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Extending the scope of dispersive liquid–liquid microextraction for trace analysis of 3-methyl-123-butanetricarboxylic acid in atmospheric aerosols leading to the discovery of iron(III) complexes

机译:扩大了用于气溶胶中3-甲基-123-丁三羧酸的痕量分析的分散液-液微萃取的范围从而发现了铁(III)配合物

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摘要

3-Methyl-1,2,3-butanetricarboxylic acid (MBTCA) is a secondary organic aerosol and can be used as a unique emission marker of biogenic emissions of monoterpenes. Seasonal variations and differences in vegetation cover around the world may lead to low atmospheric MBTCA concentrations, in many cases too low to be measured. Hence, an important tool to quantify the contribution of terrestrial vegetation to the loading of secondary organic aerosol may be compromised. To meet this challenge, a dispersive liquid–liquid microextraction (DLLME) method, known for the extraction of hydrophobic compounds, was extended to the extraction of polar organic compounds like MBTCA without compromising the efficiency of the method. The extraction solvent was fine-tuned using tri-n-octyl phosphine oxide as additive. A multivariate experimental design was applied for deeper understanding of significant variables and interactions between them. The optimum extraction conditions included 1-octanol with 15% tri-n-octyl phosphine oxide (w/w) as extraction solvent, methanol as dispersive solvent, 25% NaCl dissolved in 5 mL sample (w/w) acidified to pH 2 using HNO3, and extraction time of 15 min. A limit of detection of 0.12 pg/m3 in air was achieved. Furthermore, unique complexation behavior of MBTCA with iron(III) was found when analyzed with ultra-high-performance liquid chromatography coupled with electrospray ionization–quadrupole time-of-flight mass spectrometry (UHPLC–ESI–QToF). A comprehensive overview of this complexation behavior of MBTCA was examined with systematically designed experiments. This newly discovered behavior of MBTCA will be of interest for further research on organometallic photooxidation chemistry of atmospheric aerosols. >Graphical abstract>a) Additive assisted DLLME and MBTCA complexes with Fe(III), >b) A good quality figure is attached in ppt format to facilitate editable objects
机译:3-甲基-1,2,3-丁三羧酸(MBTCA)是一种二级有机气溶胶,可以用作单萜生物成因排放的独特排放标记。世界各地植被的季节性变化和差异可能导致大气中MBTCA浓度低,在许多情况下太低而无法测量。因此,量化陆地植被对次生有机气溶胶负荷的重要工具可能会受到损害。为了应对这一挑战,在不影响方法效率的前提下,将分散液-液微萃取(DLLME)方法(以疏水化合物的提取为己任)扩展到了极性有机化合物(如MBTCA)的提取。使用三正辛基氧化膦作为添加剂对萃取溶剂进行微调。多变量实验设计用于更深入地了解重要变量及其之间的相互作用。最佳提取条件包括1-辛醇和15%三正辛基氧化膦(w / w)作为提取溶剂,甲醇作为分散溶剂,25%NaCl溶于5mL样品(w / w)的酸化至pH为2 HNO3,提取时间15分钟。空气中的检出限为0.12 pg / m 3 。此外,当用超高效液相色谱结合电喷雾电离-四极杆飞行时间质谱(UHPLC-ESI-QToF)分析时,发现MBTCA与铁(III)的独特络合行为。通过系统设计的实验对MBTCA的这种络合行为进行了全面概述。 MBTCA的这种新发现的行为将对大气气溶胶的有机金属光氧化化学的进一步研究感兴趣。 <!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!- fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7-> > a )具有Fe(III),>的添加剂辅助的DLLME和MBTCA配合物> b )以ppt格式附加了高质量的图形,以方便可编辑对象

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