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Pragmatic Treatment Strategies for Polyaromatic Hydrocarbon Remediation and Anti-biofouling from Surfaces Using Nano-enzymes: a Review

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SPRINGER
DOI: 10.1007/s12010-022-03848-1

关键词

Antifouling; Biofilm; Bioremediation; Microbial degradation; Nano-enzyme; Polyaromatic hydrocarbon

资金

  1. Department of Biotechnology, School of Bioengineering, SRM Institute of Science and Technology, Kattankulathur
  2. Department of Biotechnology (DBT), New Delhi [BT/PR31154/PBD/26/762/2019]

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This article discusses the potential remediation of two important environmental pollutants using microbial-derived nano-enzymes. Polyaromatic hydrocarbons (PAHs) are major industrial contaminants due to their widespread occurrence, toxicity, and bioaccumulation. Biofouling caused by biofilm-forming organisms has significant economic and environmental consequences, especially in marine vessels where it leads to increased hydrodynamic drag and reduced ship speed.
In this review, two important environmental pollutants have been considered for its potential remediation using microbial-derived nano-enzymes. Firstly, polyaromatic hydrocarbons (PAHs) are one of the major industrial contaminants in the environment due to their ubiquitous occurrence, toxicity, and proclivity for bioaccumulation. Secondly, biofouling due to biofilm-forming organisms that impact tremendous economic and environmental consequences in many industries, especially marine vessels where it causes an increase in hydrodynamic drag, which results in a loss of ship speed at constant power or a power increase to maintain the same speed with higher fuel consumption and emissions into the atmosphere, particularly Green House Gases (GHGs). Among the remediation strategies, biological routes are found to be promising, efficient, and sustainable. Natural ligninolytic enzymes such as MnP, LiP, laccase, peroxidases, and polysaccharide and protein degradative enzymes are found to be highly efficient for PAH degradation and antifouling respectively. However, large-scale usage of these enzymes is difficult due to various reasons like their poor stability, adaptation, and high-cost production of these enzymes. In recent years, the use of nanoparticles, particularly nano-enzymes, is found to be an innovative and synergistic approach to detoxify contaminated areas with concomitant maintenance of enzyme stability.

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