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Determination of malachite green and crystal violet in environmental water using temperature-controlled ionic liquid dispersive liqmd-liqmd microextraction coupled with high performance liquid chromatography

机译:温控离子液体分散液-微量液相萃取-高效液相色谱法测定环境水中的孔雀石绿和结晶紫

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摘要

Temperature-controlled ionic liquid dispersive liquid-liquid microextraction (TC-IL-DLLME) was introduced to analyze malachite green (MG) and crystal violet (CV) in environmental water by coupling with high performance liquid chromatography (HPLC). In the method, 1-octyl-3-methylimidazolium hexafluorophosphate ([C8MIM][PF6]) and methanol were selected as appropriate extraction and dispersive solvents, respectively. Target compounds were extracted into the IL phase (dispersed completely in the aqueous phase) at a proper temperature. Several other parameters that could affect extraction performance were optimized, such as IL volume, sample pH, salinity, extraction time, temperature and centrifuging velocity. Under the optimum conditions (IL volume, 80 uL; sample pH, 4; salinity, 20% sodium chloride; extraction time, 50 min; temperature, 70 °C; centrifuging velocity, 1500 rpm), the established method offered: (i) good linear range (0.25-20 μg L~(-1)); (ii) low detection limits (MG, 0.086 μg L~(-1); CV, 0.030 μg L~(-1)); (iii) good reproducibility (relative standard deviation, MG, 9.4%; CV, 7.6%; n = 5) and good recoveries (91.7% for MG and 97.2% for CV, respectively; n = 5); (iv) high enrichment factor (254 for MG, 276 for CV), which makes the method suitable to monitor low concentrations of MG and CV in aqueous systems.
机译:引入温度控制的离子液体分散液-液微萃取(TC-IL-DLLME),通过与高效液相色谱(HPLC)结合,分析环境水中的孔雀绿(MG)和结晶紫(CV)。在该方法中,分别选择六氟磷酸1-辛基-3-甲基咪唑鎓([C8MIM] [PF6])和甲醇作为适当的萃取溶剂和分散溶剂。在适当的温度下将目标化合物萃取到IL相中(完全分散在水相中)。优化了其他可能影响萃取性能的参数,例如IL体积,样品pH,盐度,萃取时间,温度和离心速度。在最佳条件下(IL体积为80 uL;样品pH为4;盐度为20%氯化钠;萃取时间为50分钟;温度为70°C;离心速度为1500 rpm),所建立的方法提供:(i)良好的线性范围(0.25-20μgL〜(-1)); (ii)低检测限(MG,0.086μgL〜(-1); CV,0.030μgL〜(-1)); (iii)良好的重现性(相对标准偏差,MG,9.4%; CV,7.6%; n = 5)和良好的回收率(MG分别为91.7%和CV为97.2%; n = 5); (iv)高富集因子(MG为254,CV为276),这使得该方法适用于监测水性体系中低浓度的MG和CV。

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