Chinese Journal of Chromatography ›› 2024, Vol. 42 ›› Issue (8): 773-782.DOI: 10.3724/SP.J.1123.2024.02013
• Articles • Previous Articles Next Articles
LI Changxiu*(), WANG Yamin, ZHANG Yiwei, WANG Zheng
Received:
2024-02-20
Online:
2024-08-08
Published:
2024-08-01
Supported by:
CLC Number:
LI Changxiu, WANG Yamin, ZHANG Yiwei, WANG Zheng. Determination of individual components in finished motor gasoline by dual-channel three-column gas chromatography[J]. Chinese Journal of Chromatography, 2024, 42(8): 773-782.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.chrom-china.com/EN/10.3724/SP.J.1123.2024.02013
Fig. 3 Chromatograms of fluid catalytic cracking (FCC) gasoline, oxygenates and anilines on PONA column Blue color: FCC gasoline; red color: mixed solution of oxygenates and anilines. Peaks of red color: 1. methanol; 2. ethanol; 3. iso-propanol; 4. methylal & tert-butanol; 5. n-propanol; 6. methyl tert-butyl ether (MTBE); 7. sec-butanol; 8. ethyl acetate (EA) & dimethyl carbonate (DMC) & di-isopropyl ether (DIPE); 9. iso-butanol; 10. ethyl tert-butyl ether (ETBE); 11. tert-amyl alcohol; 12. dimethoxy-ethane (DME); 13. n-butanol; 14. methyl tert-amyl ether (TAME).
No. | Times for solenoid valve ON/min | Times for solenoid valve OFF/min | Target components |
---|---|---|---|
1 | 8.10 | 8.50 | methanol |
2 | 11.80 | 12.30 | methylal & tert-butanol |
3 | 15.10 | 15.55 | MTBE |
4 | 16.50 | 17.60 | sec-butanol, 3-methylpentane |
5 | 18.10 | 18.80 | EA & DMC & DIPE |
6 | 23.40 | 23.90 | n-butanol |
7 | 29.50 | 29.90 | n-heptane |
8 | 34.95 | 35.55 | sec-butyl acetate |
9 | 36.00 | 36.85 | toluene & 2,3,3-trimethyl- |
pentane | |||
10 | 58.15 | 58.75 | aniline |
11 | 67.05 | 69.00 | N-methyl aniline, o-methyl |
aniline, p/m-methyl aniline |
Table 1 Time table for Deans switch
No. | Times for solenoid valve ON/min | Times for solenoid valve OFF/min | Target components |
---|---|---|---|
1 | 8.10 | 8.50 | methanol |
2 | 11.80 | 12.30 | methylal & tert-butanol |
3 | 15.10 | 15.55 | MTBE |
4 | 16.50 | 17.60 | sec-butanol, 3-methylpentane |
5 | 18.10 | 18.80 | EA & DMC & DIPE |
6 | 23.40 | 23.90 | n-butanol |
7 | 29.50 | 29.90 | n-heptane |
8 | 34.95 | 35.55 | sec-butyl acetate |
9 | 36.00 | 36.85 | toluene & 2,3,3-trimethyl- |
pentane | |||
10 | 58.15 | 58.75 | aniline |
11 | 67.05 | 69.00 | N-methyl aniline, o-methyl |
aniline, p/m-methyl aniline |
Fig. 5 Chromatogram of components on column DM-624 1. methanol; 2. methylal; 3. tert-butanol; 4. MTBE; 5. DIPE; 6. sec-butanol; 7. EA; 8. DMC; 9. n-butanol; 10. SBA; 11. aniline; 12. N-methyl aniline; 13. o-methyl aniline & p-methyl aniline; 14. m-methyl aniline; 15. iso-butane; 16.2,3-dimethyl butane & cyclopentane; 17.3-methyl pentane; 18. toluene.
Sample No. | Component | Background/%* | Spiked/%* | Found/%* | RSD/% | Recovery/% |
---|---|---|---|---|---|---|
1 | methanol | 0.02 | 2.85 | 2.85 | 1.0 | 99.3 |
methylal | - | 3.33 | 3.17 | 0.3 | 95.2 | |
tert-butanol | 0.02 | 2.79 | 2.87 | 0.6 | 102.0 | |
MTBE | 3.29 | 2.52 | 5.77 | 0.5 | 98.3 | |
DIPE | - | 2.94 | 3.07 | 0.5 | 104.1 | |
sec-butanol | - | 2.87 | 2.93 | 0.6 | 102.1 | |
ethyl acetate | - | 2.89 | 3.01 | 0.6 | 104.3 | |
DMC | - | 3.17 | 3.32 | 0.6 | 104.5 | |
n-butanol | - | 3.50 | 3.58 | 0.7 | 102.2 | |
SBA | - | 2.96 | 3.07 | 0.7 | 103.7 | |
2 | aniline | - | 2.57 | 2.59 | 5.1 | 100.5 |
N-methyl aniline | - | 2.57 | 2.51 | 1.3 | 97.9 | |
o-methyl aniline | - | 2.79 | 2.74 | 1.4 | 98.2 | |
m-methyl aniline | - | 2.62 | 2.55 | 1.3 | 97.2 | |
ethanol | - | 2.72 | 2.79 | 1.3 | 102.6 | |
iso-propanol | - | 2.66 | 2.80 | 2.3 | 105.0 | |
n-propanol | - | 2.97 | 3.13 | 2.5 | 105.5 | |
iso-butanol | - | 2.70 | 3.19 | 3.2 | 118.2 | |
ETBE | - | 2.62 | 2.37 | 1.1 | 90.1 | |
TAME | - | 2.69 | 2.73 | 0.2 | 101.7 |
Table 2 Repeatabilities and spiked recoveries of determination of oxygenates and anilines in finished motor gasoline (Ⅴ)-92 samples (n=6)
Sample No. | Component | Background/%* | Spiked/%* | Found/%* | RSD/% | Recovery/% |
---|---|---|---|---|---|---|
1 | methanol | 0.02 | 2.85 | 2.85 | 1.0 | 99.3 |
methylal | - | 3.33 | 3.17 | 0.3 | 95.2 | |
tert-butanol | 0.02 | 2.79 | 2.87 | 0.6 | 102.0 | |
MTBE | 3.29 | 2.52 | 5.77 | 0.5 | 98.3 | |
DIPE | - | 2.94 | 3.07 | 0.5 | 104.1 | |
sec-butanol | - | 2.87 | 2.93 | 0.6 | 102.1 | |
ethyl acetate | - | 2.89 | 3.01 | 0.6 | 104.3 | |
DMC | - | 3.17 | 3.32 | 0.6 | 104.5 | |
n-butanol | - | 3.50 | 3.58 | 0.7 | 102.2 | |
SBA | - | 2.96 | 3.07 | 0.7 | 103.7 | |
2 | aniline | - | 2.57 | 2.59 | 5.1 | 100.5 |
N-methyl aniline | - | 2.57 | 2.51 | 1.3 | 97.9 | |
o-methyl aniline | - | 2.79 | 2.74 | 1.4 | 98.2 | |
m-methyl aniline | - | 2.62 | 2.55 | 1.3 | 97.2 | |
ethanol | - | 2.72 | 2.79 | 1.3 | 102.6 | |
iso-propanol | - | 2.66 | 2.80 | 2.3 | 105.0 | |
n-propanol | - | 2.97 | 3.13 | 2.5 | 105.5 | |
iso-butanol | - | 2.70 | 3.19 | 3.2 | 118.2 | |
ETBE | - | 2.62 | 2.37 | 1.1 | 90.1 | |
TAME | - | 2.69 | 2.73 | 0.2 | 101.7 |
Sample type | Method1) | Benzene/%2) | Aromatics/%2) | Olefins/%2) | Total oxygen content/%3) | Ethanol/%2) |
---|---|---|---|---|---|---|
Motor gasoline (Ⅴ)-92 | this method | 0.80 | 28.2 | 15.6 | 1.2 | - |
standard method | 0.75 | 28.4 | 13.3 | 1.1 | - | |
Motor gasoline (Ⅴ)-95 | this method | 0.43 | 39.0 | 7.7 | 2.1 | - |
standard method | 0.41 | 39.9 | 6.2 | 2.0 | - | |
Motor gasoline (Ⅵ)-92 | this method | 0.59 | 31.3 | 8.1 | 1.6 | - |
standard method | 0.60 | 33.3 | 5.9 | 1.5 | - | |
Motor gasoline (Ⅵ)-95 | this method | 0.52 | 31.1 | 7.8 | 2.5 | - |
standard method | 0.50 | 32.2 | 6.0 | 2.2 | - | |
Ethanol gasoline (Ⅴ)- | this method | 0.73 | 35.2 | 13.1 | - | 11.1 |
E95 | standard method | 0.69 | 35.6 | 12.5 | - | 10.3 |
Table 3 Results of real finished gasoline determined with this method and standard methods
Sample type | Method1) | Benzene/%2) | Aromatics/%2) | Olefins/%2) | Total oxygen content/%3) | Ethanol/%2) |
---|---|---|---|---|---|---|
Motor gasoline (Ⅴ)-92 | this method | 0.80 | 28.2 | 15.6 | 1.2 | - |
standard method | 0.75 | 28.4 | 13.3 | 1.1 | - | |
Motor gasoline (Ⅴ)-95 | this method | 0.43 | 39.0 | 7.7 | 2.1 | - |
standard method | 0.41 | 39.9 | 6.2 | 2.0 | - | |
Motor gasoline (Ⅵ)-92 | this method | 0.59 | 31.3 | 8.1 | 1.6 | - |
standard method | 0.60 | 33.3 | 5.9 | 1.5 | - | |
Motor gasoline (Ⅵ)-95 | this method | 0.52 | 31.1 | 7.8 | 2.5 | - |
standard method | 0.50 | 32.2 | 6.0 | 2.2 | - | |
Ethanol gasoline (Ⅴ)- | this method | 0.73 | 35.2 | 13.1 | - | 11.1 |
E95 | standard method | 0.69 | 35.6 | 12.5 | - | 10.3 |
|
[1] | HUANG Bin, CHEN Juan, WANG Bangjin, ZHANG Junhui, XIE Shengming, YUAN Liming. Chiral porous organic cage used as stationary phase for gas chromatographic separation of chiral and achiral compounds [J]. Chinese Journal of Chromatography, 2024, 42(9): 891-902. |
[2] | ZHENG Qiongying, ZHI Yujie, DUAN Wenjia, LÜ Min, XIAO Yue, XIANG Ping, CHEN Hang, YUN Keming. A headspace injection double-column dual-detector gas chromatography system for the analysis of 12 volatile compounds such as ethanol in human blood [J]. Chinese Journal of Chromatography, 2024, 42(9): 909-917. |
[3] | DU Jie, SUN Pengchao, ZHANG Menglu, LIAN Zete, YUAN Fenggang, WANG Gang. Preparation of porous boron nitride-doped polypyrrole-2,3,3-trimethylindole solid-phase microextraction coating for polycyclic aromatic hydrocarbon detection [J]. Chinese Journal of Chromatography, 2023, 41(9): 789-798. |
[4] | QU Jian, NI Yuwen, YU Haoran, TIAN Hongxu, WANG Longxing, CHEN Jiping. New pretreatment method for detecting petroleum hydrocarbons in soil: silica-gel dehydration and cyclohexane extraction [J]. Chinese Journal of Chromatography, 2023, 41(9): 814-820. |
[5] | LU Huiyuan, WANG Lijuan, ZHANG Jiongkai, ZHANG Chizhong, LI Tianjuan, JI Ruixue, SHEN Weijian. Determination of four fatty acid ethyl esters in olive oil by solid phase extraction-gas chromatography [J]. Chinese Journal of Chromatography, 2023, 41(4): 359-365. |
[6] | ZHANG Zhenyong. Chiral capillary gas chromatography for the separation of the enantiomers of 4-chloromethyl-2,2-dimethyl-1,3-dioxolane [J]. Chinese Journal of Chromatography, 2023, 41(12): 1135-1140. |
[7] | YANG Han, TANG Wenqi, ZENG Chu, MENG Shasha, XU Ming. Rational design of high performance metal organic framework stationary phase for gas chromatography [J]. Chinese Journal of Chromatography, 2023, 41(10): 853-865. |
[8] | CHEN Jia, QIU Hongdeng. Recent advances in carbon dots-based chromatographic separation materials [J]. Chinese Journal of Chromatography, 2023, 41(10): 825-834. |
[9] | HONG Haixiang, ZANG Kunpeng, CHEN Yuanyuan, LIN Yi, LI Jiaxin, QING Xuemei, QIU Shanshan, XIONG Haoyu, JIANG Kai, FANG Shuangxi. Monitoring of atmospheric CH4, CO, CO2, N2O and SF6 using three-channel gas chromatography [J]. Chinese Journal of Chromatography, 2022, 40(8): 763-771. |
[10] | SUN Yinlu, WANG Lin, YIN Zhiyu, ZHAO Jianwei. Simulation of gas chromatographic separation based on random diffusion [J]. Chinese Journal of Chromatography, 2022, 40(3): 281-288. |
[11] | ZHANG Han, LIAO Xu, WEI Lai, ZHANG Zixing, REN Hongyun, ZHANG Xian. Design and application of online derivatization device for polar organics on atmospheric particulate filter [J]. Chinese Journal of Chromatography, 2022, 40(1): 100-106. |
[12] | SHEN Zhaodong, HUANG Dongmei, FANG Changling, YE Hongli, TIAN Liangliang, WU Zi, ZHANG Jun. Determination of fatty acids compositions and contents in Chinese mitten crabs by gas chromatography [J]. Chinese Journal of Chromatography, 2021, 39(12): 1340-1346. |
[13] | TANG Wenqi, MENG Shasha, XU Ming, GU Zhiyuan. Application of gas chromatography separation based on metal-organic framework material as stationary phase [J]. Chinese Journal of Chromatography, 2021, 39(1): 57-68. |
[14] | CHEN Dongyang, ZHANG Hao, FENG Jiali, ZENG Dong. Advances in technologies for determination of illegal drugs in health food [J]. Chinese Journal of Chromatography, 2020, 38(8): 880-890. |
[15] | HU Yawei, YANG Yang, PENG Jinfeng. Research progress on detection of 2-acetyl-1-pyrroline, the characteristic aroma component of fragrant rice [J]. Chinese Journal of Chromatography, 2020, 38(7): 768-774. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||