Rule of 100: An inherent limitation or performance measure in oxidative coupling of methane?

Saeed Sahebdelfar, Maryam Takht Ravanchi, Mahtab Gharibi, Marzieh Hamidzadeh
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引用次数: 13

Abstract

The oxidative coupling of methane over La2O3/CaO type-catalyst in a fixed-bed reactor is studied under a wide range of operating conditions (973<T< 1103 K, 55< ptotal <220 kPa, and 3.7< mcat/VSTP <50 kg·s/m3). A ten-step kinetic model incorporating all main products was used to predict the behavior of the system. Methane conversions and C2 selectivities were calculated by varying methane to oxygen ratios in the feed under different operating conditions which were also compared with the rule of 100. The results show that deviation from this rule depends on the operating conditions. Within the range studied, an increase in pressure, temperature and contact time results in smaller deviation from the rule. This rule is best approximated when the catalyst operates near its optimal performance. For negative deviations, common to the most catalysts, it is found that the optimal performance should occur at methane conversion levels lower than 50%. A plot of selectivity versus conversion for high-yield reported performance data of a large variety of catalysts shows that data points concentrated roughly in 20%–50% methane conversion region, confirming the generality and prediction of modeling.

100规则:甲烷氧化偶联的固有限制或性能测量?
在固定床反应器中,广泛的操作条件下研究了甲烷在La2O3/CaO型催化剂上的氧化偶联(973<T<1103 K, 55<总压力<220 kPa, 3.7<cat/VSTP <50 kg·s/m3)。采用包含所有主要产物的十步动力学模型来预测系统的行为。在不同的操作条件下,通过改变饲料中甲烷氧比计算甲烷转化率和C2选择性,并与100法则进行了比较。结果表明,与该规律的偏差取决于操作条件。在研究的范围内,压力、温度和接触时间的增加导致与规则的偏差较小。当催化剂在其最佳性能附近运行时,此规则是最接近的。对于大多数催化剂常见的负偏差,发现最佳性能应该发生在甲烷转化率低于50%的情况下。对多种催化剂的高产率性能数据进行了选择性与转化率的对比,结果表明数据点大致集中在20% ~ 50%的甲烷转化率区域,证实了模型的通用性和可预测性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Natural Gas Chemistry
Journal of Natural Gas Chemistry 化学-工程:化工
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