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Microbial Surfactants: The Next Generation Multifunctional Biomolecules for Applications in the Petroleum Industry and Its Associated Environmental Remediation

机译:微生物表面活性剂:下一代多功能生物分子在石油工业中的应用及其相关的环境修复

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摘要

Surfactants are a broad category of tensio-active biomolecules with multifunctional properties applications in diverse industrial sectors and processes. Surfactants are produced synthetically and biologically. The biologically derived surfactants (biosurfactants) are produced from microorganisms, with , , and as dominant species. Rhamnolipids, sophorolipids, mannosylerithritol lipids, surfactin, and emulsan are well known in terms of their biotechnological applications. Biosurfactants can compete with synthetic surfactants in terms of performance, with established advantages over synthetic ones, including eco-friendliness, biodegradability, low toxicity, and stability over a wide variability of environmental factors. However, at present, synthetic surfactants are a preferred option in different industrial applications because of their availability in commercial quantities, unlike biosurfactants. The usage of synthetic surfactants introduces new species of recalcitrant pollutants into the environment and leads to undesired results when a wrong selection of surfactants is made. Substituting synthetic surfactants with biosurfactants resolves these drawbacks, thus interest has been intensified in biosurfactant applications in a wide range of industries hitherto considered as experimental fields. This review, therefore, intends to offer an overview of diverse applications in which biosurfactants have been found to be useful, with emphases on petroleum biotechnology, environmental remediation, and the agriculture sector. The application of biosurfactants in these settings would lead to industrial growth and environmental sustainability.
机译:表面活性剂是具有多种特性的张力活性生物分子的广泛类别,其在不同的工业部门和过程中得到应用。表面活性剂是合成和生物学生产的。生物衍生的表面活性剂(生物表面活性剂)是由微生物产生的, , 和 作为优势物种。就其生物技术应用而言,鼠李糖脂,槐糖脂,甘露糖苷脂,表面活性素和乳油是众所周知的。生物表面活性剂可以在性能上与合成表面活性剂竞争,与合成表面活性剂相比具有确定的优势,包括生态友好性,生物降解性,低毒性以及在各种环境因素中均具有稳定性。但是,目前,由于与生物表面活性剂不同,合成表面活性剂在商业上可获得大量应用,因为它们在商业规模上是可用的。合成表面活性剂的使用将新的难降解污染物引入环境,并在错误选择表面活性剂时导致不良结果。用生物表面活性剂代替合成表面活性剂解决了这些缺点,因此,在迄今被认为是实验领域的许多行业中,人们对生物表面活性剂的应用越来越感兴趣。因此,本综述旨在概述已发现生物表面活性剂有用的各种应用,重点是石油生物技术,环境修复和农业领域。在这些环境中使用生物表面活性剂将导致工业增长和环境可持续性。

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