Department of Chemical Engineering and Technology, Indian Institute of Technology (BHU), Varanasi, 221005, India.
Department of Chemical Engineering and Technology, Indian Institute of Technology (BHU), Varanasi, 221005, India.
Environ Pollut. 2021 Oct 15;287:117370. doi: 10.1016/j.envpol.2021.117370. Epub 2021 May 15.
Fruit wastes can be imperative to elevate economical biomass to biofuels production process at pilot scale. Because of the renewable features, huge availability, having low lignin content organic nature and low cost; these wastes can be of much interest for cellulase enzyme production. This review provides recent advances on the fungal cellulase production using fruit wastes as a potential substrate. Also, the availability of fruit wastes, generation and processing data and their potential applications for cellulase enzyme production have been discussed. Several aspects, including cellulase and its function, solid-state fermentation, process parameters, microbial source, and the application of enzyme in biofuels industries have also been discussed. Further, emphasis has been made on various bottlenecks and feasible approaches such as use of nanomaterials, co-culture, molecular techniques, genetic engineering, and cost economy analysis to develop a low-cost based comprehensive technology for viable production of cellulase and its application in biofuels production technology.
水果废弃物可以作为提升经济生物质到生物燃料生产过程中中试规模的必要条件。由于其可再生性、大量可用性、低木质素含量的有机特性和低成本;这些废弃物对于纤维素酶生产来说具有很大的吸引力。本综述提供了使用水果废弃物作为潜在基质生产真菌纤维素酶的最新进展。此外,还讨论了水果废弃物的可用性、产生和加工数据及其在纤维素酶生产中的潜在应用。还讨论了几个方面,包括纤维素酶及其功能、固态发酵、工艺参数、微生物来源,以及酶在生物燃料工业中的应用。此外,还强调了各种瓶颈和可行的方法,如使用纳米材料、共培养、分子技术、遗传工程和成本经济分析,以开发一种基于低成本的综合技术,用于生产可行的纤维素酶及其在生物燃料生产技术中的应用。