首页> 外文OA文献 >Penggunaan Internal Standar Nitrobenzena untuk Penentuan Kuantitatif Btex dalam Kondensat Gas Alam dengan Kromatografi Gas
【2h】

Penggunaan Internal Standar Nitrobenzena untuk Penentuan Kuantitatif Btex dalam Kondensat Gas Alam dengan Kromatografi Gas

机译:内部使用硝基苯标准品通过气相色谱法定量测定天然气凝析物中的Btex

摘要

This research has been carried out the selection of three types of compounds to be used as an Internal Standard (ISTD) on the quantitative determination of BTEX in the natural gas condensate, they are pyridine and nitrobenzene marpholine that have the similar chemical compound with the analyte (aromatic hydrocarbons). The ISTD selection is done by mixing ISTD with natural gas condensate samples into the solvent carbon disulfide (CS 2 ), and then 1μl injected into the Gas Chromatography (GC) to know the column elution or separation of the mixture. From the results of research that have been conducted on three types compounds, it was found that pyridine can not be used as ISTD because it can not be eluted, as well marpholine CS 2 reacts rapidly with solvent to form a white solid before it is injected. While nitrobenzene mixtures eluted at a retention time of + 76.953 min after o-xylene. Next step is preparation ISTD nitrobenzene, BTEX standard solution and sample into the solvent CS2, based on the dilution of wight base usinganalytical balance, to obtain a concentration of ISTD in the same amount that is 4 g/g on BTEX standard solution and the sample. BTEX standard solution prepared with 6 variations concentrations of K 1 to K 6 that reflect the concentration of BTEX in the sample. From BTEX standard solution K1 to K6, all of them are injected into the gas chromatograph, then it is made the multi-level calibration curve by comparing the area ratios of analyte/ISTD vs concentration ratio of analyte/ISTD. The Quantitative determination of BTEX in the natural gas condensate is done by interpolating the regression equation obtained from the multi level calibration curve linearity for each aromatic BTEX compounds. The correlation coefficient (r) is obtained varies the 0.9993 to 0.9997. Other parameters such as precision and accuracy were also evaluated. So from this study is obtained BTEX concentrations in natural gas condensate with the ISTD nitrobenzene. They are Benzene is 3.0605 % wt; Toluene is 7.0053 % wt; Ethylbenzene is 0.8568 % wt, and ortho-meta-para-Xylenes are 2.8873 % wt; 0.8704 % wt ; 0.8026% wt.
机译:本研究选择了三种类型的化合物作为内标(ISTD)定量测定天然气冷凝液中的BTEX,它们是吡啶和硝基苯三环素,它们与分析物具有相似的化学成分(芳烃)。通过将ISTD与天然气冷凝液样品混合到溶剂二硫化碳(CS 2)中,然后将1μl注入气相色谱仪(GC)中以了解色谱柱的洗脱或混合物的分离来进行ISTD选择。根据对三种类型化合物的研究结果,发现吡啶不能被用作ISTD,因为它不能被洗脱,而且在注入前,三聚磷酸CS 2与溶剂迅速反应形成白色固体。 。硝基苯混合物在邻二甲苯洗脱后的保留时间为+ 76.953分钟。下一步是使用分析天平基于重碱的稀释,将ISTD硝基苯,BTEX标准溶液和样品制备到溶剂CS2中,以在BTEX标准溶液和BTEX标准溶液上以4 ug / g的相同量获得ISTD浓度。样品。用6种变化的K 1至K 6浓度制备的BTEX标准溶液,这些浓度反映了样品中BTEX的浓度。从BTEX标准溶液K1到K6,将它们全部注入气相色谱仪,然后通过比较分析物/ ISTD的面积比与分析物/ ISTD的浓度比制成多级校准曲线。天然气冷凝物中BTEX的定量测定是通过对每种芳族BTEX化合物的多级校准曲线线性得出的回归方程进行插值来完成的。获得的相关系数(r)在0.9993到0.9997之间变化。还评估了其他参数,例如精度和准确性。因此,从这项研究中可以得出天然气冷凝液与ISTD硝基苯中BTEX的浓度。它们是苯的3.0605重量%;甲苯为7.0053重量%;乙苯为0.8568重量%,邻-间-对-二甲苯为2.8873重量%。 0.8704%重量; 0.8026%重量

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号