Biochemical Engineering Laboratory, Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, 247667, India.
Biochemical Engineering Laboratory, Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, 247667, India.
J Biotechnol. 2018 Mar 10;269:16-34. doi: 10.1016/j.jbiotec.2018.01.010. Epub 2018 Feb 2.
In recent years, substantial credibility in employing Solid-State Fermentation (SSF) technique has been witnessed owing to its numerous advantages over submerged fermentation (SmF). In spite of enormous advantages, true potential of SSF technology has not been fully realized at industrial scale. The lack of rational and scalable bioreactor designs backed by mathematical models and automated control system that could successfully address heterogeneity with respect to heat and mass, and also operate aseptically, remains the prime reason for it. As a result, there still exists vast scope in SSF bioreactor research and development to facilitate broad spectrum of biotechnological applications. The present article reviews state-of-the-art in SSF technology with focus on bioreactors that have been employed for bioprocess applications, in particular, enzyme production. Based on the mode of operation, bioreactors are divided into four categories with emphasis on design features, effect of operating conditions on productivity, applications and limitations. Selected modeling studies developed over the years, have been revised and presented in problem specific manner in order to address the limitations. Some interesting designs including few recent ones that have been proposed and/or employed at pilot and industrial levels are discussed in more detail.
近年来,由于固态发酵(SSF)技术相对于深层发酵(SmF)具有许多优势,因此在应用方面获得了相当大的可信度。尽管具有巨大的优势,但 SSF 技术的真正潜力尚未在工业规模上完全实现。缺乏合理的、可扩展的生物反应器设计,缺乏数学模型和自动化控制系统的支持,无法成功解决热量和质量方面的非均一性问题,也无法实现无菌操作,这仍然是主要原因。因此,在 SSF 生物反应器的研究和开发方面仍然有很大的空间,可以促进生物技术的广泛应用。本文综述了 SSF 技术的最新进展,重点介绍了用于生物过程应用的生物反应器,特别是酶生产。根据操作模式,生物反应器分为四类,重点介绍了设计特点、操作条件对生产力的影响、应用和局限性。多年来开发的一些选定的建模研究已经以特定问题的方式进行了修订和呈现,以解决局限性。还详细讨论了一些有趣的设计,包括一些最近提出并/或在中试和工业规模上使用的设计。