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Dynamic Modeling of Ammonia Removal with Phosphoric- Acid-Treated Activated Carbon

机译:用磷酸酸处理的活性炭去除氨的动态建模

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This paper describes the initial development of a dynamic model of ammonia removal by chemisorption using Ammonasorb II (Calgon Carbon), a phosphoric-acid-treated activated carbon. The model is being developed using a commercial adsorption modeling software product (Aspen Adsorption~(TM)). An adsorption isotherm equation was derived based on aqueous solution chemistry and compared to measured ammonia capacities for Ammonasorb II under wet conditions. Predicted capacities using the measured phosphoric acid content of one carbon and parameters derived from solution chemistry show good agreement with measurements over a range of ammonia concentration. Both solution-phase and solid-phase equilibrium simulations were performed in support of the isotherm development. Using the dynamic model, a preliminary overall linear mass transfer coefficient was estimated by fitting available ammonia breakthrough data. Additional data are needed to more fully describe and validate the dynamic performance behavior. The model development is directed at sizing trace contaminant control beds for low volume applications such as spacesuits and suit loops where dynamic performance is critical.
机译:本文介绍了使用Ammonasorb II(Calgon Carbon),磷酸处理的活性炭通过化学吸附的动态模型的初步开发。该模型正在使用商业吸附建模软件产品(ASPEN吸附〜(TM)开发。基于水溶液化学来衍生吸附等温线,并与湿条件下测量的氨伞II的氨容量相比。使用源自溶液化学衍生的一种碳的磷酸含量的预测能力与一系列氨浓度的测量结果表现出良好的一致性。溶液相和固相平衡模拟均得到等温培养的支持。使用动态模型,通过拟合可用的氨突破性数据来估算初步总线性传质系数。需要额外的数据来更完全描述和验证动态性能行为。模型开发旨在施胶痕量污染物控制床,用于低音量应用,如动态性能至关重要的距离。

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