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Upgrading Wood Gas Using Bentonite Clay: A Multiscale Modeling and Simulation Study

机译:使用Bentonite Clay升级木材:多尺度建模和仿真研究

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Wood gas is the producer gas resulting from gasification of wood biomass and is an important renewable fuel gas in rural areas. This study assessed the capacity of bentonite, a widely used clay mineral, to upgrade wood gas via pressure swing adsorption in order to improve its calorific value (i.e., the amount of energy released per kilogram of gas). Grand canonical Monte Carlo molecular simulations using a self-consistent force field were performed to generate adsorption isotherms for wood gas components—methane, carbon monoxide, carbon dioxide, hydrogen, nitrogen, and oxygen—in montmorillonite (the main crystalline constituent of bentonite) at conditions appropriate to downdraft gasification. The Langmuir adsorption isotherm model was successfully fitted to each component’s adsorption isotherm and was then coupled with a batch equilibrium approach to model a single-stage pressure swing adsorption system with a discharge stream at ambient pressure. A response surface was then computed in terms of the net change in the calorific value as a function of both adsorbent quantity and operating pressure. It was found that the system can improve the calorific value of the gas by over five percent.
机译:木材气体是木材生物量气化产生的生产气体,是农村地区重要的可再生燃料气体。本研究评估了膨润土,广泛使用的粘土矿物的能力,通过压力波浪吸附升级木材气体,以改善其热值(即,每公斤气体释放的能量)。进行使用自一致性力场的大规范蒙特卡罗分子模拟,以产生用于木质气体组分 - 甲烷,一氧化碳,二氧化碳,氢气,氮气和氧气 - 在蒙脱石(膨润土的主要结晶组成)的吸附等温物适合于下降气化的条件。 Langmuir吸附等温模型成功地安装到每个组分的吸附等温线,然后与批量平衡方法耦合,以在环境压力下用排出流模拟单级压力摆幅吸附系统。然后根据吸附量和操作压力的函数,根据热值的净变化来计算响应表面。发现该系统可以将气体的热值提高超过5%。

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    《ACS Omega》 |2020年第19期|共7页
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    Matthew Lasich;

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