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开发一种在室温下的新型真空浸渍法,将载银氧化铜纳米颗粒负载到活性炭上,用于抗菌应用。

Development of a new vacuum impregnation method at room atmosphere to produce silver-copper oxide nanoparticles on activated carbon for antibacterial applications.

机构信息

Department of Chemical Engineering, State University of Maringá, Maringá, Brazil.

出版信息

Environ Technol. 2020 Jul;41(18):2400-2411. doi: 10.1080/09593330.2019.1567607. Epub 2019 Jan 17.

DOI:10.1080/09593330.2019.1567607
PMID:30624152
Abstract

A new impregnation method was tested in this study. Without a stabilizing agent, silver and copper metallic compounds were directly impregnated on activated carbon using vacuum impregnation followed by drying at 100°C and vacuum impregnation followed by thermal decomposition at 350°C in an ambient atmosphere. The effect of thermal decomposition on the structural, morphological, and textural characteristics of the modified nanomaterials was analysed by Brunauer-Emmett-Teller, X-ray diffraction, scanning electron microscopy, energy dispersive X-Ray, and transmission electron microscopy. The characteristics of the produced materials were not altered. Silver and CuO nanoparticles were identified in the samples with average diameters ranging from 33.3-36.8 nm and 29.0-33.3 nm, respectively. The materials were tested for their antibacterial capacity and for their potential to leach Ag and Cu into water, thus analysing the effect of the thermal decomposition process on the impregnation process. The vacuum impregnation process followed by thermal decomposition produced the best results, with the resultant material reducing bacterial abundance by 5.31-6.61 log and leaching only low concentrations of metals into the water (Ag - 0.010-0.025 mg L and Cu - 0.270-0.361 mg L). Samples produced without the thermal decomposition step reached bacterial reductions of 1.86-1.97 log and yielded higher concentrations of metals in the water (Ag - 0.051-0.086 mg L and Cu - 0.819-0.894 mg L).

摘要

本研究测试了一种新的浸渍方法。在没有稳定剂的情况下,使用真空浸渍直接将银和铜金属化合物浸渍在活性炭上,然后在 100°C 下干燥,然后在环境气氛中在 350°C 下真空浸渍并进行热分解。通过 Brunauer-Emmett-Teller、X 射线衍射、扫描电子显微镜、能谱和透射电子显微镜分析了热分解对改性纳米材料结构、形态和结构特征的影响。所制备材料的特性没有改变。在平均粒径分别为 33.3-36.8nm 和 29.0-33.3nm 的样品中鉴定出银和氧化铜纳米颗粒。对所制备材料的抗菌能力及其将 Ag 和 Cu 浸出到水中的潜力进行了测试,从而分析了热分解过程对浸渍过程的影响。真空浸渍后进行热分解得到的结果最好,所得材料将细菌丰度降低了 5.31-6.61log,并且仅将低浓度的金属浸出到水中(Ag-0.010-0.025mg/L 和 Cu-0.270-0.361mg/L)。没有进行热分解步骤的样品达到了 1.86-1.97log 的细菌减少量,并在水中产生了更高浓度的金属(Ag-0.051-0.086mg/L 和 Cu-0.819-0.894mg/L)。

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