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Platinum supported on reduced graphene oxide as a catalyst for the electrochemical hydrogenation of soybean oils

机译:铂金属氧化石墨烯作为大豆油电化学氢化的催化剂

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Platinum nanoparticles anchored over graphene nanocomposites (Pt/Gr) were synthesized and used for the investigation of the electrochemical hydrogenation of soybean oils. By exploiting Pt/Gr nanocomposites as cathode catalysts of a membrane electrode assembly, a promising solid polymer electrolyte (SPE) reactor was fabricated. The obtained Pt/Gr nanocomposites were characterized by transmission electron microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy, which can definitely show that Pt nanoparticles successfully formed on graphene and were well-distributed on the surface of graphene sheets. The further electrochemical characterizations demonstrated that Pt/Gr has undoubtedly higher electrocatalytic activity and stability compared to the commercial Vulcan XC-72 supported Pt nanoparticles; this outcome will lead to further application as a new electrode material in the SPE reactor. The trans fatty acid content of the obtained hydrogenated soybean oil (IV: 111.3 g I-2/100 g oil) using Pt/Gr as the cathode catalyst in the SPE reactor was only 1.53%. To achieve a similar IV, the usage of Pt was much less when graphene was selected as a catalyst carrier compared to Vulcan XC-72. The changes in the fatty acid components and the hydrogenated selectivity of octadecenoic acids were also discussed.
机译:合成锚固过石墨烯纳米复合材料(Pt / GR)的铂纳米颗粒,并用于研究大豆油的电化学氢化。通过利用Pt / GR纳米复合材料作为膜电极组件的阴极催化剂,制造了有希望的固体聚合物电解质(SPE)反应器。通过透射电子显微镜,X射线衍射和傅立叶变换红外光谱表征获得的PT / GR纳米复合材料,其绝对可以显示在石墨烯上成功形成的PT纳米颗粒,并在石墨烯片表面上分布得很好。与商业硫磺XC-72负载的Pt纳米颗粒相比,进一步的电化学表征证明PT / GR无疑具有更高的电催化活性和稳定性;该结果将导致进一步应用于SPE反应器中的新电极材料。使用Pt / GR作为SPE反应器中的阴极催化剂所得氢化大豆油(IV:111.3g I-2 / 100g油)的反式脂肪酸含量仅为1.53%。为了实现类似的IV,与硫磺XC-72相比,选择石墨烯作为催化剂载体时,Pt的用法较小。还讨论了脂肪酸组分的变化和十八烯酮酸的氢化选择性。

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