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首页> 外文期刊>The Journal of Supercritical Fluids >ZnO nanoparticles formation by reactions of bulk Zn with H2O and CO2 at sub- and supercritical conditions: I. Mechanism and kinetics of reactions
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ZnO nanoparticles formation by reactions of bulk Zn with H2O and CO2 at sub- and supercritical conditions: I. Mechanism and kinetics of reactions

机译:在亚临界和超临界条件下,块状Zn与H2O和CO2反应形成ZnO纳米颗粒:I.反应机理和动力学

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摘要

Oxidation of solid and liquid zinc by water (temperature 335-648 °C, pressure 13.7-31.2 MPa, water density 0.045-0.420g/cm~3), supercritical CO2 (514-600°C, 7.1-24.4MPa, 0.041 -0.158 g/cm~3), mixture of H2O/CO2 (140-600°C, 30 MPa, water density 0.026-0.569 g/cm~3, initial ratio of [H2O]_0/[CO2]_0 = 0.46-2.75 mol/mol) has been studied. In pure CO2, besides CO, carbons are formed and in mixtures H2O/CO2 along with H2 and CO, paraffin and aromatic hydrocarbons, alcohols and formaldehyde are synthesized. Combustible products composition depends on the temperature and ratio of [H2O]/[CO2] in the mixture. In every experiment ZnO nanoparticles formation was observed. Cluster mechanism of nanostructured ZnO generation has been proposed and kinetic parameters of this process have been revealed. Temperature dependence of the rate constant of Zn reacting with H2O is described by the equation k_W(T) = 1.09 x 10~(-4) exp(-53.23 (kJ/mol)/RT). At the same temperature rate constant of Zn reacting with CO2 is 44 times less than k_W, and the rate constant of Zn reacting with H2O/CO2 mixture is 25.4% less than k_W.
机译:水(温度335-648°C,压力13.7-31.2 MPa,水密度0.045-0.420g / cm〜3),超临界CO2(514-600°C,7.1-24.4MPa,0.041- 0.158 g / cm〜3),H2O / CO2混合物(140-600°C,30 MPa,水密度0.026-0.569 g / cm〜3,初始比[H2O] _0 / [CO2] _0 = 0.46-2.75摩尔/摩尔)已被研究。在纯CO2中,除了CO外,还会形成碳,并在H2O / CO2与H2和CO的混合物中,合成石蜡和芳烃,醇和甲醛。可燃产品的成分取决于温度和混合物中[H2O] / [CO2]的比例。在每个实验中,均观察到ZnO纳米颗粒的形成。提出了纳米结构ZnO生成的簇机理,并揭示了该过程的动力学参数。 Zn与H2O反应的速率常数的温度依赖性由以下公式描述:k_W(T)= 1.09 x 10〜(-4)exp(-53.23(kJ / mol)/ RT)。在相同温度下,Zn与CO2反应的速率常数比k_W小44倍,Zn与H2O / CO2混合物反应的速率常数比k_W小25.4%。

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