Vel Tech High Tech Dr. Rangarajan Dr. Sakunthala Engineering College, Chennai, India.
Methods Mol Biol. 2021;2290:3-21. doi: 10.1007/978-1-0716-1323-8_1.
Renewable biobutanol production is receiving more attention toward substituting fossil-based nonrenewable fuels. Biobutanol is recognized as the top most biofuel with extraordinary properties as compared with gasoline. The demand for biobutanol production is increasing enormously due to application in various industries as chemical substituent. Biobutanol production technology has attracted many researchers toward implementation of replacing cost-effective substrate and easy method to recover from the fermentation broth. Sugarcane bagasse, algal biomass, crude glycerol, and lignocellulosic biomass are potential cost-effective substrates which could replace consistent glucose-based substrates. The advantages and limitations of these substrates have been discussed in this chapter. Moreover, finding the integrated biobutanol recovery methods is an important factor parameter in production of biobutanol. This chapter also concentrated on possibilities and drawbacks of obtainable integrated biobutanol recovery methods. Thus, successful process involving cost-effective substrate and biobutanol recovery methods could help to implementation of biobutanol production industry. Overall, this chapter has endeavored to increase the viability of industrial production of biobutanol.
可再生生物丁醇的生产正受到越来越多的关注,以替代基于化石的不可再生燃料。与汽油相比,生物丁醇被认为是最优质的生物燃料,具有非凡的特性。由于在各个行业作为化学替代品的应用,对生物丁醇生产的需求正在大幅增长。生物丁醇生产技术吸引了许多研究人员致力于实施用具有成本效益的底物和从发酵液中易于回收的方法来替代。甘蔗渣、藻类生物质、粗甘油和木质纤维素生物质是有潜力的具有成本效益的底物,可以替代一致的基于葡萄糖的底物。本章讨论了这些底物的优缺点。此外,寻找综合的生物丁醇回收方法是生产生物丁醇的一个重要因素参数。本章还集中讨论了可获得的综合生物丁醇回收方法的可能性和缺点。因此,成功地涉及具有成本效益的底物和生物丁醇回收方法的过程可以帮助实施生物丁醇生产行业。总的来说,本章旨在提高生物丁醇工业生产的可行性。