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A Study on Toxic Acidic Vapor Removal Behaviors of Continuously Nanostructured Copper/Nickel-Coated Nanoporous Carbons

机译:连续纳米结构的铜/镍包覆纳米多孔碳的有毒酸性蒸汽去除行为的研究

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Nanostructured copper (Cu)ickel- (Ni-) coated nanoporous carbon sheets (NCS) were prepared to improve the toxic acidic vapor (hydrogen chloride, HCl) removal efficiency of NCS using a continuous bimetal electroplating method at various metal content ratios. The surface morphology and nanostructure of Cu/Ni-NCS were observed by scanning electron microscopy and X-ray diffraction, respectively. N2/77 K adsorption isotherms were investigated using the Brunauer-Emmett-Teller equation. HCl vapor removal efficiency was confirmed using two types of detection techniques: a gas detecting tube for low concentrations and gas chromatography for high concentrations. HCl removal efficiency was improved mainly in the copresence of nanostructured Cu/Ni clusters compared to the efficiencies of the as-received and single-metal-plated NCS. In particular, the removal efficiency of Cu/Ni-3 was increased by 270% compared to that of as-received sample, but Cu/Ni-5 showed lower efficiency than Cu/Ni-3, indicating that suitable metal composition on NCS can accelerate HCl removal behaviors of the NCS.
机译:使用连续双金属电镀方法在各种金属含量比率下,制备了纳米结构的铜(Cu)/镍-(Ni-)涂层纳米多孔碳板(NCS),以提高NCS的有毒酸性蒸汽(氯化氢,HCl)去除效率。通过扫描电子显微镜和X射线衍射分别观察到Cu / Ni-NCS的表面形态和纳米结构。使用Brunauer-Emmett-Teller方程研究了N2 / 77 K吸附等温线。使用两种检测技术确认了HCl蒸气去除效率:低浓度的气体检测管和高浓度的气相色谱。与原样和单金属镀NCS的效率相比,主要是在纳米结构的Cu / Ni团簇的共存下提高了HCl的去除效率。尤其是,与原样相比,Cu / Ni-3的去除效率提高了270%,但是Cu / Ni-5的去除效率比Cu / Ni-3的去除率低,这表明在NCS上合适的金属成分可以加速NCS的HCl去除行为。

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