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首页> 外文期刊>Chemical Engineering Science >Anaerobic catalytic oxidation of hydrocarbons in moving heat waves. Case simulation: Propane oxidative dehydrogenation in a packed adiabatic V-Ti oxide catalyst bed
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Anaerobic catalytic oxidation of hydrocarbons in moving heat waves. Case simulation: Propane oxidative dehydrogenation in a packed adiabatic V-Ti oxide catalyst bed

机译:流动的热波中碳氢化合物的厌氧催化氧化。案例模拟:填充绝热V-Ti氧化物催化剂床中的丙烷氧化脱氢

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The model simulation study has shown that the anaerobic process of oxidative dehydrogenation of propane under periodic alteration of feeding between propane and air may be realized in adiabatic catalyst beds in a stable continuous cyclic mode in a two-reactor scheme. In the case of an appropriate choice of process parameters (cycle duration and feeding flow rates) the process appears to be autothermal, i.e. it does not require any inlet gas preheating for stable operation. Compared with a similar steady-state adiabatic process, the proposed process is characterized with much lower maximum catalyst temperatures, giving the way to process pure propane without diluting it with inert gases, thus simplifying the downstream procedure of product separation. Predicted propylene yield is competitive with the one for the steady-state adiabatic process, while sufficient technological benefits of the new technology are expected (decrease in energy consumption and minimization of heat-exchange environment, process safety improvement, suppression of coke formation and efficient coke incineration). (C) 2008 Elsevier Ltd. All rights reserved.
机译:模型仿真研究表明,在绝热催化剂床中,在一个稳定的连续循环模式下,在两个反应器中,可以实现丙烷和空气之间进料周期性变化下丙烷氧化脱氢的厌氧过程。在适当选择工艺参数(循环持续时间和进料流速)的情况下,该工艺看起来是自热的,即,不需要任何进气预热就可以稳定运行。与类似的稳态绝热工艺相比,所提出的工艺的特征在于最高催化剂温度低得多,从而为处理纯丙烷而无需用惰性气体稀释的方式提供了途径,从而简化了产物分离的下游程序。预测的丙烯收率与稳态绝热工艺的丙烯收率相比具有竞争优势,同时新技术有望带来足够的技术优势(能耗降低,热交换环境最小化,工艺安全性提高,抑制焦炭形成和高效焦炭)焚化)。 (C)2008 Elsevier Ltd.保留所有权利。

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