Cristiana Gomes, Ana M Ribeiro, Alírio E Rodrigues, Alexandre F P Ferreira
This work evaluated the feasibility of the simulated moving bed (SMB) technology to fractionate volatile fatty acids produced through wastewater acidogenic fermentation. A lab-scale SMB unit equipped with 6 columns (FlexSMB), each packed with a nonfunctionalized resin (Amberlite XAD-4), was used to separate a binary solution of acetic and propanoic acids, for proof of concept. SMB operating conditions were first determined by building the separation region for a limit purity of 95% in both extract and raffinate streams, and a 1-2-2-1 column configuration. The process accomplished the separation of acetic and propanoic acids in the raffinate and extract streams, with purities of 97.8% and 100.0%, and recoveries of 100.0% and 97.8%, respectively. Productivities reached 2.93 and 2.81 mmol·gads -1.day-1 in the raffinate and extract streams, respectively. An eluent consumption of 0.075 L·mmol-1 was attained. The mathematical model proposed accurately described the experimental data. Overall, SMB technology showed strong potential for efficient VFA fractionation.