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Abstract
High-performance anion exchange chromatography coupled to pulsed amperometric detection (HPAEC-PAD) was used for developing a method for identifying and quantifying aldehydes in biomass hydrolyzates. This method was optimized to the requirements of HPAEC-PAD in order to allow for a simultaneous determination of aldehydes by respective Cannizzaro alcohols. To this end, sodium hydroxide concentration (0.1 to 5.0 mol/L), temperature (30 to 40 °C), and reaction time (0 to 24 h) were investigated for sufficient and reproducible disproportionation of the biomass-derived aldehydes. The optimized method for aldehyde disproportionation and subsequent measurement are 1 mol/L sodium hydroxide, 40 °C, and 1 h reaction time. The detection limits resulting from this method are lower than 68.55 mg/L and the sensitivity above 0.024 (nC min)/(mg/L) for 3,4-dimethoxybenzaldehyde. Linearity for aldehyde calibration always exceeded 0.98. Thus, HPAEC-PAD analysis allows for the quantification of biomass-derived compounds from all natural polymers and, therefore, it has exemplarily been used to quantify aldehyde concentration of beech wood, orange peel, and algae biomass hydrolyzates.
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; van Ohlen Maike 2 ; Jestel Tim 1 ; Herbst, Laura 1 ; Jmel Mohamed Amine 3 ; Smaali Issam 3 ; Spiess, Antje C 4 1 RWTH Aachen University, AVT-Enzyme Process Technology, Aachen, Germany (GRID:grid.1957.a) (ISNI:0000 0001 0728 696X)
2 RWTH Aachen University, Aachen, Germany (GRID:grid.1957.a) (ISNI:0000 0001 0728 696X)
3 Université de Carthage, INSAT, Laboratoire d’ingénierie des protéines et des molécules bioactives, Tunis Cedex, Tunisia (GRID:grid.419508.1) (ISNI:0000 0001 2295 3249)
4 RWTH Aachen University, AVT-Enzyme Process Technology, Aachen, Germany (GRID:grid.1957.a) (ISNI:0000 0001 0728 696X); TU Braunschweig, Institute for Biochemical Engineering (ibvt), Braunschweig, Germany (GRID:grid.6738.a) (ISNI:0000 0001 1090 0254)





