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极性光致代谢产物的分离与结构鉴定。

Isolation and structural elucidation of polar photometabolites.

机构信息

Department of Ecological Chemistry and Ecotoxicology, University of Kassel, Nordbahnhofstrasse la, D-37213, Witzenhausen, Germany.

出版信息

Environ Sci Pollut Res Int. 1997;4(2):61-7. doi: 10.1007/BF02986278.

Abstract

Subsequent to irradiation with a xenon lamp simulating sunlight, fluoroquinolone carboxylic acids in aqueous solution form polar pyridone dicarboxylic and tricarboxylic acids. After liquid/liquid partition with chloroform/water these substances can be isolated by ion exchange chromatography of the aqueous phase. They can be regarded as intermediate compounds on the route to a complete photomineralization. The structural elucidation is performed by such mass spectroscopic methods as MS, GC/MS and HPLC/MS, whereby HPLC/MS shows the highest reliability. Additionally(1)H- and(13)C-NMR measurements confirm the structure of the main polar degradation product.

摘要

受模拟太阳光的氙灯照射后,水溶液中的氟喹诺酮羧酸会形成极性吡啶酮二羧酸和三羧酸。用氯仿/水进行液/液分配后,这些物质可以通过水相的离子交换色谱法分离。它们可以被视为向完全光矿化过程的中间化合物。通过 MS、GC/MS 和 HPLC/MS 等质谱方法进行结构鉴定,其中 HPLC/MS 显示出最高的可靠性。此外,(1)H 和(13)C-NMR 测量也证实了主要极性降解产物的结构。

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