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首页> 外文期刊>Chemical engineering journal >Theoretical analysis of the effect of catalyst mass distribution and operation parameters on the performance of a Pd-based membrane reactor for water-gas shift reaction
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Theoretical analysis of the effect of catalyst mass distribution and operation parameters on the performance of a Pd-based membrane reactor for water-gas shift reaction

机译:催化剂质量分布和操作参数对钯基膜反应器水煤气变换反应性能影响的理论分析

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摘要

In the development of environmental friendly and highly efficient energy processes,membrane reactors hold an important role for their ability to carry out,simultaneously and in the same unit,the separation and reaction steps.Taking advantage of the synergies deriving from this coupling,they achieve comparable results to the conventional reactors at less severe conditions.A sensitivity analysis has been developed in order to define the role of some variables on the performance of a membrane reactor for maximizing the system efficiency.The behaviour of a membrane reactor has been investigated by means of a two-dimensional mathematical model applied to the water-gas shift reaction.By depending on operation feed pressure,a specific choice of both sweep gas flow rate and temperature can limit the occurring of dangerous temperature hot spots without compromising the performance of the system.The catalyst distribution coupled with an efficient heat exchange across the membrane have been investigated as possible technical solutions adequate to control hot spots along the membrane reactor.
机译:在发展环境友好,高效的能源工艺过程中,膜反应​​器在同时和同一单元中进行分离和反应步骤的能力中发挥着重要作用。利用这种耦合产生的协同作用,可以实现在不那么苛刻的条件下与常规反应器具有可比的结果。已进行了灵敏度分析,以定义某些变量对膜反应器性能的作用,以最大限度地提高系统效率。二维数学模型应用于水煤气变换反应。根据操作进料压力,吹扫气流量和温度的特定选择可以限制危险温度热点的发生,而不会影响系统性能已经研究了催化剂分布以及跨膜的有效热交换尽可能控制膜反应器热点的技术解决方案。

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