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首页> 外文期刊>Adsorption Science & Technology >Modelling of Hg-0 Removal from Gaseous Streams and Its Fixation in Hydroxyapatite-Based Adsorbents Modified with Copper Sulphide
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Modelling of Hg-0 Removal from Gaseous Streams and Its Fixation in Hydroxyapatite-Based Adsorbents Modified with Copper Sulphide

机译:从气态脱除Hg-0的模型及其在硫化铜改性羟基磷灰石基吸附剂中的固定

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摘要

In this work, a mathematical model of a fixed-bed process for elemental mercury removal from gaseous streams is proposed. Advective and diffusive processes were taken into account in the macroscopic mass balance along the bed, and diffusive process was considered in the microscopic mass balance inside the adsorbent particle in which the adsorption process occurs. In addition, a chemical reaction term was used to represent the mercury fixation by the adsorbent. The proposed model was implemented in the Environment for Modelling, Simulation and Optimization dynamic simulator. Model parameters were estimated based on experimental breakthrough curves, by minimizing the least-square function. The model satisfactorily described two experimental breakthrough curves of mercury removal using adsorbents with different preparation methods, both with high mercury fixation capacity. The proposed mathematical model was also able to consistently describe the mercury concentrations in the bed and in the particle.
机译:在这项工作中,提出了用于从气流中去除元素汞的固定床工艺的数学模型。在沿床的宏观质量平衡中考虑了正向和扩散过程,在发生吸附过程的吸附剂颗粒内部的微观质量平衡中考虑了扩散过程。另外,使用化学反应术语来表示吸附剂对汞的固定。所提出的模型是在建模,仿真和优化动态仿真器环境中实现的。通过最小化最小二乘函数,根据实验突破曲线估算模型参数。该模型令人满意地描述了使用具有不同汞固定能力的不同制备方法的吸附剂去除汞的两个实验突破曲线。提出的数学模型还能够一致地描述床层和颗粒中的汞浓度。

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