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首页> 外文期刊>Brazilian journal of chemical engineering >APPLICATION OF COMPUTATIONAL CHEMISTRY METHODS TO OBTAIN THERMODYNAMIC DATA FOR HYDROGEN PRODUCTION FROM LIQUEFIED PETROLEUM GAS
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APPLICATION OF COMPUTATIONAL CHEMISTRY METHODS TO OBTAIN THERMODYNAMIC DATA FOR HYDROGEN PRODUCTION FROM LIQUEFIED PETROLEUM GAS

机译:计算化学方法在获取液化石油气制氢热力学数据中的应用

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The objective of this study was to estimate thermodynamic data, such as standard enthalpy, entropy and Gibbs free energy changes of reaction and, consequently, chemical equilibrium constants, for a reaction system describing the hydrogen production from Liquefied Petroleum Gas (LPG). The acquisition of those properties was made using computational chemistry methods and the results were compared with experimental data reported in the literature. The reaction system of steam reforming of LPG was reported as a set of seven independent reactions involving the chemical species n-C+Hio, C3H8, C2H6, C2H4, CH4, CO2, CO, H2O, H2 and solid carbon. Six computational approaches were used: Density Functional Theory (DFT) employing Becke's three parameter hybrid exchange functional, and the Lee-Yang-Parr correlation functional (B3LYP) using the 6-31G++(d,p) basis set and the composite methods CBS-QB3, Gaussian-1 (Gl), Gaussian-2 (G2), Gaussian-3 (G3) and Gaussian-4 (G4). Mole fractions of the system components were also determined between 873.15 and 1173.15 K, at 1 atm and a feed with a stoichiometric amount of water. Results showed that the hybrid functional B3LYP/6-31G++(d,p), G3 and G4 theories were the most appropriated methods to predict the properties of interest. Gaussian-3 and Gaussian-4 theories are expected to be good thermodynamic data predictors and the known efficient prediction of vibrational frequencies by B3LYP is probably the source of the good agreement found in this study. This last methodology is of special interest since it presents low computational cost, which is important when more complex molecular systems are considered.
机译:这项研究的目的是估计描述描述液化石油气(LPG)产氢的反应系统的热力学数据,例如反应的标准焓,熵和吉布斯自由能变化,以及因此的化学平衡常数。使用计算化学方法获得这些性质,并将结果与​​文献中报道的实验数据进行比较。据报道,LPG的蒸汽重整反应系统是一组七个独立的反应,涉及化学物种n-C + Hio,C3H8,C2H6,C2H4,CH4,CO2,CO,H2O,H2和固体碳。使用了六种计算方法:使用Becke的三参数混合交换函数的密度泛函理论(DFT),以及使用6-31G ++(d,p)基集和复合方法CBS-的Lee-Yang-Parr相关函数(B3LYP)。 QB3,Gaussian-1(G1),Gaussian-2(G2),Gaussian-3(G3)和Gaussian-4(G4)。还确定了系统成分的摩尔分数(在1个大气压下,于873.15和1173.15 K之间),并添加了化学计量的水。结果表明,混合功能的B3LYP / 6-31G ++(d,p),G3和G4理论是预测目标属性的最合适方法。高斯3和高斯4理论有望成为良好的热力学数据预测指标,而B3LYP对振动频率的已知有效预测可能是本研究发现良好一致性的源泉。后一种方法特别受关注,因为它具有较低的计算成本,这在考虑到更复杂的分子系统时非常重要。

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