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首页> 外文期刊>Analytical and bioanalytical chemistry >Stacking and determination of phenazine-1-carboxylic acid with low pK _a in soil via moving reaction boundaryformed by alkaline and double acidic buffers in capillary electrophoresis
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Stacking and determination of phenazine-1-carboxylic acid with low pK _a in soil via moving reaction boundaryformed by alkaline and double acidic buffers in capillary electrophoresis

机译:通过毛细管电泳中碱性和双酸性缓冲液形成的移动反应边界移动和测定土壤中低pK _a的吩嗪-1-羧酸

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摘要

As shown herein, a normal moving reaction boundary (MRB) formed by an alkaline buffer and a single acidic buffer had poor stacking to the new important plant growth promoter of phenazine-1-carboxylic acid (PCA) in soil due to the leak induced by its low pK _a. To stack the PCA with low pK _a efficiently, a novel stacking system of MRB was developed, which was formed by an alkaline buffer and double acidic buffers (viz., acidic sample and blank buffers). With the novel system, the PCA leaking into the blank buffer from the sample buffer could be well stacked by the prolonged MRB formed between the alkaline buffer and blank buffer. The relevant mechanism of stacking was discussed briefly. The stacking system, coupled with sample pretreatment, could achieve a 214-fold increase of PCA sensitivity under the optimal conditions (15 mM (pH 11.5) Gly-NaOH as the alkaline buffer, 15 mM (pH 3.0) Gly-HCl-acetonitrile (20%, v/v) as the acidic sample buffer, 15 mM (pH 3.0) Gly-HCl as the blank buffer, 3 min 13 mbar injection of double acidic buffers, benzoic acid as the internal standard, 75 μm i.d. × 53 cm (44 cm effective length) capillary, 25 kV and 248 nm). The limit of detection of PCA in soil was decreased to 17 ng/g, the intra-day and inter-day precision values (expressed as relative standard deviations) were 3.17-4.24% and 4.17-4.87%, respectively, and the recoveries of PCA at three concentration levels changed from 52.20% to 102.61%. The developed method could be used for the detection of PCA in soil at trace level.
机译:如本文所示,由碱性缓冲液和单一酸性缓冲液形成的正常移动反应边界(MRB)在土壤中与吩嗪-1-羧酸(PCA)的新的重要植物生长促进剂的堆叠性差,这是由于由于其低pK _a。为了有效地以低pK _a堆叠PCA,开发了一种新型的MRB堆叠系统,该系统由碱性缓冲液和双重酸性缓冲液(即酸性样品缓冲液和空白缓冲液)组成。使用新颖的系统,通过在碱性缓冲液和空白缓冲液之间形成的延长的MRB,可以很好地堆叠从样品缓冲液泄漏到空白缓冲液中的PCA。简要讨论了相关的堆叠机制。在最佳条件下(15 mM(pH 11.5)Gly-NaOH作为碱性缓冲液,15 mM(pH 3.0)Gly-HCl-乙腈( 20%,v / v)作为酸性样品缓冲液,15 mM(pH 3.0)Gly-HCl作为空白缓冲液,3分钟13 mbar注入双重酸性缓冲液,苯甲酸作为内标,75μmid×53 cm (有效长度44 cm)毛细管,25 kV和248 nm)。土壤中PCA的检出限降至17 ng / g,日内和日间精度值(表示为相对标准偏差)分别为3.17-4.24%和4.17-4.87%,回收率三种浓度水平的PCA从52.20%变为102.61%。该方法可用于痕量土壤中五氯苯甲醚的检测。

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