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Trace analysis of phenolic compounds in water by in situ acetylation coupled with purge and trap-GC/MS

机译:原位乙酰化结合吹扫捕集-GC / MS对水中的酚类化合物进行痕量分析

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The purge-and-trap preconcentration of phenolic compounds from waters after in situ acetylation was carried out in order to quantify them by Gas Chromatography/Mass Spectrometry (GC/MS) in selected ion monitoring (SIM) mode. Using spiked natural surface water, various parameters including purge method, derivatization reagent (acetic anhydride), pH adjuster (Na2HPO4), temperature and time of derivatization reaction, amount of inert salt (NaCl) added, purge time and desorb temperature have been investigated. The final optimized preconcentration conditions were as follows: 10.0 g of NaCl, 0.40 g of Na2HPO4 and 400 uL of acetic anhydride were added to a 35 mL sample which then was heated at 55 °C for 20 min and purged for 20 min while the trap remained at room temperature. Once the purge step was over, the trap was desorbed at 260 °C for 2 min and then baked at 270 °C for 6 min. Under these optimized conditions, the precision and detection limits for all target compounds ranged from 1.3 to 7.0% (relative standard deviation, RSD) and from 0.06 to 0.12 μg L~(-1), and recoveries from the river water sample and wastewater sample ranged from 87.3 to Ill% for all analytes. The response was found to be linear in the validated range, with the correlation coefficient (R~2) better than 0.998. Finally, the method had been utilized for determination of phenolic compounds in natural surface water and wastewater samples, which suggested that it is a useful and effective method for the routine analysis of trace-level phenolic compounds in water.
机译:对原位乙酰化后的水中的酚类化合物进行吹扫捕集预浓缩,以便通过气相色谱/质谱法(GC / MS)在选定的离子监测(SIM)模式下对其进行定量。使用加标的天然地表水,研究了各种参数,包括净化方法,衍生化试剂(乙酸酐),pH调节剂(Na2HPO4),衍生化反应的温度和时间,惰性盐(NaCl)的添加量,净化时间和脱附温度。最终的优化预浓缩条件如下:将10.0 g NaCl,0.40 g Na2HPO4和400 uL乙酸酐添加到35 mL样品中,然后在55°C下加热20 min,并在捕集阱中吹扫20 min保持在室温下。吹扫步骤结束后,将捕集阱在260°C下解吸2分钟,然后在270°C下烘烤6分钟。在这些优化条件下,所有目标化合物的精密度和检出限范围为1.3%至7.0%(相对标准偏差,RSD)和0.06%至0.12μgL〜(-1),并可从河水样品和废水样品中回收所有分析物的浓度范围从87.3%到Ill%。发现响应在验证的范围内呈线性,相关系数(R〜2)优于0.998。最后,该方法已用于测定天然地表水和废水样品中的酚类化合物,这是一种用于常规分析水中痕量酚类化合物的有用而有效的方法。

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