Toraman Hilal E, Franz Kristina, Ronsse Frederik, Van Geem Kevin M, Marin Guy B
Ghent University, Laboratory for Chemical Technology, Technologiepark 914, 9052 Ghent, Belgium.
Ghent University, Department of Biosystems Engineering, Coupure Links 653, 9000 Ghent, Belgium.
J Chromatogr A. 2016 Aug 19;1460:135-46. doi: 10.1016/j.chroma.2016.07.009. Epub 2016 Jul 6.
Insight in the composition of the algae derived bio-oils is crucial for the development of efficient conversion processes and better upgrading strategies for microalgae. Comprehensive two-dimensional gas chromatography (GC×GC) coupled to nitrogen chemiluminescence detector (NCD) and time-of-flight mass spectrometer (TOF-MS) allows to obtain the detailed quantitative composition of the nitrogen containing compounds in the aqueous and the organic fraction of fast pyrolysis bio-oils from microalgae. Normal phase (apolar×mid-polar) and reverse phase column (polar×apolar) combination are investigated to optimize the separation of the detected nitrogen containing compounds. The reverse phase column combination gives the most detailed information in terms of the nitrogen containing compounds. The combined information from the GC×GC-TOF-MS (qualitative) and GC×GC-NCD (quantitative) with the use of a well-chosen internal standard, i.e. caprolactam, enables the identification and quantification of nitrogen containing compounds belonging to 13 different classes: amines, imidazoles, amides, imides, nitriles, pyrazines, pyridines, indoles, pyrazoles, pyrimidines, quinolines, pyrimidinediones and other nitrogen containing compounds which were not assigned to a specific class. The aqueous fraction mostly consists of amines (4.0wt%) and imidazoles (2.8wt%) corresponding to approximately 80wt% of the total identified nitrogen containing compounds. On the other hand, the organic fraction shows a more diverse distribution of nitrogen containing compounds with the majority of the compounds quantified as amides (3.0wt%), indoles (2.0wt%), amines (1.7wt%) and imides (1.3wt%) corresponding to approximately 65wt% of the total identified nitrogen containing compounds.
深入了解藻类衍生生物油的组成对于开发高效的转化工艺和更好的微藻升级策略至关重要。综合二维气相色谱(GC×GC)与氮化学发光检测器(NCD)和飞行时间质谱仪(TOF-MS)联用,能够获得微藻快速热解生物油水相和有机相中含氮化合物的详细定量组成。研究了正相(非极性×中极性)和反相柱(极性×非极性)组合,以优化检测到的含氮化合物的分离。就含氮化合物而言,反相柱组合提供了最详细的信息。通过使用精心选择的内标物己内酰胺,将GC×GC-TOF-MS(定性)和GC×GC-NCD(定量)的信息相结合,能够鉴定和定量属于13个不同类别的含氮化合物:胺类、咪唑类、酰胺类、酰亚胺类、腈类、吡嗪类、吡啶类、吲哚类、吡唑类、嘧啶类、喹啉类、嘧啶二酮类以及其他未归为特定类别的含氮化合物。水相中主要由胺类(4.0wt%)和咪唑类(2.8wt%)组成,约占已鉴定出的含氮化合物总量的80wt%。另一方面,有机相中含氮化合物的分布更为多样,大多数化合物定量为酰胺类(3.0wt%)、吲哚类(2.0wt%)、胺类(1.7wt%)和酰亚胺类(1.3wt%),约占已鉴定出的含氮化合物总量的65wt%。