Özel Mustafa Zafer, Clark James H, Matharu Avtar S
Department of Clinical, Pharmaceutical and Biological Sciences, School of Life and Medical Sciences, University of Hertfordshire, College Lane, Hatfield, UK.
Department of Chemistry, Green Chemistry Centre of Excellence, University of York, York, UK.
Turk J Chem. 2023 Nov 27;48(1):36-49. doi: 10.55730/1300-0527.3637. eCollection 2024.
A sustainable, bio-based, mesoporous material, Starbon A800, was explored for use as an adsorbent in solid phase extraction (SPE). A solution containing seven nitrosamines was first used as a standard to optimise conditions for extraction efficiency with Starbon A800. After optimising conditions, 25 compounds of varying polarity (terpenes, phenolics, pesticides, PAHs, amines, and nitrosamines) were extracted with SPE using either Starbon® A800, C18 or Porous Graphitic Carbon (PGC) as the adsorbent, for comparison purposes. At the same time, 3 different elution solvents (heptane, dichloromethane, and ethanol) were used for each type of adsorbent. Hansen solubility parameters can be used to choose an appropriate elution solvent for the selected SPE adsorbent. The best average SPE recoveries found for the 25 various compounds were 83%, 79%, and 65% using Starbon A800, PGC, and C18 adsorbents respectively and these had dichloromethane as the elution solvent. The identification and quantification of components was carried out using UV-visible spectroscopy, two-dimensional gas chromatography (GCxGC) with time of flight/mass spectrometry (TOF/MS) or a nitrogen chemiluminescence detector (NCD). The optimized method was successfully applied to extract volatile organic compounds from red wine and tap water using Starbon A800. Starbon A800 was shown to be a promising, low-cost, green, scalable, alternative adsorbent for the extraction of various types of organic compounds of a wide range of polarities using SPE.
一种可持续的、生物基的介孔材料Starbon A800被探索用作固相萃取(SPE)中的吸附剂。首先使用含有七种亚硝胺的溶液作为标准品,以优化使用Starbon A800进行萃取效率的条件。在优化条件后,为了进行比较,使用Starbon® A800、C18或多孔石墨化碳(PGC)作为吸附剂,通过SPE萃取25种不同极性的化合物(萜类、酚类、农药、多环芳烃、胺类和亚硝胺)。同时,针对每种类型的吸附剂使用3种不同的洗脱溶剂(庚烷、二氯甲烷和乙醇)。汉森溶解度参数可用于为选定的SPE吸附剂选择合适的洗脱溶剂。对于这25种不同化合物,使用Starbon A800、PGC和C18吸附剂时,发现最佳平均SPE回收率分别为83%、79%和65%,这些回收率对应的洗脱溶剂均为二氯甲烷。使用紫外可见光谱、带飞行时间/质谱(TOF/MS)的二维气相色谱(GCxGC)或氮化学发光检测器(NCD)对成分进行鉴定和定量。所优化的方法成功应用于使用Starbon A800从红酒和自来水中萃取挥发性有机化合物。结果表明,Starbon A800是一种有前景的、低成本、绿色、可扩展的替代吸附剂,可用于使用SPE萃取各种极性范围的有机化合物。