Citation:
LIN Xiaojie, WEI Wei, HE Zhigang, LIN Xiaozi. Determination of organic acids in rice wine by ion-exclusion chromatography[J]. Chinese Journal of Chromatography,
;2014, 32(3): 304-308.
doi:
10.3724/SP.J.1123.2013.11023
-
An ion-exclusion chromatographic method for the simultaneous determination of organic acids in rice wine was developed. An IC-Pak Ion Exclusion column (300 mm×7.8 mm, 7 μm) was used at 50 ℃. The mobile phases were H2SO4(phase A) and acetonitrile (phase B) (98:2, v/v) at a flow rate of 0.5 mL/min. The gradient elution program was as follows: 0-40 min, 0.01 mol/L H2SO4 to 0.02 mol/L H2SO4; 40-50 min, 0.01 mol/L H2SO4. The injection volume was 10 μL. The detection wavelength was set at 210 nm. The results showed that oxalic acid, maleic acid, citric acid, tartaric acid, malic acid, ascorbic acid, succinic acid, lactic, fumaric acid, acetic acid, propionic acid, isobutyric acid and butyric acid were completely separated and determined in 30 min. The linear correlation coefficients were above 0.9997 in the range of 0.001-1.000 g/L. Under the optimized conditions, the recoveries of organic acids in rice wine were in the range of 93.4%-103.8% with the relative standard deviations (RSDs, n=5) of 0.1%-1.5%. This method is feasible, convenient, fast, accurate and applicable for the quantitative analysis of the organic acids in rice wine.
-
Keywords:
- ion-exclusion chromatography (IEC),
- organic acids,
- rice wine
-
-
-
[1]
[1] Gui Z F. Wine Manufacture. Beijing: Chemical Industry Press (桂祖发. 酒类制造. 北京: 化学工业出版社), 2001: 210
-
[2]
[2] Feng D M, Sun S Q, Ma H X, et al. China Brewing (冯德明, 孙诗清, 马红霞, 等. 中国酿造), 2010(1): 125
-
[3]
[3] Feng D M, Zhang Y, Zhao H M, et al. China Brewing (冯德明, 张洋, 赵惠明, 等. 中国酿造), 2009(3): 157
-
[4]
[4] Feng A J, Zhao W H, Bai W D, et al. China Brewing (冯爱军, 赵文红, 白卫东, 等. 中国酿造), 2010(8): 144
-
[5]
[5] Tu Y Y, Xu H R, Liang H L, et al. Food Science (屠幼英, 须海荣, 梁惠玲, 等. 食品科学), 2002, 23(10): 113
-
[6]
[6] Carneiro J M T, Zagatto E A G, Santos J L M, et al. Anal Chim Acta, 2002, 474: 161

-
[7]
[7] Mato I, Huidobro J F, Sánchez M P, et al. Food Chem, 1998, 62(4): 503

-
[8]
[8] Huang Z X, Dai R Z. Food & Fermentation Industries (黄志先, 戴仁泽. 食品与发酵工业), 1985(6): 26
-
[9]
[9] Wu Y G, Kuang B H, Long F. Chinese Journal of Chromatography (吴有光, 匡渤海, 龙飞. 色谱), 1996, 14(4): 259
- [10]
-
[11]
[11] Chen F F, Shi Y P. Chinese Journal of Chromatography (陈方方, 师彦平. 色谱), 2013, 31(7): 626
- [12]
-
[13]
[13] Chinnici F, Spinabelli U, Riponi C, et al. J Food Compos Anal, 2005, 18: 121

-
[14]
[14] Ma R, Ou Y J, Li X, et al. Chinese Journal of Chromatography (马瑞, 欧阳嘉, 李鑫, 等. 色谱), 2012, 30(1): 62
-
[15]
[15] Lü X C, Huang Z Q, Huang R L, et al. Food & Fermentation Industries (吕旭聪, 黄志清, 黄若兰, 等. 食品与发酵工业), 2010, 36(6): 132
-
[16]
[16] Yuan X Y, Wu W, Yu H. Life Science Instruments (原小寓, 吴伟, 于泓. 生命科学仪器), 2005(3): 29
-
[17]
[17] Guo Y, Liang J, Li M M, et al. Food Chemistry (郭燕, 梁俊, 李敏敏, 等. 食品科学), 2012, 33(2): 227
-
[18]
[18] Usenik V, Fabcic J, Stampar F. Food Chem, 2008, 107: 185

-
[19]
[19] Rodríguez-Bernaldo de Quirós A, Lage-Yusty M A, López-Hernández J. Talanta, 2009, 78: 643

-
[20]
[20] Oliveira A P, Pereira J A, Andrade P B, et al. Food Chem, 2008, 111: 393

-
[1]
-
-
-
[1]
Yuan Zheng , Quan Lan , Zhenggen Zha , Lingling Li , Jun Jiang , Pingping Zhu . Teaching Reform of Organic Synthesis Experiments by Introducing Reverse Thinking and Design Concepts: Taking the Synthesis of Cinnamic Acid Based on Retrosynthetic Analysis as an Example. University Chemistry, 2024, 39(6): 207-213. doi: 10.3866/PKU.DXHX202310065
-
[2]
Jiaojiao Yu , Bo Sun , Na Li , Cong Wen , Wei Li . Improvement of Classical Organic Experiment Based on the “Reverse-Step Optimization Method”: Taking Synthesis of Ethyl Acetate as an Example. University Chemistry, 2025, 40(3): 333-341. doi: 10.12461/PKU.DXHX202405177
-
[3]
Lingyu Chang , Yanfang Lang , Yuyan Zhu , Jie Wang , Ying Guo , Die Wang , Peng Ding , Yueming Zhou , Zhixiang Gong , Shujuan Liu . Machine Learning-Optimized Microcolumn Ion Exchange Chromatography for Trace Arsenic Determination. University Chemistry, 2026, 41(1): 76-84. doi: 10.12461/PKU.DXHX202506023
-
[4]
Peiran ZHAO , Yuqian LIU , Cheng HE , Chunying DUAN . A functionalized Eu3+ metal-organic framework for selective fluorescent detection of pyrene. Chinese Journal of Inorganic Chemistry, 2024, 40(4): 713-724. doi: 10.11862/CJIC.20230355
-
[5]
Wendian XIE , Yuehua LONG , Jianyang XIE , Liqun XING , Shixiong SHE , Yan YANG , Zhihao HUANG . Preparation and ion separation performance of oligoether chains enriched covalent organic framework membrane. Chinese Journal of Inorganic Chemistry, 2024, 40(8): 1528-1536. doi: 10.11862/CJIC.20240050
-
[6]
Fan Wu , Wenchang Tian , Jin Liu , Qiuting Zhang , YanHui Zhong , Zian Lin . Core-Shell Structured Covalent Organic Framework-Coated Silica Microspheres as Mixed-Mode Stationary Phase for High Performance Liquid Chromatography. University Chemistry, 2024, 39(11): 319-326. doi: 10.12461/PKU.DXHX202403031
-
[7]
Junyang FENG , Xiaoli HAN , Yongjie SONG , Gang LI . Proton conduction and fluorescence properties of an ionic hydrogen-bonded organic framework constructed from dibromophthalic acid. Chinese Journal of Inorganic Chemistry, 2026, 42(4): 693-702. doi: 10.11862/CJIC.20250350
-
[8]
Yujin Deng , Yishuang Chen , Lijie Zhang , Huile Jin , Yun Yang , Quanlong Xu , Shun Wang . Plasmonic Au nanobipyramid assembly covalent organic framework for boosting photocatalytic hydrogen evolution through strong local electric field. Acta Physico-Chimica Sinica, 2026, 42(6): 100193-0. doi: 10.1016/j.actphy.2025.100193
-
[9]
Yukun Chang , Haoqin Huang , Baolei Wang . Preparation of Trans-Cinnamic Acid via “One-Pot” Protocol of Aldol Condensation-Hydrolysis Reaction: Recommending an Improved Organic Synthesis Experiment. University Chemistry, 2024, 39(4): 322-328. doi: 10.3866/PKU.DXHX202309095
-
[10]
Hong CAI , Jiewen WU , Jingyun LI , Lixian CHEN , Siqi XIAO , Dan LI . Synthesis of a zinc-cobalt bimetallic adenine metal-organic framework for the recognition of sulfur-containing amino acids. Chinese Journal of Inorganic Chemistry, 2025, 41(1): 114-122. doi: 10.11862/CJIC.20240382
-
[11]
Ke Li , Chuang Liu , Jingping Li , Guohong Wang , Kai Wang . Architecting Inorganic/Organic S-Scheme Heterojunction of Bi4Ti3O12 Coupling with g-C3N4 for Photocatalytic H2O2 Production from Pure Water. Acta Physico-Chimica Sinica, 2024, 40(11): 2403009-0. doi: 10.3866/PKU.WHXB202403009
-
[12]
Ben Yang , Shukun Shen , Pujun Jin , Yujia Luo , Jianyong Hu . Covalent organic frameworks: emerging organic porous materials. University Chemistry, 2026, 41(4): 264-274. doi: 10.12461/PKU.DXHX202502128
-
[13]
Houjin Li , Lin Wu , Xingwen Sun , Yuan Zheng , Zhanxiang Liu , Shuanglian Cai , Ying Xiong , Guangao Yu , Qingwen Liu , Jie Han , Xin Du , Chengshan Yuan , Qihan Zhang , Jianrong Zhang , Shuyong Zhang . Basic Operations and Specification Suggestions for Organic Chemical Chromatography Experiments. University Chemistry, 2025, 40(5): 93-105. doi: 10.12461/PKU.DXHX202408100
-
[14]
Qianlang Wang , Jijun Sun , Qian Chen , Quanqin Zhao , Baojuan Xi . The Appeal of Organophosphorus Compounds: Clearing Their Name. University Chemistry, 2025, 40(4): 299-306. doi: 10.12461/PKU.DXHX202405205
-
[15]
Fengxiao Wang , Zhiwei Miao , Yaofeng Yuan . 有机磷化学与化学教学. University Chemistry, 2025, 40(8): 158-168. doi: 10.12461/PKU.DXHX202410077
-
[16]
Ping LI , Geng TAN , Xin HUANG , Fuxing SUN , Jiangtao JIA , Guangshan ZHU , Jia LIU , Jiyang LI . Green synthesis of metal-organic frameworks with open metal sites for efficient ammonia capture. Chinese Journal of Inorganic Chemistry, 2025, 41(10): 2063-2068. doi: 10.11862/CJIC.20250020
-
[17]
Lewang Yuan , Yaoyao Peng , Zong-Jie Guan , Yu Fang . Insights into the development of 2D covalent organic frameworks as photocatalysts in organic synthesis. Acta Physico-Chimica Sinica, 2025, 41(8): 100086-0. doi: 10.1016/j.actphy.2025.100086
-
[18]
Dengke Ma . Application of Integrating Fundamental Knowledge and Cutting-Edge Developments in the Teaching of Organic Synthesis: Taking the Asymmetric Meinwald Rearrangement as an Example. University Chemistry, 2026, 41(4): 67-74. doi: 10.12461/PKU.DXHX202502112
-
[19]
Aiai WANG , Lu ZHAO , Yunfeng BAI , Feng FENG . Research progress of bimetallic organic framework in tumor diagnosis and treatment. Chinese Journal of Inorganic Chemistry, 2024, 40(10): 1825-1839. doi: 10.11862/CJIC.20240225
-
[20]
Feng Sha , Xinyan Wu , Ping Hu , Wenqing Zhang , Xiaoyang Luan , Yunfei Ma . Design of Course Ideology and Politics for the Comprehensive Organic Synthesis Experiment of Benzocaine. University Chemistry, 2024, 39(2): 110-115. doi: 10.3866/PKU.DXHX202307082
-
[1]
Metrics
- PDF Downloads(0)
- Abstract views(701)
- HTML views(44)
Login In
DownLoad: