Aladaghlo Zolfaghar, Fakhari Alireza, Behbahani Mohammad
Faculty of Chemistry, Shahid Beheshti University, G.C., Evin, Tehran, Iran.
Research Center for Environmental Determinants of Health (RCEDH), Kermanshah University of Medical Sciences, Kermanshah, Iran.
J Chromatogr A. 2016 Sep 2;1462:27-34. doi: 10.1016/j.chroma.2016.07.084. Epub 2016 Jul 30.
In this research, a sample preparation method termed solvent-assisted dispersive solid-phase extraction (SA-DSPE) was applied. The used sample preparation method was based on the dispersion of the sorbent into the aqueous sample to maximize the interaction surface. In this approach, the dispersion of the sorbent at a very low milligram level was received by inserting a solution of the sorbent and disperser solvent into the aqueous sample. The cloudy solution created from the dispersion of the sorbent in the bulk aqueous sample. After pre-concentration of the diazinon, the cloudy solution was centrifuged and diazinon in the sediment phase dissolved in ethanol and determined by gas chromatography-flame ionization detector. Under the optimized conditions (pH of solution=7.0, Sorbent: benzophenone, 2%, Disperser solvent: ethanol, 500μL, Centrifuge: centrifuged at 4000rpm for 3min), the method detection limit for diazinon was 0.2, 0.3, 0.3 and 0.3μgL(-1) for distilled water, lake water, waste water and urine sample, respectively. Furthermore, the pre-concentration factor was 363.8, 356.1, 360.7 and 353.38 in distilled water, waste water, lake water and urine sample, respectively. SA-DSPE was successfully used for trace monitoring of diazinon in urine, lake and waste water samples.
在本研究中,应用了一种称为溶剂辅助分散固相萃取(SA-DSPE)的样品制备方法。所采用的样品制备方法基于将吸附剂分散到水性样品中,以最大化相互作用表面。在这种方法中,通过将吸附剂和分散剂溶剂的溶液插入水性样品中来实现极低毫克水平吸附剂的分散。吸附剂在大量水性样品中的分散产生了浑浊溶液。在对二嗪农进行预浓缩后,将浑浊溶液离心,沉淀相中的二嗪农溶解在乙醇中,并用气相色谱 - 火焰离子化检测器进行测定。在优化条件下(溶液pH = 7.0,吸附剂:二苯甲酮,2%,分散剂溶剂:乙醇,500μL,离心机:以4000rpm离心3分钟),二嗪农在蒸馏水、湖水、废水和尿液样品中的方法检测限分别为0.2、0.3、0.3和0.3μgL(-1)。此外,蒸馏水、废水、湖水和尿液样品中的预浓缩因子分别为363.8、356.1、360.7和353.38。SA-DSPE成功用于尿液、湖水和废水样品中二嗪农的痕量监测。