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Superhydrophobic nanocarbon-based membrane with antibacterial characteristics

机译:基于超疏水的纳米碳基膜,具有抗菌特性

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To overcome the biofouling challenge which faces membrane water treatment processed, the novel superhydrophobic carbon nanomaterials impregnated on/powder activated carbon (CNMs/PAC) was utilized to successfully design prepare an antimicrobial membrane. The research was conducted following a systematic statistical design of experiments technique considering various parameters of composite membrane fabrication. The impact of these parameters of composite membrane on Staphylococcus aureus growth was investigated. The bacteria growth was analyzed through spectrophotometer and SEM. The effect of CNMs' hydrophobicity on the bacterial colonies revealed a decrease in the abundance of bacterial colonies and an alteration in structure with increasing the hydrophobicity. The results revealed that the optimum preparative conditions for carbon loading CNMs/PAC was 363.04 mg with a polymer concentration of 22.64 g/100 g, and a casting knife thickness of 133.91 mu m. These conditions have resulted in decreasing the number of bacteria colonies to about 7.56 CFU. Our results provided a strong evidence on the antibacterial effect and consequently on the antibiofouling potential of CNMs/PAC in membrane.
机译:为了克服所处理膜水处理的生物污垢挑战,利用浸渍在/粉末活性炭(CNMS / PAC)上的新型超疏水碳纳米材料(CNMS / PAC)来成功设计制备抗微生物膜。在考虑复合膜制造的各种参数的实验技术的系统统计设计之后进行该研究。研究了复合膜对金黄色葡萄球菌生长的影响。通过分光光度计和SEM分析细菌生长。 CNMS疏水性对细菌菌落的影响揭示了细菌菌落的丰度和结构改变随着疏水性的影响。结果表明,碳载荷CNMS / PAC的最佳制备条件为363.04mg,聚合物浓度为22.64g / 100g,铸造刀厚度为133.91μm。这些条件导致细菌菌落数减少至约7.56 cfu。我们的结果提供了有关抗菌效果的有力证据,从而对膜中CNMS / PAC的抗耦合潜力。

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