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1.
催化裂化汽油中类型硫含量分布   总被引:48,自引:3,他引:45  
利用催化裂化汽油中各类硫化物的系统分析方法,对催化裂化(FCC)汽油和重油催化裂化(RFCC)汽油中各类型硫进行了分析测定,碱洗后FCC汽油和RFCC汽油中类型硫的布规律为:硫醇硫和二硫化物硫的含量较少,硫醚硫含量中等,而噻吩类硫的含量最多,占总硫含量的60%以上.  相似文献   

2.
杨永坛  王征  宗保宁  杨海鹰 《色谱》2004,22(3):216-219
采用气相色谱-硫化学发光检测器(GC-SCD),建立了催化裂化汽油(FCC汽油)中各种硫化物类型分布的分析方法。考察了色谱条件对催化裂化汽油中各种硫化物分离的影响,定性了某催化裂化汽油中的58个硫化物。采用该方法,硫化物中的硫在其质量浓度为0.5~800.0 mg/L时,其峰面积与质量浓度呈较好的线性关系,相关系数达0.999,其响应与硫化物的类型无关。FCC汽油中几种主要硫化物(噻吩、正丁硫醇、2-甲基噻吩、3-甲基噻吩、2,4-二甲基噻吩)的浓度测定值的相对标准偏差(RSD)均小于5.0%。当信噪  相似文献   

3.
杨永坛  王征 《色谱》2007,25(3):384-388
建立了焦化汽油中硫化物类型分布的气相色谱-硫化学发光检测分析方法。考察了色谱条件对焦化汽油中各种硫化物分离的影响,定性了某焦化汽油中的74个硫化物。以硫化氢、乙硫醇、正丙硫醇、噻吩、2-甲基噻吩、2-乙基噻吩、2-丙基噻吩、碳四噻吩(tR=40.28 min)、苯并噻吩、甲基苯并噻吩(tR=58.13 min)的保留时间为尺度,计算了焦化汽油中各种硫化物的保留指数,并可推广到其他类型的汽油馏分中各种硫化物保留指数的计算,为仅能提供硫化物信息的仪器提供了可靠的定性依据。焦化汽油中几种主要硫化物(异丙硫醇、正丙硫醇、正丁硫醇、2-甲基噻吩、3-甲基噻吩、2,4-二甲基噻吩、2,3,4-三甲基噻吩)含量测定值的相对标准偏差均小于5%。当信噪比为3时,测得硫的检测限为0.05 mg/L。研究发现:同其他类型的汽油相比,焦化汽油的硫含量较高且所含硫醇比例明显偏高,2-甲基噻吩和3-甲基噻吩的含量差别较大。该法可为加氢脱硫催化剂和工艺的研究提供数据。  相似文献   

4.
建立了气相色谱-硫化学发光检测器联用法(GC-SCD)同时测定车用汽油中甲硫醇,乙硫醇,异丙硫醇,叔丁基硫醇,丙硫醇,2-丁硫醇,异丁硫醇,丁硫醇的分析方法。选择甲基硅氧烷毛细管色谱柱作为分离柱,考察了色谱条件对车用汽油中硫醇类硫化物分离的影响,确定了合适的SCD检测条件,对硫醇类硫化物进行了准确定性分析,外标法定量。车用汽油中8种硫醇类硫化物的添加回收率在76.4%~106.4%之间,相对标准偏差(RSD)在0.56%~5.5%之间,待测物质量浓度在0.50~150.0 mg/L范围内呈现良好的线性关系,相关系数在0.9762~0.9999之间,样品中各待测物检出限在0.05~0.24 mg/kg之间,能够满足车用汽油中微量硫醇类硫化物的定量检测需求。  相似文献   

5.
汽油馏分的硫化物形态分布研究   总被引:7,自引:0,他引:7  
采用气相色谱和硫化学发光检测(GC-SCD)技术,经过对色谱条件的优化,建立了汽油馏分中硫化物形态分布的测定方法。用标准物质的保留时间辅以化学法脱除硫醇、硫醚的方法对107个硫化物进行了定性;标准硫化物保留时间重复测定结果的相对标准偏差(RSD)≤0.25%。用内标法对主要的硫化物和总硫含量进行了定量,方法的加标回收率为96%~115%;同一样品重复测定5次,含硫大于7 mg/kg的硫化物组分重复测定结果的RSD≤8.9%。所建立的方法可用于不同装置的汽油馏分的硫化物形态分布规律的研究。  相似文献   

6.
选择性反应结合气相色谱进行汽油硫化物分析   总被引:1,自引:0,他引:1  
通过3个分别针对硫醇、硫醚和含α-H噻吩的官能团选择性反应,结合连有脉冲火焰光度检测器的毛细管气相色谱对汽油中各类硫化物进行区分,实现了汽油中不同类型有机硫化物的快速分析.经过化学反应处理的汽油样品谱图逐步简化,方便了对不同类型硫化物的归属,也在一定程度上解决了叠合峰的辨别和归属问题.对汽油样品的实际分析研究表明,其中的有机硫化物主要以噻吩及其衍生物的形式存在,也含有一部分硫醚,硫醇最少.  相似文献   

7.
燃油燃料含硫化合物形态分布剖析技术研究进展   总被引:1,自引:0,他引:1  
介绍了目前用于燃油、燃料(如汽油、柴油、煤油、喷气燃料)的硫化物形态分布剖析的多种分析技术,包括电化学方法和气相色谱与多种选择性检测器联用的方法(如GC - FPD、GC - AED、GC - SCD、GC - MS等),并对各种分析技术的研究现状进行了概述.  相似文献   

8.
利用高压釜反应装置在高温高压下开展了汽油-硫酸镁化学还原反应含水和无水体系的模拟实验,通过气相色谱仪、微库仑仪、毛细管气相色谱/脉冲火焰光度检测器、红外光谱仪及X射线衍射仪对气、油、固三相产物分别进行了分析并对动力学进行了解析,表明主要生成氧化镁、硫、焦炭、硫化氢、二氧化碳以及硫醇、硫醚和噻吩类等有机硫化物;随反应温度升高,反应体系中无机硫转化为有机硫的趋势增强,并主要生成热稳定性高的噻吩硫。 动力学解析表明,含水和无水条件硫酸镁转化反应的活化能分别为68.9和78.5 kJ/mol,证明水存在有利于无机硫向有机硫转化。  相似文献   

9.
采用液相离子交换法制备了Cu(I)Y、NiY、CeY分子筛,利用XRD、ICP/MS、N2吸附脱附等技术对其物化性质进行了表征,使用固定床技术和色谱-硫化学发光检测(SCD)偶联技术系统考查了改性Y分子筛对FCC汽油的选择性吸附脱硫性能,着重探讨了FCC汽油选择性吸附脱硫过程中硫化物的脱除规律。结果表明,不同金属阳离子改性的Y分子筛对FCC汽油中不同硫化物选择性有所不同,对CeY分子筛:2-甲基-5-乙基噻吩<噻吩3硫醇< C2噻吩<2或3-甲基噻吩<苯并噻吩<3,4-二甲基噻吩≈2,3,4-三甲基噻吩<四氢噻吩,而NiY与Cu(I)Y选择性相同:C3硫醇<2-甲基-5-乙基噻吩2噻吩<2或3-甲基噻吩<噻吩<苯并噻吩<3,4-二甲基噻吩≈2,3,4-三甲基噻吩<四氢噻吩,改性Y分子筛对噻吩及小分子烷基取代噻吩类硫化物的选择性较差。  相似文献   

10.
气相色谱法测定催化柴油中硫化物类型分布及数据对比   总被引:7,自引:0,他引:7  
杨永坛  王征  杨海鹰  陆婉珍 《分析化学》2005,33(11):1517-1521
采用气相色谱-氢火焰离子化检测器-硫化学发光检测器(GC—FID—SCD)联用技术,建立了催化柴油中各种硫化物类型分布的分析方法。考察了色谱条件对催化柴油中各种硫化物分离的影响,定性了某催化柴油中的120多个硫化物,该方法还可以同时提供催化柴油中正构烷烃含量的分布信息。硫化物中的硫在1.5—700mg/L时其峰面积与质量浓度呈较好的线性关系,相关系数达0.9999,响应与硫化物的类型无关。催化柴油中苯并噻吩、4-甲基苯并噻吩、二苯并噻吩、4-甲基二苯并噻吩和4,6-二甲基二苯并噻吩等主要硫化物浓度测定的相对标准偏差(RSD)均小于5.0%。当信噪比(S/N)为3时,测得苯并噻吩硫的检出限为0.1mg/L。将该方法用于不同来源柴油中各种硫化物类型分布的研究,并与气相色谱一原子发射光谱检测器(GC—AED)测硫的数据进行了对比,两种检测器的定量结果大多数具有较好的相关性,相关系数大于0.95。  相似文献   

11.
The identification and quantification of sulfur-containing compounds in gasoline has become an area of interest because of impending legislation regulating total sulfur levels in these fuels. To study the effects of catalyst type and catalytic conditions on gasoline sulfur distribution, a method has been developed employing both the compound-independent and element-specific response of the atomic emission detector (AED). Calibration and quantification can be accomplished even where standards are not available, owing to the nature of the AED response. Compounds were separated on a thick film polydimethylsiloxane column. An external calibration curve was applied to the area responses of individual sulfur components in the sulfur chromatogram, and the concentrations of each were calculated. Summation of these sulfur concentrations over the gasoline range yields the total sulfur content of the gasoline. The method is applicable to the determination of these compounds in raw crude oils, finished gasolines, fluid cracking catalyst (FCC) unit gasolines, and fluid catalytic cracking “model” compound studies. A prefractionating column was employed to remove heavy (>C13) materials; prefractionation is not, however, necessary for distilled or commercial gasoline samples. Detection limits, linearity, detector stability, and accuracy are discussed.  相似文献   

12.
We present the first study on the analytical methods of phenyltin compounds (PTs) in polychlorinated biphenyl (PCB)-based transformer oil samples. Tetraphenyltin (TePhT) has been used as stabilizer for some kinds of PCBs-based transformer oil formulations. Monophenyltin (MPhT), diphenyltin (DPhT) and triphenyltin (TrPhT) could have been formed from TePhT during long-term use. TePhT was directly measured by gas chromatograph (GC) connected with three types of detectors, a mass spectrometer (MS), a flame photometric detector (FPD) and an atomic emission detector (AED) after dilution with hexane. MPhT, DPhT and TrPhT were propylated with Grignard reagent before measurement. The MS was the most sensitive of the detectors, with detection limits of phenyltin compounds of 30 ng/ml (MPhT), 9.8 ng/ml (DPhT), 5.5 ng/ml (TrPhT) and 0.60 ng/ml (TePhT), respectively. From the viewpoint of selectivity, MS was slightly worse than other detectors, but interference from PCBs matrices was not significant under ordinary analytical conditions. Two used transformer oil samples were analyzed using the analytical methods developed in this study. TePhT and TrPhT were found in both samples.  相似文献   

13.
建立了气相色谱法测定合成气中硫化合物的方法。采用能自动进样的六通阀和对硫磷有选择性的FPD检测器,色谱峰面积与硫化合物含量存在很好的双对数线性关系。对H2S,COS及CS2三种气体的线性相关系数依次为0.9995,0.9997及0.9997。  相似文献   

14.
The molecular emission of heteroelements such as phosphorus and sulfur is the basis of the selective response of the flame photometric detector. The behavior of the FPD towards phosphorus compounds has been studied and design improvements sought with regard to burner configuration and temperature distribution. The possibility of differentiating between compounds containing phosphorus atoms and those containing both phosphorus and sulfur atoms has also been examined. Detection limits and response characteristics have been reported for organophosphorus pesticide residues in samples of natural origin  相似文献   

15.
气相色谱-原子发射光谱联用技术测定柴油中硫化物   总被引:13,自引:8,他引:13  
采用气相色谱-原子发射光谱(GC-AED)联用技术对柴油中硫化物进行了定性定量研究,考察了柴油加氢脱硫处理前后硫化物的变化及不同柴油原料硫化物的分布情况。结果表明,1#柴油可定性出33类硫化物,经加氢脱硫处理后,1-1#和1-2#样品硫含量可由1497mg/L分别降到165.1mg/L和90.4mg/L,平均脱除率为89.0%和94.0%。其中噻吩或苯并噻吩的脱除率为100%;C1二苯并噻吩的肿除率为90.0%和96.2%;C2二苯并噻吩的脱除率为80.6%和91.7%;C3二苯并噻吩的脱除率为72.6%和84.4%;C4二苯并噻吩的脱除率为79.0%和90.3%;C5或C6二苯并噻吩的脱除率为58.4%和68.4%;未知硫化物脱除率95.7%和97.9%。噻吩类脱除率视取代基的大小、个数和取代位置的不同脱除率不同;不同原料 总硫和各种硫化物含量差别很大,应根据其硫化物的分布特点,有针对性地研制开发加氢脱硫的催化剂及选择合适的加工工艺。  相似文献   

16.
气相色谱/原子发射检测法测定毒死蜱中的杂质   总被引:4,自引:0,他引:4  
马立新  陈吉平  张青  梁鑫淼 《色谱》2001,19(5):407-409
 利用气相色谱 /原子发射检测 (GC/AED)法 ,并通过元素内标测定 ,对农药毒死蜱产品分别进行碳 (4 96nm和193nm)、氯 (4 79nm)和硫 (181nm)等通道的选择性定量检测。根据检测结果及由气相色谱 /质谱 (GC/MS)测得的分子结构式 ,分别计算杂质的质量分数。由此可知 ,各组分从不同通道得到的定量结果比较接近 ,对杂质的最大相对误差不超过 5 8%。在无纯物质作标样的条件下 ,该方法比气相色谱 /火焰离子化检测 (GC/FID)面积归一化法更为可靠 ,可作为对农药及其他复杂有机混合物准确、方便的定量方法。  相似文献   

17.
A method has been developed to determine the boiling point distribution of sulfur compounds in light cycle oils (LCO'S). The method chosen for this analysis was GC with a flame photometric detector (FPD) and pyrolyzer. Tests were carried out to evaluate the recovery efficiency, repeatability, and accuracy of the method. Repeatabilities within 2% were obtained. The recovery of benzothiophenes and dibenzothiophenes was close to 100%; this was important because these are the major sulfur components in LCO's. No hydrocarbon or solvent interferences were observed with the use of the pyrolyzer, even for a 95% solvent level. Comparison with results from other techniques showed that the method accurately determined the levels of sulfur compounds in the LCO boiling point range.  相似文献   

18.
A recently reported micro-flame photometric detector (microFPD) has been examined in greater detail for its sulfur response characteristics. While supporting an "upside down" flame on a stainless steel capillary burner (delivering oxygen) in a counter flowing stream of premixed hydrogen and oxygen, the extremely small flame of the muFPD (30 nL) was observed to produce linear sulfur emission as HSO(*). In this mode, linear sulfur response was obtained over four orders of magnitude with a minimum detectable flow of 2 x 10(-10) g S/s. Additionally, a broad series of sulfur compounds ranging in chemical structure were examined in the microFPD in order to determine the extent of equimolarity and reproducibility of response toward this element. Results of exploring both the linear (HSO(*)) and quadratic (S(2)(*)) modes indicate that the %RSD and equimolarity of sulfur response are comparable between that of the microFPD and a conventional flame photometric detector (FPD).  相似文献   

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