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首页> 外文期刊>Journal of Hazardous Materials >Modeling and simulations of the removal of formaldehyde using silver nano-particles attached to granular activated carbon
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Modeling and simulations of the removal of formaldehyde using silver nano-particles attached to granular activated carbon

机译:使用附着在颗粒活性炭上的银纳米颗粒去除甲醛的建模和模拟

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A combined reaction, consisting of granular activated carbon (GAC) adsorption and catalytic oxidation, has been proposed to improve the removal efficiencies of formaldehyde, one of the major indoor air pol lutants. In this study, silver nano-particles attached onto the surface of GAC (Ag-GAC) using the sputtering method were evaluated for the simultaneous catalytic oxidation and adsorption of formaldehyde. The evolution of CO_2 from the silver nano-particles indicated that formaldehyde was catalytically oxidized to its final product, with the oxidation kinetics expressed as pseudo-first order. In addition, a packed column test showed that the mass of formaldehyde removed by the Ag-GAC was 2.4 times higher than that by the virgin GAC at a gas retention time of 0.5 s. However, a BET analysis showed that the available surface area and micro-pore volume of the Ag-GAC were substantially decreased due to the deposition of the silver nano-particles. To simulate the performance of the Ag-GAC, the homogeneous surface diffusion model (HSDM), developed for the prediction of the GAC column adsorption, was modified to incorporate the catalytic oxidation taking place on the Ag-GAC surface. The modified HSDM demonstrated that numer ical simulations were consistent with the experimental data collected from the Ag-GAC column tests. The model predictions implied that the silver nano-particles deposited on the GAC reduced the adsorp tive capacity due to decreasing the available surface for the diffusion of formaldehyde into the GAC, but the overall mass of formaldehyde removed by the Ag-GAC was increased due to catalytic oxidation as a function of the ratio of the surface coverage by the nano-particles.
机译:提出了一种由颗粒状活性炭(GAC)吸附和催化氧化组成的联合反应,以提高甲醛的去除效率,甲醛是室内主要的空气污染物之一。在这项研究中,通过溅射法评估了附着在GAC(Ag-GAC)表面的银纳米粒子对甲醛的同时催化氧化和吸附作用。从银纳米颗粒中析出的CO_2表明甲醛被催化氧化为最终产物,氧化动力学表示为拟一级。此外,填充柱测试表明,在0.5 s的气体保留时间下,Ag-GAC去除的甲醛质量是纯GAC去除的甲醛质量的2.4倍。然而,BET分析表明,由于银纳米颗粒的沉积,Ag-GAC的可用表面积和微孔体积显着降低。为了模拟Ag-GAC的性能,对用于预测GAC柱吸附的均相表面扩散模型(HSDM)进行了修改,以合并在Ag-GAC表面上发生的催化氧化。改进的HSDM证明了数值模拟与从Ag-GAC柱测试中收集的实验数据是一致的。该模型预测表明,由于减少了甲醛扩散到GAC中的可用表面,因此沉积在GAC上的银纳米颗粒降低了吸附能力,但是由于Ag-GAC去除的甲醛总量增加了催化氧化与纳米颗粒表面覆盖率的关系。

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