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离子色谱法同时测定燃料电池车用氢气中氯化氢和甲酸含量

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作者:韩博, 郝逍瑶, 王少军, 凌凤香

作者单位:中石化(大连)石油化工研究院有限公司,辽宁 大连 116045


关键词:氢气;氯化氢;甲酸;离子色谱;燃料电池


摘要:

建立离子色谱法同时测定燃料电池车用氢气中氯化氢和甲酸含量的方法。50 L氢气样品以0.5 L·min–1的流速通过50 mL去离子水,氢气中的氯化氢和甲酸被水吸收,定容后经离子色谱进行定量测定,再根据通过去离子水的气体总体积,换算出氢气中的氯化氢和甲酸含量。结果表明:氯化氢和甲酸水溶液的标准曲线线性相关系数均在0.995以上,检出限均为0.27 nmol·mol–1 (3S/N)。按标准加入法进行回收试验,回收率为90.08%~97.06%,测定值的相对标准偏差(n=7)为0.55%~3.20%。方法用于30个实际样品的测定,只有2个样品检测到氯化氢,均未检测到甲酸。


Simultaneous determination of hydrogen chloride and formic acid in hydrogen for fuel cell vehicles by ion chromatography
HAN Bo, HAO Xiaoyao, WANG Shaojun, LING Fengxiang
Sinopec (Dalian) Research Institute of Petroleum and Petrochemicals Co., Ltd., Dalian 116045, China
Abstract: The method for simultaneous determination of hydrogen chloride and formic acid in hydrogen for fuel cell vehicles by ion chromatography was established. The 50 L hydrogen sample was passed through 50 mL deionized water at a flow rate of 0.5 L·min–1, and hydrogen chloride and formic acid in hydrogen were absorbed by water. After constant volume, the content of hydrogen chloride and formic acid in water was determined by ion chromatography, and then the content of hydrogen chloride and formic acid in hydrogen was calculated according to the total volume of gas passing through the water. As shown by the results, the linear correlation coefficients of the standard curves of hydrogen chloride and formic acid were all above 0.995 and the detection limits were 0.27 nmol·mol–1 (3S/N). Test for recover was made by standard addition method, giving results in the range of 90.08%-97.06%, and RSDs (n=7) of the determined values were 0.55%-3.20%. The method was used for determination of 30 actual samples. Hydrogen chloride was detected in only 2 samples, and formic acid was not detected in all samples.
Keywords: hydrogen;hydrogen chloride;formic acid;ion chromatography;fuel cell
2022, 48(10):130-134  收稿日期: 2022-07-22;收到修改稿日期: 2022-08-23
基金项目: 中国石油化工股份有限公司项目(119029-2)
作者简介: 韩博(1991-),女,辽宁抚顺市人,助理研究员,硕士,主要从事氢气、油品基础研究及分析检测
参考文献
[1] ISO. Gaseous hydrogen-fuelling stations--Part 8: Fuel quality control: ISO 19880-8: 2020[S]. Zurich: International Organization for Standardization, 2020.
[2] 凌凤香, 韩博. 氢燃料电池用氢气中 14 种痕量杂质分析技术综述[J]. 炼油技术与工程, 2021, 51(1): 1-5
[3] 质子交换膜燃料电池车用燃料 氢气:GB/T 37244-2018 [S]. 北京: 中国标准出版社, 2018.
[4] ASTM. Standard test method for determination of trace gaseous contaminants in hydrogen fuel by fourier transform infrared (FTIR) spectroscopy: ASTM D7653-18: 2010[S]. West Consho hocken: American Society for Testing and Materials, 2010.
[5] 魏王慧, 高艳秋, 董翊, 等. 离子色谱法测定燃料电池汽车用氢气中的甲酸杂质含量[J]. 低温与特气, 2019, 37(6): 47-50
[6] 董翊, 于瑞祥, 姜阳, 等. 离子色谱法测定燃料电池汽车用燃料氢气中的痕量卤化物[J]. 上海计量测试, 2018, 45(03): 5-7
[7] ASTM. Standard test method for determination of total organic halides, total non-methane hydrocarbons, and formaldehyde in hydrogen fuel by Gas Chromatography/Mass Spectrometry: ASTM D7892-15: 2011[S]. West Conshohocken: American Society for Testing and Materials, 2011.
[8] 嵇童童, 查河霞, 赵好,等. 离子色谱法测定大气PM2.5中高氯酸盐的含量[J]. 理化检验(化学分册), 2021, 57(6): 564-567
[9] 李龙飞, 朱永晓, 张宁, 等. 离子色谱法同时测定土壤中Cl、SO42–和NO3[J]. 中国无机分析化学, 2021, 11(1): 39-43
[10] 黄芷君, 龚婷婷, 鲜啟鸣. 燃烧裂解-离子色谱法测定工业废水中的可吸附有机卤素[J]. 中国测试, 2021, 47(1): 62-67
[11] 王涵, 李世安, 杨发财, 等. 氢气制取技术应用现状及发展趋势分析[J]. 现代化工, 2021, 41(2): 23-27
[12] 张胜中, 张英, 范得权, 等. 炼厂氢制取燃料电池级氢气技术研究[J]. 现代化工, 2020, 40(3): 208-211
[13] 袁丽只, 田占元, 邵乐. 浅谈制氢技术现状与发展前景[J]. 陕西煤炭, 2020, 39(S1): 163-165