Department of Microbiology and Biotechnology, University School of Sciences, Gujarat University, Ahmedabad 380009, India.
Department of Microbiology, Christ College, Vidya Niketan, Rajkot 360005, India.
Bioresour Technol. 2022 Oct;361:127738. doi: 10.1016/j.biortech.2022.127738. Epub 2022 Aug 5.
The novel and greener approach toward the co-production of hydrolytic enzymes in a single-cultivation medium with inexpensive substrates can bring down the production costs. Likewise, the natural and industrial organic biomass/solid are all nutritionally rich substrates waiting for free use in industries such as food, biofuel, etc. Valorization must broaden its applications in industries and households with a step towards a sustainable environment. The biofuel approach can be projected as one of the most promising deputations to meet future energy demands, in reduction of the environmental pollution due to excessive fossil fuel consumption. The present review highlights the multifaceted stature of microbial enzymes in this direction and possible implications mainly in the food industry and biofuel with the global impact of similar bio-based industries. In this review, design scale-up, fermentation cost, energy needs,and agro-food waste management have been meticulously delineated.
新型且环保的方法可以在单一培养介质中利用廉价底物共同生产水解酶,从而降低生产成本。同样,天然和工业有机生物质/固体都是营养丰富的底物,可以在食品、生物燃料等行业免费使用。增值必须拓宽其在工业和家庭中的应用,迈向可持续环境的一步。生物燃料方法可以被视为满足未来能源需求的最有前途的方案之一,减少因过度消耗化石燃料而造成的环境污染。本综述强调了微生物酶在这方面的多方面地位,以及在食品工业和生物燃料方面的可能影响,以及类似基于生物的产业的全球影响。在本综述中,详细描述了设计放大、发酵成本、能源需求和农业食品废物管理。