Mulligan Catherine N
Concordia Institute of Water, Energy and Sustainable Systems, Concordia University, Montreal, QC, Canada.
Front Bioeng Biotechnol. 2021 Mar 15;9:635196. doi: 10.3389/fbioe.2021.635196. eCollection 2021.
Selection of the most appropriate remediation technology must coincide with the environmental characteristics of the site. The risk to human health and the environment at the site must be reduced, and not be transferred to another site. Biosurfactants have the potential as remediation agents due to their biodegradability, low toxicity, and effectiveness. Selection of biosurfactants should be based on pollutant characteristics and properties, treatment capacity, costs, regulatory requirements, and time constraints. Moreover, understanding of the mechanisms of interaction between biosurfactants and contaminants can assist in selection of the appropriate biosurfactants for sustainable remediation. Enhanced sustainability of the remediation process by biosurfactants can be achieved through the use of renewable or waste substrates, production of biosurfactants, and greener production and recovery processes for biosurfactants. Future research needs are identified.
选择最合适的修复技术必须与场地的环境特征相契合。必须降低场地对人类健康和环境的风险,而不能将其转移至其他场地。生物表面活性剂因其可生物降解性、低毒性和有效性而具有作为修复剂的潜力。生物表面活性剂的选择应基于污染物的特性和性质、处理能力、成本、监管要求以及时间限制。此外,了解生物表面活性剂与污染物之间的相互作用机制有助于选择合适的生物表面活性剂以实现可持续修复。通过使用可再生或废弃底物、生产生物表面活性剂以及采用更环保的生物表面活性剂生产和回收工艺,可以实现生物表面活性剂修复过程更高的可持续性。确定了未来的研究需求。