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A comparative thermodynamic analysis and experimental studies on hydrogen synthesis by supercritical water gasification of glucose

机译:超临界水气化葡萄糖合成氢的比较热力学分析和实验研究

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A thermodynamic equilibrium analysis of hydrogen (H-2) production from supercritical water gasification (SCWG) of glucose was explored based on Gibbs free energy minimization using Soave-Redlich-Kwong equation of state with Boston Mathias alpha function (SRK-BM) property method. The effects of experimental conditions [i.e., glucose concentration (0.1-1.2 M), temperature (773-1073 K), and pressure (22-35 MPa)] on the equilibrium gas product yields and gasification performance were investigated. The temperature of about 923 K, pressure of 23-28 MPa, and glucose concentration being 0.1-0.2 M are justified to provide H-2 yield in the order of its stoichiometric value (12 mol) with negligible amounts of CO and CH4. The simulated product yields, gasification efficiency (GE), cold gas efficiency (CGE(P)), cold gas efficiency of H-2 (CGE(H2)), and calculated heat duty in this study were compared with their respective experimental data taken from the literature. The aforementioned operating conditions correspond to minimum heat duty of 60-107 MW and significant values of CGE(P), CGE(H2), and GE of 121.1-118.4, 118.4-105.4, and 158.3-151.6 %, respectively. The dissimilarity between the experimental product distributions reported in the literature is related to the reactor material and residence time as well as catalyst type. The current study provided thermodynamic parameters for optimizing the operational condition of glucose SCWG, which may be extended to other biomass supercritical water gasification systems.
机译:基于Sobb-Redlich-Kwong状态方程和Boston Mathiasα函数(SRK-BM)属性方法,基于吉布斯自由能最小化,对葡萄糖的超临界气化(SCWG)生产氢(H-2)进行了热力学平衡分析。 。研究了实验条件[即葡萄糖浓度(0.1-1.2 M),温度(773-1073 K)和压力(22-35 MPa)]对平衡气体产物收率和气化性能的影响。证明约923 K的温度,23-28 MPa的压力和0.1-0.2 M的葡萄糖浓度是合理的,以提供H-2收率,其化学计量值(12摩尔)约为CO和CH4的量可忽略不计。将本研究中的模拟产品收率,气化效率(GE),冷气效率(CGE(P)),H-2的冷气效率(CGE(H2))和计算出的热负荷与各自的实验数据进行比较从文学上。前述操作条件分别对应于60-107 MW的最小热负荷和CGE(P),CGE(H2)和GE的有效值分别为121.1-118.4%,118.4-105.4和158.3-151.6%。文献报道的实验产物分布之间的差异与反应器材料和停留时间以及催化剂类型有关。当前的研究提供了用于优化葡萄糖SCWG的操作条件的热力学参数,其可以扩展到其他生物质超临界水气化系统。

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