微藻- zno - nps在纤维素酶改性后涤棉混纺废织物再利用中的应用

Osama M. Darwesh, Naser G. Al-Balakocy, Ahmed Ghanem, Ibrahim A. Matter
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摘要

摘要涤纶/棉(PET/C)混纺织物每天产生大量废弃物,如果不加以合理再利用,将造成经济损失和环境威胁。现代纺织废料回收技术致力于开发具有独特性能的织物材料,如生物活性或基于现代技术,特别是纳米生物技术的新型光学产品。本研究以杜氏藻水提物为原料合成氧化锌纳米颗粒(ZnO-NPs),经纤维素酶活化后固定在PET/C废织物上。采用高分辨率透射电子显微镜(HRTEM)、傅里叶变换红外光谱(FTIR)、x射线衍射分析(XRD)和扫描电子显微镜-能量色散x射线分析仪(SEM-EDAX)对制备的Dunaliella -ZnO-NPs (10-20 nm,呈球形)进行了表征,并检测了一些官能团,如CH、CO、nhh和CN(由于羧基、蛋白质和羟基的存在),揭示了ZnO-NPs的生物合成过程。结果表明,ZnO-NPS对正常人成纤维细胞株(BJ1)具有较强的抑菌作用和紫外线(UV)防护能力,且无细胞毒作用。另一方面,用纤维素酶处理PET/C织物废料,增强了生物合成纳米颗粒在其表面的固定化。负载Dunaliella -ZnO-NPs的改性PET/C织物具有抗菌和紫外线防护能力,使其成为生态友好且具有成本效益的众多应用的候选者。这些应用可以包括制造活性包装装置,废水处理装置和许多其他环境应用。图形抽象
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Application of microalgal-ZnO-NPs for reusing polyester/cotton blended fabric wastes after modification by cellulases enzymes
Abstract Polyester/cotton (PET/C) blended fabric wastes are produced daily in huge amounts, which constitutes an economic loss and an environmental threat if it is not reused appropriately. Modern textile waste recycling technologies put much effort into developing fabric materials with unique properties, such as bioactivity or new optical goods based on modern technologies, especially nano-biotechnology. In this study, zinc oxide nanoparticles (ZnO-NPs) were biosynthesized using the aqueous extract of Dunaliella sp. and immobilized on PET/C waste fabrics after enzymatically activated with cellulases. The produced Dunaliella -ZnO-NPs (10–20 nm with a spherical shape) were characterized by High-resolution transmission electron microscopy (HRTEM), Fourier-transform infrared spectroscopy (FTIR), X-Ray diffraction analysis (XRD), and Scanning electron microscopy-energy dispersive X-ray analyzer (SEM-EDAX), and some functional groups, such as CH, CO, NH, and CN (due to the presence of carboxyl, proteins and hydroxyl groups), were detected, revealing the biosynthesis of ZnO-NPs. The analysis showed that the resulting ZnO-NPS had potent antimicrobial effects, Ultraviolet (UV) protection capabilities, and no cytotoxic effects on the normal human fibroblast cell line (BJ1). On the other hand, enzymatic treatments of PET/C fabric waste with cellulases enhanced the immobilization of biosynthetic nanoparticles on their surface. Modified PET/C fabrics loaded with Dunaliella -ZnO-NPs showed antibacterial and UV protection capabilities making them an eco-friendly and cost-effective candidate for numerous applications. These applications can include the manufacture of active packaging devices, wastewater treatment units, and many other environmental applications. Graphical abstract
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