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Kinetic model for isopropanol oxidation in supercritical water in hydrothermal flame regime and analysis

机译:水热火焰条件下超临界水中异丙醇氧化的动力学模型及分析

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Supercritical water oxidation (SCWO) in hydrothermal flame regime has advantages over the oxidation in nameless regime. The main advantage is that the feed can be injected into the reactor at low temperatures, avoiding plugging and corrosion problems in a preheating system. However, there is a lack of kinetic data capable of properly describing the flame regime oxidation. In this study, new global reaction rate parameters for the oxidation of isopropyl alcohol in hydrothermal regime were adjusted from temperature profiles of our group's previous experimental data. The kinetics obey first order rate with regard to the fuel and the oxidant, and follows the Arrhenius law. The parameters are k0 = (9.308 ±3.989) × 10~7 (m~3 s~(-1) kmol~(-1)) and E_a - 89.441 ±2.457 (kJ mol~(-1)), and the least square error of the fitting was 10.8%. This kinetic model was applied in a parametric analysis of flame formation, and it was used to analyze the behavior of a supercritical water oxidation vessel reactors. The kinetic model is able to describe the behavior of the vessel reactor when working in steady state hydrothermal flame regime at subcritical injection temperatures (246 °C). The model predicts both flameless and hydrothermal flame regimes.
机译:在热液火焰状态下的超临界水氧化(SCWO)优于在无名状态下的氧化。主要优点是可以在低温下将进料注入反应器,避免了预热系统中的堵塞和腐蚀问题。但是,缺乏能够正确描述火焰状态氧化的动力学数据。在这项研究中,根据小组先前实验数据的温度曲线调整了在水热条件下异丙醇氧化的新的全球反应速率参数。动力学遵循关于燃料和氧化剂的一阶速率,并且遵循阿伦尼乌斯定律。参数为k0 =(9.308±3.989)×10〜7(m〜3 s〜(-1)kmol〜(-1))和E_a-89.441±2.457(kJ mol〜(-1)),最小拟合的平方误差是10.8%。该动力学模型被用于火焰形成的参数分析,并被用于分析超临界水氧化容器反应器的行为。该动力学模型能够描述在亚临界喷射温度(246°C)下在稳态热液火焰状态下工作的反应堆的行为。该模型可以预测无焰和水热火焰状态。

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