Triclosan ï¼TCSï¼ï¼ triclocarban ï¼TCCï¼ï¼ and p-chloro-m-xylenol ï¼PCMXï¼ are some of the most widely used antibiotics because of their broad-spectrum and highly-efficient bactericidal effects. In the context of disinfectionï¼ the National Standard GB 38598-2020 stipulates that the contents of the effective ingredients present in a disinfectant must be specifiedï¼ wherein their range must fall within 90%-110% of the specified central value. To ensure a suitable product qualityï¼ analysis by high performance liquid chromatography ï¼HPLCï¼ is recommended by both the GB/T 27947-2020 and GB/T 34856-2017. Howeverï¼ the results analyzed according to the National Standard method often exceed the declared contentsï¼ thereby indicating the necessity to establish a new method based on a completely different principle ï¼e. g.ï¼ capillary electrophoresisï¼ï¼ especially since it was not possible to analyze TCSï¼ TCCï¼ and PCMX in a single injection using the National Standard method. Moreoverï¼ using this methodï¼ large amounts of methanol were consumedï¼ which could be potentially harmful to both operators and the environment. In terms of their water solubilitiesï¼ this decreases in the order of PCMX>TCS>TCCï¼ wherein TCC is insoluble in water. As suchï¼ the use of nonaqueous capillary electrophoresis ï¼NACEï¼ based on running buffer solutions prepared in pure organic solvents ï¼e. g.ï¼ methanol or acetonitrileï¼ is necessary. In this paperï¼ a new NACE approach combined with an ultraviolet detection method was developed for the simultaneous analysis of TCSï¼ TCCï¼ and PCMX in disinfectantsï¼ personal care productsï¼ and ointments. For this purposeï¼ an uncoated fused silica capillary ï¼20 cmÃ50 μmï¼ total length=30.2 cmï¼ was used as the separation column with a separation buffer composed of 14 mmol/L sodium borateï¼ 2 g/L polyethylene glycol ï¼PEGï¼ 20000ï¼ and 0.5 mmol/L dodecyltrimethylammonium bromide ï¼DTABï¼ in methanol. Following optimization of the separation parametersï¼ the complete and simultaneous separation of TCSï¼ TCCï¼ and PCMX was achieved when the sample solution was prepared using 5 g/L PEG 20000 in methanol-acetonitrile ï¼50â¶50ï¼ v/vï¼. It was possible to directly inject the sample into the analysis system after a simple dilution with the sample mediumï¼ and no interference was observed in any of the sample electropherograms when a separation voltage and detection wavelength of -12 kV and 214 nm were employedï¼ respectively. Furthermoreï¼ TCSï¼ TCCï¼ and PCMX showed good linear relationships with their corrected peak areas within a mass concentration range of 1-100 mg/Lï¼ and the correlation coefficients ï¼rï¼ were all greater than 0.99. Moreoverï¼ the limits of detection ï¼LODsï¼ S/N=3ï¼ and limits of quantification ï¼LOQsï¼ S/N=10ï¼ were determined to be 0.2 and 1 mg/Lï¼ respectively. The spiked recoveries ranged from 94.5% to 104.4% with relative standard deviations of â¤4.8% in all cases. Subsequentlyï¼ the established method was used to analyze 31 commercial samplesï¼ including hand sanitizerï¼ disinfectantï¼ baby powderï¼ and antibacterial cream. A comparative analysis of HPLCï¼ the developed NACE methodï¼ and our previously reported micellar electrokinetic chromatographic ï¼MEKCï¼ method was also carried out for the quantitative determination of TCSï¼ TCCï¼ and PCMX. Although no statistically significant differences were observed among the three methodsï¼ the results determined for 16 out of the 31 samples did not match the claimed contents. These results therefore indicate the necessity to further control the compositions of disinfectant products. Our results indicate that the newly established NACE method can be an important alternative to HPLC for routine laboratory analysesï¼ especially considering that it minimizes waste generationï¼ requires only a simple sample pretreatment processï¼ and exhibits a good selectivity to the target compounds. It is therefore hoped that the NACE method will be incorporated into the National Standard method in the near future.
[Simultaneous determination of triclosanï¼triclocarban and p-chloro-m-xylenol in disinfectantï¼personal care products and oiltment by nonaqueous capillary electrophoresis].
[采用非水毛细管电泳法同时测定消毒剂、个人护理产品和油剂中的三氯生、三氯卡班和对氯间二甲酚]
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作者:Jiang Ruoke, Ding Xiaojing
| 期刊: | Chinese Journal of Chromatography | 影响因子: | 1.000 |
| 时间: | 2023 | 起止号: | 2023 Feb;41(2):168-177 |
| doi: | 10.3724/SP.J.1123.2022.06016 | ||
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