Turkey Tail, Yun Zhi · 2024 · Journal Article
High relevanceNew insights in the biodegradation of high-cyclic polycyclic aromatic hydrocarbons with crude enzymes of Trametes versicolor.
Trametes versicolor
Key points
- High-cyclic polycyclic aromatic hydrocarbons (PAHs), with complex fused aromatic structures, are widespread, refractory and harmful in soil, but the current remediation technologies for high-cyclic PAHs are often inefficient and costly
- This study focused on the biodegradation process of high-cyclic benzo[a]pyrene by Trametes versicolor crude enzymes
- Through the actual degradation and degradation kinetics, the degradation efficiency of PAHs decreased with the increase of aromatic rings
- And the degradation conditions (temperature, pH, Cu 2+ concentration, mediator) were systematically optimised
- The optimum degradation conditions (1.5 mM Cu 2+, 28℃ and pH 6) showed significant degradation efficiency for the low and medium concentrations of benzo[a]pyrene
- Collectively, these results showed the high-cyclic PAHs degradation potential of Trametes versicolor crude enzymes, and provided references to evaluate applicable prospects of white rot fungus crude enzymes in PAHs-contaminated soils
Metadata-grounded summary
Citation abstract
High-cyclic polycyclic aromatic hydrocarbons (PAHs), with complex fused aromatic structures, are widespread, refractory and harmful in soil, but the current remediation technologies for high-cyclic PAHs are often inefficient and costly. This study focused on the biodegradation process of high-cyclic benzo[a]pyrene by Trametes versicolor crude enzymes. The crude enzymes exhibited high laccase activity (22112 U/L) and benzo[a]pyrene degradation efficiency (42.21%) within a short reaction time. Through the actual degradation and degradation kinetics, the degradation efficiency of PAHs decreased with the increase of aromatic rings. And the degradation conditions (temperature, pH, Cu 2+ concentration, mediator) were systematically optimised. The optimum degradation conditions (1.5 mM Cu 2+, 28℃ and pH 6) showed significant degradation efficiency for the low and medium concentrations of benzo[a]pyrene. In addition, complete degradation of benzo[a]pyrene could be achieved using only 0.2 mM of HBT mediator compared with crude enzymes alone. Collectively, these results showed the high-cyclic PAHs degradation potential of Trametes versicolor crude enzymes, and provided references to evaluate applicable prospects of white rot fungus crude enzymes in PAHs-contaminated soils.
Citation
Li Y, Zhao H, Wang L, Bai Y, Tang T, Liang H, et al. (2024). New insights in the biodegradation of high-cyclic polycyclic aromatic hydrocarbons with crude enzymes of Trametes versicolor. Environmental technology https://doi.org/10.1080/09593330.2023.2169639 PMID: 36647685
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