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首页> 外文期刊>Journal of Colloid and Interface Science >H2S adsorption onto Cu-Zn-Ni nanoparticles loaded activated carbon and Ni-Co nanoparticles loaded gamma-Al2O3: Optimization and adsorption isotherms
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H2S adsorption onto Cu-Zn-Ni nanoparticles loaded activated carbon and Ni-Co nanoparticles loaded gamma-Al2O3: Optimization and adsorption isotherms

机译:H2S吸附在Cu-Zn-Ni纳米粒子上加载的活性炭和Ni-Co纳米颗粒负载γ-Al2O3:优化和吸附等温线

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摘要

The nanocomposites based on copper, zinc and nickel were loaded on activated carbon (Cu-Zn-Ni-NPsAC) and cobalt and nickel nanoparticles was loaded on 7 -alumina (Ni-Co-NPs-gamma Al2O3) and applied for removal of hydrogen sulfide (H2S) from natural gas and their efficiency were compared. Cu-Zn-Ni/AC and Ni-Co/gamma-Al2O3 was characterized using different techniques such as energy -dispersive X-ray spectroscopy (EDX), X-ray diffraction (XRD) and field emission scanning electron microscopy (FE-SEM). The effects of variables such as amount of adsorbent, flow rate, temperature, pressure and volume of gas on H2S removal were examined and optimum values were found to be 0.3 g adsorbent, and flow rate of 0.15 Limin and 15 degrees C and 7 Psi for both adsorbent and also 5.5 and 6.5 L of sample by Cu-Zn-Ni/C and Co-Ni/gamma-Al2O3, respectively. Setting conditions at the above optimum conditions lead to achievement of maximum removal of H25 (94% and 91.6%) by Cu-Zn-Ni/AC and Co-Ni/gamma-Al2O3. The negative value of Delta G degrees and its numerical value confirm physisorption nature of adsorption. The experimental equilibrium data with high efficiency were explained and represented by Langmuir model for both adsorbents with the highest correlation coefficients. (C) 2016 Elsevier Inc. All rights reserved.
机译:基于铜,锌和镍的纳米复合材料加载活性炭(Cu-Zn-Ni-NPSAc)上,钴和镍纳米粒子在7- umina(Ni-Co-NPS-Gamma Al2O 3)上,并施用于除去氢气比较来自天然气的硫化物(H2S)及其效率。使用不同的技术,例如能量 - 平移X射线光谱(EDX),X射线衍射(XRD)和场发射扫描电子显微镜(Fe-SEM )。检测H 2 S去除对吸附剂,流速,温度,压力和气体量的变量的影响,并发现最佳值为0.3g吸附剂,流速为0.15利蛋白和15℃和7 psi Cu-Zn-Ni / C和Co-Ni /γ-Al2O3分别吸附剂和5.5和6.5L的样品。在上述最佳条件下设定条件导致Cu-Zn-Ni / Ac和Co-Ni / Gamma-Al2O3的最大去除H25(94%和91.6%)。 Delta G度的负值及其数值证实了吸附的理由性质。通过具有最高相关系数的吸附剂的Langmuir模型解释并表示具有高效率的实验性平衡数据。 (c)2016 Elsevier Inc.保留所有权利。

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