研究目的
To explore the protection mechanisms of periphytic biofilm against exposure to photocatalytic nanoparticles (PNPs), including their distribution, influence on biofilm, and defense strategies.
研究成果
Periphytic biofilm employs enhanced EPS production and community composition changes as key protection mechanisms against PNP exposure, mitigating ROS-induced stress and maintaining growth. This insight supports the potential for combining photocatalytic and biological processes in environmental applications, though further research is needed on functional maintenance under stress.
研究不足
The study focused on specific PNPs (CdS, TiO2, Fe2O3) and a model biofilm; results may not generalize to other nanoparticles or microbial communities. The experimental conditions (e.g., light irradiation, concentration ranges) might not fully represent natural environments. Potential optimization areas include longer exposure times and varied environmental factors.
1:Experimental Design and Method Selection:
Periphytic biofilm was exposed to CdS, TiO2, and Fe2O3 PNPs under Xenon lamp irradiation to assess toxic effects and protection mechanisms. Methods included biomass measurement, chlorophyll content analysis, EPS extraction, ROS detection, enzyme activity assays, and community composition analysis via high-throughput sequencing.
2:Sample Selection and Data Sources:
Periphytic biofilm originated from Xuanwu Lake, Nanjing, China, and was cultured in WC medium. PNPs were purchased from Aladdin, China.
3:List of Experimental Equipment and Materials:
Equipment included ICP-MS (7700x-JP12502215, Agilent Technologies), ESR spectrometer (EMX 10/12, Bruker), TEM (Zeiss 900, Carl Zeiss), Zetasizer (90PLUS PALS, NanoBrook), XRD (LabX, XRD-6100), SEM (JEOL), and UV lamp (UVC15W/T8, CREATOR). Materials included PNPs, WC medium, and standard laboratory reagents.
4:Experimental Procedures and Operational Workflow:
Biofilm was exposed to PNP suspensions for 7 days under light-dark cycles. Post-exposure, samples were analyzed for biomass, chlorophyll, EPS, ROS, enzyme activities, and microbial diversity. EPS was extracted using heat and formaldehyde methods.
5:Data Analysis Methods:
Statistical analyses included t-tests, PCA, and CCA using R software and Origin 9.0 for visualization.
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