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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Silver nanoparticles as localized 'nano-heaters' under LED light irradiation to improve membrane performance
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Silver nanoparticles as localized 'nano-heaters' under LED light irradiation to improve membrane performance

机译:银纳米粒子在LED光照射下作为局部“纳米加热器”以改善膜性能

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摘要

The possibility of improving the performance of solvent resistant nanofiltration (SRNF) membranes by the strategy of localized heating has been demonstrated in earlier work. The localized heating was realized by the plasmonic heating effect of gold nanoparticles (NPs) through incorporation of these "nano-heaters" into the membrane matrix. Heat is released from gold NPs to the membrane matrix under argon laser irradiation. Improved fluxes by laser irradiation without significantly lowering selectivities were achieved. This present study aims at using cheaper silver nanoparticles (AgNPs) with a cheaper and energetically more efficient LED light as an alternative for gold NPs with a laser device. Silver NPs were incorporated into different polymeric membranes, as confirmed by TEM images and UV-Vis spectra. The plasmonic heating effect on the performance of AgNP containing membranes was investigated by a dead-end filtration cell coupled to a 400 nm LED light irradiation. The influences of feed, polymer type, and AgNP preparation routes on the silver NP containing membrane performances under LED light irradiation were studied. The results indicate that AgNPs and LED light can be good alternatives for gold NPs and a laser device, rendering the whole approach more energy efficient, cheaper and less complicated.
机译:在较早的工作中已经证明了通过局部加热策略改善​​耐溶剂纳米过滤(SRNF)膜性能的可能性。通过将这些“纳米加热器”结合到膜基质中,金纳米颗粒(NPs)的等离子加热效应实现了局部加热。在氩激光照射下,热量从金纳米颗粒释放到膜基质。在不显着降低选择性的情况下,通过激光辐照获得了改进的通量。本研究旨在使用便宜的银纳米颗粒(AgNPs)和更便宜,更节能的LED灯替代激光设备中的金NPs。如TEM图像和UV-Vis光谱所证实的,将银纳米颗粒掺入到不同的聚合物膜中。通过耦合至400 nm LED光辐照的死端过滤池研究了等离子体加热对含AgNP膜性能的影响。研究了进料,聚合物类型和AgNP的制备路线对LED光照射下含银NP膜性能的影响。结果表明,AgNP和LED灯可以作为金NP和激光设备的良好替代品,从而使整个方法更节能,更便宜且更简单。

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