Xiong Yun, Shu Yifan, Deng Niyan, Luo Xiaogang, Liu Shengpeng, Wu Xiaoyu
Key Laboratory for Green Chemical Process of the Ministry of Education, Hubei Key Laboratory of Novel Reactor and Green Chemical Technology, Engineering Research Center of Phosphorus Resources Development and Utilization of Ministry of Education, Wuhan Institute of Technology, Wuhan 430073, China.
School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, Wuhan 430073, China.
Molecules. 2024 Sep 20;29(18):4465. doi: 10.3390/molecules29184465.
This study investigated the enhancement in bioethanol recovery from mixed matrix membranes (MMMs) by functionalizing zeolite framework-8 (ZIF-8) with imidazolate. This study focused on the separation of ethanol from low-concentration ethanol/water mixtures (typical post-fermentation concentrations of 5-10 wt%). Specifically, ZIF-8 was modified by the shell-ligand exchange reaction (SLER) with 5,6-dimethylbenzimidazole (DMBIM), resulting in ZIF-8-DMBIM particles with improved hydrophobicity, organophilicity, larger size, and adjustable pore size. These particles were incorporated into a PEBAX 2533 matrix to produce ZIF-8-DMBIM/PEBAX MMMs using a dilution blending method. The resulting membranes showed significant performance enhancement: 8 wt% ZIF-8-DMBIM loading achieved a total flux of 308 g/m·h and a separation factor of 16.03, which was a 36.8% increase in flux and 176.4% increase in separation factor compared with the original PEBAX membrane. In addition, performance remained stable during a 130 h cycling test. These improvements are attributed to the enhanced compatibility and dispersion of ZIF-8-DMBIM in the PEBAX matrix. In conclusion, the evaluation of nanofiller content, feed concentration, operating temperature, and membrane stability confirmed that ZIF-8-DMBIM/PEBAX MMM is ideal for ethanol recovery in primary bioethanol concentration processes.
本研究通过用咪唑化物对沸石骨架-8(ZIF-8)进行功能化,研究了混合基质膜(MMMs)中生物乙醇回收率的提高。本研究重点关注从低浓度乙醇/水混合物(典型的发酵后浓度为5-10 wt%)中分离乙醇。具体而言,通过与5,6-二甲基苯并咪唑(DMBIM)的壳-配体交换反应(SLER)对ZIF-8进行改性,得到了疏水性、亲有机性、尺寸更大且孔径可调节的ZIF-8-DMBIM颗粒。采用稀释共混法将这些颗粒掺入PEBAX 2533基质中,制备了ZIF-8-DMBIM/PEBAX MMMs。所得膜表现出显著的性能提升:8 wt%的ZIF-8-DMBIM负载量实现了308 g/m·h的总通量和16.03的分离因子,与原始PEBAX膜相比,通量提高了36.8%,分离因子提高了176.4%。此外,在130小时的循环测试中性能保持稳定。这些改进归因于ZIF-8-DMBIM在PEBAX基质中的相容性和分散性增强。总之,对纳米填料含量、进料浓度、操作温度和膜稳定性的评估证实,ZIF-8-DMBIM/PEBAX MMM对于初级生物乙醇浓缩过程中的乙醇回收是理想的。