School of Biomedical Sciences, University of Ulster, Coleraine BT52 1SA, UK.
Department of Biotechnology, Metropolitan Autonomous University-Iztapalapa, Av. San Rafael Atlixco 186, Col. Vicentina, Del. Iztapalapa, 09340 Mexico City, Mexico.
Bioresour Technol. 2021 Jan;320(Pt A):124222. doi: 10.1016/j.biortech.2020.124222. Epub 2020 Oct 24.
Surfactants are multipurpose products found in most sectors of contemporary industry. Their large-scale manufacturing has been mainly carried out using traditional chemical processes. Some of the chemical species involved in their production are considered hazardous and some industrial processes employing them categorised as "having potential negative impact on the environment". Biological surfactants have therefore been generally accepted worldwide as suitable sustainable greener alternatives. Biosurfactants exhibit the same functionalities of synthetic analogues while having the ability to synergize with other molecules improving performances; this strengthens the possibility of reaching different markets via innovative formulations. Recently, their use was suggested to help combat Covid-19. In this review, an analysis of recent bibliography is presented with descriptions, statistics, classifications, applications, advantages, and challenges; evincing the reasons why biosurfactants can be considered as the chemical specialities of the future. Finally, the uses of the solid-state fermentation as a production technology for biosurfactants is presented.
表面活性剂是在当代工业的大多数领域都能发现的多用途产品。它们的大规模生产主要是通过传统的化学工艺进行的。其生产过程中涉及的一些化学物质被认为是危险的,而一些使用它们的工业过程被归类为“对环境有潜在负面影响”。因此,生物表面活性剂已被全球广泛接受为合适的可持续绿色替代品。生物表面活性剂表现出与合成类似物相同的功能,同时具有与其他分子协同增效的能力,从而提高性能;这增加了通过创新配方进入不同市场的可能性。最近,有人建议使用它们来帮助对抗新冠病毒。在这篇综述中,对最近的文献进行了分析,包括描述、统计、分类、应用、优点和挑战;证明了为什么生物表面活性剂可以被视为未来的化学专业产品。最后,还介绍了固态发酵作为生物表面活性剂生产技术的应用。