Chuetor Santi, Panakkal Elizabeth Jayex, Ruensodsai Thanagorn, Cheenkachorn Kraipat, Kirdponpattara Suchata, Cheng Yu-Shen, Sriariyanun Malinee
Department of Chemical Engineering, Faculty of Engineering, King Mongkut's University of Technology North Bangkok, Bangkok 10800, Thailand.
Department of Chemical and Process Engineering, The Sirindhorn International Thai-German Graduate School of Engineering, King Mongkut's University of Technology North Bangkok, Bangkok 10800,Thailand.
Bioengineering (Basel). 2022 Mar 11;9(3):115. doi: 10.3390/bioengineering9030115.
One of the major concerns for utilizing ionic liquid on an industrial scale is the cost involved in the production. Despite its proven pretreatment efficiency, expenses involved in its usage hinder its utilization. A better way to tackle this limitation could be overcome by studying the recyclability of ionic liquid. The current study has applied the Box-Behnken design (BBD) to optimize the pretreatment condition of rice straw through the usage of 1-ethyl-3-methylimidazolium acetate (EMIM-Ac) as an ionic liquid. The model predicted the operation condition with 5% solid loading at 128.4 °C for 71.83 min as an optimum pretreatment condition. Under the optimized pretreatment condition, the necessity of the best anti-solvent was evaluated among water, acetone methanol, and their combinations. The study revealed that pure methanol is the suitable choice of anti-solvent, enhancing the highest sugar yield. Recyclability of EMIM-Ac coupled with anti-solvent was conducted up to five recycles following the predicted pretreatment condition. Fermentation studies evaluated the efficacy of recycled EMIM-Ac for ethanol production with 89% more ethanol production than the untreated rice straw even after five recycles. This study demonstrates the potential of recycled ionic liquid in ethanol production, thereby reducing the production cost at the industrial level.
在工业规模上使用离子液体的一个主要问题是生产过程中的成本。尽管其预处理效率已得到证实,但其使用成本阻碍了它的应用。解决这一限制的更好方法可能是研究离子液体的可回收性。当前的研究应用了Box-Behnken设计(BBD),通过使用1-乙基-3-甲基咪唑醋酸盐(EMIM-Ac)作为离子液体来优化稻草的预处理条件。该模型预测,在128.4℃、固体负载量为5%的条件下操作71.83分钟为最佳预处理条件。在优化的预处理条件下,评估了水、丙酮、甲醇及其组合中最佳抗溶剂的必要性。研究表明,纯甲醇是合适的抗溶剂选择,能提高最高的糖产量。按照预测的预处理条件,对EMIM-Ac与抗溶剂的可回收性进行了多达五次的循环实验。发酵研究评估了循环使用的EMIM-Ac用于乙醇生产的效果,即使经过五次循环,其乙醇产量也比未处理的稻草高出89%。这项研究证明了循环离子液体在乙醇生产中的潜力,从而降低了工业水平的生产成本。