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首页> 外文期刊>Fuel Processing Technology >Numerical simulation of a bubbling fluidized bed reactor for sorption-enhanced steam methane reforming under industrially relevant conditions: Effect of sorbent (dolomite and CaO-Ca12Al14O33) and operational parameters
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Numerical simulation of a bubbling fluidized bed reactor for sorption-enhanced steam methane reforming under industrially relevant conditions: Effect of sorbent (dolomite and CaO-Ca12Al14O33) and operational parameters

机译:在工业相关条件下吸附增强蒸汽甲烷重整的吸水性床反应器的数值模拟:吸附剂(白云岩和CAO12A114O33)的作用和操作参数

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摘要

Sorption-Enhanced Steam Methane Reforming (SE-SMR) is a promising technology for effective production of hydrogen with simultaneous CO2 capture from conventional fuels (e.g. methane, coal) and alternative fuels (e.g. biomass). SE-SMR combines steam methane reforming reaction and water-gas shift conversion reaction with a high temperature CO2 sorption system using a mixture of solid catalyst and sorbent. In this work, a methodology that combines Taguchi robust Design of Experiments (DoE) with previously validated CFD simulations [19] is presented. The main objective is to carry on a multi-criteria analysis of the effect of different sorbents and pretreatments and operation parameters in the response of the 500 kW(th) bubbling fluidized bed (BFB) reactor installed in the ZECOMIX (Zero Emissions of CarbOn with MIXed technologies) research infrastructure of ENEA. The effect of different sorbents (i.e. naturally occurring dolomite and synthetic CaO-Ca12Al14O33) and pretreatment seems to be negligible at high scales compared with heat and mass transfer mechanisms. Other parameters (i.e. temperature, pressure, particle diameter, gas velocity, bed height, presence of catalyst and sorbent, treatment of sorbent, syngas composition) have been also evaluated. The present methodology can be a useful approach for a preliminary design and optimization of a full-scale SE-SMR reactors.
机译:吸附增强的蒸汽甲烷重整(SE-SMR)是一种有效的技术,用于有效地生产氢,同时由常规燃料(例如甲烷,煤)和替代燃料(例如生物质)捕获。使用固体催化剂和吸附剂的混合物将SE-SMR与高温CO2吸附系统结合蒸汽甲烷重整反应和水 - 转化转换反应。在这项工作中,提出了一种与先前验证的CFD模拟的实验(DOE)的实验(DOE)组合的方法[19]。主要目的是在500kW(Th)鼓泡流化床(BFB)反应器的响应中进行不同吸附剂和预处理和操作参数的多标准分析,其在Zecomix中安装的500kW(Th)鼓泡流化床(BFB)反应器(碳的零排放混合技术)eNEA的研究基础设施。与热量和传质机制相比,不同吸附剂(即天然存在的白云岩和合成CaO-Ca12Al14O33)和预处理的影响似乎可以忽略不计。还评估了其他参数(即温度,压力,粒径,气体速度,床高度,催化剂的存在和吸附剂,治疗吸附剂,合成气组合物)。本方法可以是用于全级SE-SMR反应器的初步设计和优化的有用方法。

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