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首页> 外文期刊>Journal of industrial and engineering chemistry >Sorption-enhanced Fischer-Tropsch synthesis with continuous adsorbent regeneration in GTL technology: Modeling and optimization
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Sorption-enhanced Fischer-Tropsch synthesis with continuous adsorbent regeneration in GTL technology: Modeling and optimization

机译:GTL技术中具有连续吸附剂再生的吸附增强费-托合成:建模和优化

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Fischer-Tropsch synthesis (FTS) plays an important role in the production of clean liquid transportation fuels, chemicals, and other hydrocarbon products. This work proposes a novel configuration of FTS reactor in which zeolite 4A, with the composition of Na_(12)(Si_(12)Al_(12)O_(48))-27H2O, is considered as water adsorbent. For this purpose, a gas-flowing solids-fixed bed reactor (GFSFBR) is used instead of conventional reactor. The main advantage of GFSFBR over the conventional sorption-enhanced reaction process is the continuous adsorbent regeneration in this novel configuration. Simulation result demonstrates that selective adsorption of water from FTS in GFSFBR leads to significant enhancement in the gasoline yield and reduction in CO2 production in comparison with the zero solid mass flux condition. Subsequently, the aforementioned reactor is optimized using differential evolution (DE) algorithm as an effective and robust optimization method. Optimization results show that there are optimum values for eight decision variables under which the highest gasoline productivity can be achieved. Afterwards, the simulation and optimization results are compared with the ones in conventional reactor. This paper shows how the concept of in situ water adsorption is feasible and beneficial for FTS.
机译:费托合成(FTS)在生产清洁液体运输燃料,化学品和其他碳氢化合物产品中起着重要作用。这项工作提出了一种新颖的FTS反应器构造,其中以Na_(12)(Si_(12)Al_(12)O_(48))-27H2O组成的4A沸石被视为吸水剂。为此目的,使用气体流动的固相床反应器(GFSFBR)代替常规的反应器。 GFSFBR相对于传统的吸附增强反应过程的主要优点是,在这种新颖的配置下,连续的吸附剂再生。仿真结果表明,与零固相质量通量条件相比,GFSFBR中FTS中水的选择性吸附导致汽油收率显着提高和CO2产量降低。随后,使用差分进化(DE)算法作为有效且鲁棒的优化方法来优化上述反应堆。优化结果表明,存在八个决策变量的最优值,可以在这些最优值下实现最高的汽油生产率。然后,将仿真和优化结果与常规反应堆的仿真和优化结果进行比较。本文展示了原位水吸附的概念如何可行且对FTS有益。

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