Park Chanhun, Nam Hee-Geun, Lee Ki Bong, Mun Sungyong
Department of Chemical Engineering, Hanyang University, Seoul 133-791, South Korea.
Department of Chemical and Biological Engineering, Korea University, Seoul 136-713, South Korea.
J Chromatogr A. 2014 Oct 24;1365:106-14. doi: 10.1016/j.chroma.2014.09.005. Epub 2014 Sep 16.
The economically-efficient separation of formic acid from acetic acid and succinic acid has been a key issue in the production of formic acid with the Actinobacillus bacteria fermentation. To address this issue, an optimal three-zone simulated moving bed (SMB) chromatography for continuous separation of formic acid from acetic acid and succinic acid was developed in this study. As a first step for this task, the adsorption isotherm and mass-transfer parameters of each organic acid on the qualified adsorbent (Amberchrom-CG300C) were determined through a series of multiple frontal experiments. The determined parameters were then used in optimizing the SMB process for the considered separation. During such optimization, the additional investigation for selecting a proper SMB port configuration, which could be more advantageous for attaining better process performances, was carried out between two possible configurations. It was found that if the properly selected port configuration was adopted in the SMB of interest, the throughout and the formic-acid product concentration could be increased by 82% and 181% respectively. Finally, the optimized SMB process based on the properly selected port configuration was tested experimentally using a self-assembled SMB unit with three zones. The SMB experimental results and the relevant computer simulation verified that the developed process in this study was successful in continuous recovery of formic acid from a ternary organic-acid mixture of interest with high throughput, high purity, high yield, and high product concentration.
在利用放线杆菌发酵生产甲酸的过程中,从乙酸和琥珀酸中经济高效地分离出甲酸一直是个关键问题。为解决这一问题,本研究开发了一种用于从乙酸和琥珀酸中连续分离甲酸的优化三区模拟移动床(SMB)色谱法。作为此项任务的第一步,通过一系列多前沿实验测定了各有机酸在合格吸附剂(Amberchrom-CG300C)上的吸附等温线和传质参数。然后将所测定的参数用于优化所考虑分离过程的模拟移动床工艺。在这种优化过程中,在两种可能的配置之间进行了额外的研究,以选择一种更有利于实现更好工艺性能的合适模拟移动床端口配置。结果发现,如果在所关注的模拟移动床中采用适当选择的端口配置,通量和甲酸产物浓度可分别提高82%和181%。最后,使用一个自组装的三区模拟移动床装置对基于适当选择端口配置的优化模拟移动床工艺进行了实验测试。模拟移动床实验结果及相关计算机模拟验证了本研究中所开发的工艺成功地从所关注的三元有机酸混合物中连续回收了甲酸,且具有高通量、高纯度、高收率和高产物浓度的特点。