Recent advance of biofilm mediated polycyclic aromatic hydrocarbons (PAHs) degradation

R. Guo
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Abstract

Polycyclic aromatic hydrocarbons (PAHs) has shown threat to ecosystem and human being due to their mutagenicity and carcinogenicity, and worldwide concern for PAHs degradation has increased in the past decades. Biofilm is proved to be more efficient than planktonic cells in PAHs degradation process, due to their high tolerance to harsh environments and regulation mechanisms. Therefore, biofilm, as an eco-friendly and efficient method, has been widely and successfully used for PAHs degradation. This review discussed biofilm’s composition and formation, mechanism of biofilm-mediates PAHs degradation. Furthermore, the main factors influencing biofilm-mediated PAHs degradation are described, these factors can affect PAHs degradation by influencing metabolic pathway and/or biofilm growth. Physical factors, like pH and temperature, are directly influencing microorganisms’ activity, while nutrient supplements and bioavailability also play critical role in the degradation process. The current applications of biofilm-mediates PAHs degradation are also reviewed, including various biofilm reactors and in-situ methods. However, there are some problems that needs to be addressed for large-scale application of biofilm, such as limited research conditions. Overall, this article reviews biofilm-mediated PAHs degradation in many aspects, and provides some ideas of future research direction.
生物膜介导的多环芳烃降解研究进展
摘要多环芳烃(PAHs)具有致突变性和致癌性,对生态系统和人类构成威胁,近几十年来,多环芳烃的降解日益受到世界各国的关注。生物膜具有较强的环境耐受性和调控机制,在多环芳烃的降解过程中比浮游细胞效率更高。因此,生物膜作为一种环保高效的降解多环芳烃的方法,已经得到了广泛而成功的应用。本文综述了生物膜的组成、形成、生物膜介导多环芳烃降解的机理。进一步阐述了影响生物膜介导PAHs降解的主要因素,这些因素可以通过影响代谢途径和/或生物膜生长来影响PAHs的降解。pH和温度等物理因素直接影响微生物的活性,而营养补充剂和生物利用度在降解过程中也起着至关重要的作用。综述了生物膜介质降解多环芳烃的应用现状,包括各种生物膜反应器和原位法。然而,生物膜的大规模应用还需要解决一些问题,如研究条件的限制。综上所述,本文从多个方面综述了生物膜介导的多环芳烃降解,并对今后的研究方向提出了一些设想。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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