~10500和0.2~49.1 μmol/mol范围内的校正曲线线性关系良好,检出限分别为0.51、0.17、82和0.08 μmol/mol,10次重复测定含量的相对标准偏差均小于10%。通过对南海天然气水合物区沉积物间隙水顶空气的测定,表明该方法方便、灵敏、可靠,易于实现海上现场测定;与以往采用多种分析方法分别测定示踪气体相比,大大节省了样品量。该方法适用于海洋天然气水合物、海底热液等资源的调查和海洋溶解态气体的研究等。  相似文献   

19.
Summary A fast and sensitive method has been developed for isothermal routine analysis of helium, carbon monoxide, carbon dioxide, methane and water. A single thermal conductivity detector, two Porapak Q columns and hydrogen as carrier gas were used. He, CO, CO2 and CH4 were separated on the two columns in series while water is eluted from the first column by a suitable commutation of the two columns through a diaphragm valve. All the gases were analyzed at 80°C. A complete analysis took 9 minutes. The precision of the method was found to be ±1 to 2% for quantitative analysis of any of the components. The method is suitable for both manual and automatic measurements.  相似文献   

20.
An ultraviolet-visible diode-array spectrophotometer is used as a detector for gas chromatography. This detector can provide a full u.v.-visible spectrum of each compound as it elutes from the column, thus enhancing discrimination between incompletely separated components. A discrimination of ca. 1:5000 could be achieved for a mixture of toluene and benzene. The detection limit is comparable to that of the thermal conductivity detector, i.e., about 0.5 μg for the various components. The detector is particularly useful when gases other than helium are used because the sensitivity does not depend on the gas used.  相似文献   

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