GSO ASTM D5580:2023
用气相色谱法测定成品汽油中苯、甲苯、乙苯、对二甲苯、邻二甲苯、C9 和重芳烃以及总芳烃的标准试验方法

Standard Test Method For Determination Of Benzene, Toluene, Ethylbenzene, P/M-Xylene, O-Xylene, C9 And Heavier Aromatics, And Total Aromatics In Finished Gasoline By Gas Chromatography


 

 

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标准号
GSO ASTM D5580:2023
发布
2023年
发布单位
GSO
当前最新
GSO ASTM D5580:2023
 
 
适用范围
1.1 This test method covers the determination of benzene, toluene, ethylbenzene, the xylenes, C9 and heavier aromatics, and total aromatics in finished motor gasoline by gas chromatography. 1.2 The aromatic hydrocarbons are separated without interferences from other hydrocarbons in finished gasoline. Nonaromatic hydrocarbons having a boiling point greater than n-dodecane may cause interferences with the determination of the C9 and heavier aromatics. For the C8 aromatics, p-xylene and m-xylene co-elute while ethylbenzene and o-xylene are separated. The C9 and heavier aromatics are determined as a single group. 1.3 This test method covers the following concentration ranges, in liquid volume %, for the preceding aromatics: benzene, 0.1 % to 5 %; toluene, 1 % to 15 %; individual C8 aromatics, 0.5 % to 10 %; total C9 and heavier aromatics, 5 % to 30 %, and total aromatics, 10 % to 80 %. 1.4 Results are reported to the nearest 0.01 % by either mass or by liquid volume. 1.5 This test method includes a relative bias section for U.S. EPA spark-ignition engine fuel regulations reporting for benzene based on Practice D6708 accuracy assessment between Test Method D5580 and Test Method D3606 as a possible Test Method D5580 alternative to Test Method D3606. The Practice D6708 derived correlation equation is only applicable for fuels in the benzene concentration range from 0.0 % to 2.31 % by volume as measured by Test Method D5580. The applicable Test Method D3606 range for benzene is from 0.0 % to 2.38 % by volume as reported by Test Method D3606. 1.6 This test method includes a relative bias section for U.S. EPA spark-ignition engine fuel regulations for total aromatics reporting based on Practice D6708 accuracy assessment between Test Method D5580 and Test Method D5769 as a possible Test Method D5580 alternative to Test Method D5769. The Practice D6708 derived correlation equation(s) is only applicable for fuels in the total aromatic concentration range from 5.4 % to 31.6 % by volume as measured by Test Method D5580 and a distillation temperature T95, at which 95 % of the sample has evaporated, as measured by Test Method D86 is in the range of 149.1 °C to 196.6 °C (300.4 °F to 385.9 °F). 1.6.1 The applicable Test Method D5769 range for total aromatics is from 3.7 % to 29.4 % by volume as reported by Test Method D5769 and the distillation temperature T95, at which 95 % of the sample has evaporated, when tested according to Test Method D86 ranged from 149.1 °C to 196.6 °C (300.4 °F to 385.9 °F). 1.7 This test method includes a relative bias section for spark-ignition engine fuels (gasolines) for benzene reporting based on Practice D6708 accuracy assessment between Test Method D5580 and Test Method D5769 as a possible Test Method D5580 alternative to Test Method D5769. The Practice D6708 derived correlation equation for benzene is applicable in the test method inclusive valid reporting concentration ranges, as determined from Practice D6708 data set and precision working limits of Test Method D5580, from 0.08 % to 2.34 % by volume as measured by Test Method D5580. 1.8 Many of the common alcohols and ethers that are added to gasoline to reduce carbon monoxide emissions and increase octane, do not interfere with the analysis. Ethers such as methyl tert-butylether (MTBE), ethyl tert-butylether (ETBE), tert-amylmethylether (TAME), and diisopropylether (DIPE) have been found to elute from the precolumn with the nonaromatic hydrocarbons to vent. Other oxygenates, including methanol and ethanol elute before benzene and the aromatic hydrocarbons. 1-Methylcyclopentene has also been found to elute from the precolumn to vent and does not interfere with benzene. 1.9 The values stated in SI units are to be regarded as standard. 1.9.1 Exception—The values given in parentheses are for information only. 1.10 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use. 1.11 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

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二甲苯 测试方法


国家质检总局

GB/T 11737-1989 居住区大气中苯、甲苯和二甲苯卫生检验标准方法 气相色谱法 GB/T 16049-1995 车间空气中二甲苯的直接进样气相色谱测定方法 GB/T 16050-1995 车间空气中二甲苯的溶剂解吸气相色谱测定方法 GB/T 16051-1995 车间空气中二甲苯的热解吸气相色谱测定方法 GB/T 1832-1979 锡精矿中氧化镁量的测定(二甲苯胺蓝Ⅱ吸光光度法) GB/T 11198.11-1989 工业硫酸 氮氧化物测定 2.4-二甲苯酚分光光度法 GB/T 9984.10-1988 工业三聚磷酸钠(包括食品工业用) 氮的氧化物含量的测定 3,4-二甲苯酚分光光度法 GB/T 24282-2009 塑料.聚丙烯中二甲苯可溶物含量的测定 GB/T 23990-2009 涂料中苯、甲苯、乙苯和二甲苯含量的测定.气相色谱法 GB/T 9984.10-2004 工业三聚磷酸钠(包括食品工业用)氮的氧化物含量的测定 3,4-二甲苯酚分光光度法 GB 223.45-1985 钢铁及合金化学分析方法 铜试剂分离-二甲苯胺蓝Ⅱ光度法测定镁量 GB/T 223.45-1994 钢铁及合金化学分析方法 铜试剂分离-二甲苯胺蓝Ⅱ光度法测定镁量 GB/T 13748.3-1992 镁及镁合金化学分析方法 二甲苯酚橙分光光度法测定锆量 GB/T 13748.7-2005 镁及镁合金化学分析方法 锆含量的测定 二甲苯酚橙分光光度法 GB/T 6900.7-1986 粘土、高铝质耐火材料化学分析方法 二甲苯胺蓝I-溴化十六烷基三甲铵光度法测定氧化镁量 GB/T 26310.1-2010 原铝生产用煅后石油焦检测方法 第1部分:二甲苯中密度的测定 比重瓶法 GB/T 2910.16-2009 纺织品.定量化学分析.第16部分:聚丙烯纤维与某些其他纤维的混合物(二甲苯法) GB/T 2910.16-2024 纺织品 定量化学分析 第16部分:聚丙烯纤维与某些其他纤维的混合物(二甲苯法) GB/T 14677-1993 空气质量 甲苯、二甲苯、乙烯的测定 气相色谱法




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