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Kinetic study of glycerol oxidation network over Pt-Bi/C catalyst

机译:Pt-Bi / C催化剂上甘油氧化网络的动力学研究

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摘要

Identifying new uses for glycerol, a waste of biodiesel production from transesterification of vegetable oils, is of great current interest. Towards this end, catalytic oxidation of glycerol to produce the high-value chemical dihydroxyacetone (DHA) is a promising approach. The challenge, however, is the relatively complex reaction network. The kinetics of the complete glycerol oxidation network over Pt-Bi/C catalyst was investigated systematically in this study. Based on a detailed reaction mechanism including adsorp-tion/desorption and reaction steps on the catalyst surface, a kinetic model was developed. To overcome the difficulty in finding the global optimum in the model, the full complex network was decomposed into five progressively larger sub-networks with different intermediates as initial reactants. The corresponding reactions starting with these initial reactants were conducted and the collected data were used to fit the kinetic model for each sub-network. The experimental and calculated results were in good agreement and the kinetic parameters for each step were obtained. These results can be used to design and develop new appropriate catalysts with high stability, activity and selectivity for DHA. In fact, this approach is a powerful tool for the microkinetic study of other complex reaction networks as well. Based on the concentration of each component and rate expression of each reaction step, a simplified network was identified and studied. The parameters thus obtained can be used to develop reactor models which could be used to determine the optimum operating reaction conditions for maximizing the yield of desired product DHA. The effective conversion of glycerol to high value chemical will increase the profitability of biodiesel production, a promising renewable energy source.
机译:鉴定甘油的新用途,甘油是植物油酯交换反应产生的生物柴油生产的废物,目前引起人们极大的兴趣。为此,将甘油催化氧化以生产高价值的化学二羟基丙酮(DHA)是一种很有前途的方法。然而,挑战在于相对复杂的反应网络。在这项研究中系统地研究了在Pt-Bi / C催化剂上完整的甘油氧化网络的动力学。基于详细的反应机理,包括在催化剂表面的吸附/解吸和反应步骤,建立了动力学模型。为了克服在模型中寻找全局最优值的困难,将完整的复杂网络分解为五个逐渐扩大的子网络,这些子网络具有不同的中间体作为初始反应物。进行了从这些初始反应物开始的相应反应,并将收集到的数据用于拟合每个子网的动力学模型。实验和计算结果吻合良好,并获得了每个步骤的动力学参数。这些结果可用于设计和开发对DHA具有高稳定性,活性和选择性的新型合适催化剂。实际上,这种方法对于其他复杂反应网络的微动力学研究也是一种强大的工具。基于各组分的浓度和各反应步骤的速率表达,鉴定并研究了简化的网络。如此获得的参数可用于开发反应器模型,该模型可用于确定最佳操作反应条件,以使所需产物DHA的产率最大化。将甘油有效转化为高价值化学品将提高生物柴油生产的盈利能力,这是一种有前途的可再生能源。

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