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Analysis and optimization of ammonia stripping using multi-fluid model

机译:利用多流体模型进行氨气汽提分析与优化

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Ammonia recovery from anaerobic digestion (AD) is a notably beneficial process for removing excess nitrogen, producing low cost fertilizer and enhancing odor abatement. A process was developed for nutrients recovery by integrating a simple and effective stripping process with AD system. To design, optimize and scale up this system, multi-fluid model was developed to simulate flow, mass transfer and reactions in the ammonia stripping tower. The mass and heat transfer and dissociation reactions were introduced into the CFD framework. The air/liquid ratio in each cell of the domain was considered in heterogeneous mass transfer rate. Good agreement between CFD modeling and experiments employing a packed bed was obtained on the effect of pH and temperature upon ammonia removal. It was found that the liquid to gas mass transfer rate became slower at the lower part of the packed bed with high air/liquid ratio and short liquid resident time, decreasing ammonia removal efficiency. The predicted contours at the lower part also showed decreases in liquid volume fraction and liquid temperature. These results suggest a great potential compensation to use the multi-section feed-in and recirculation for improving reactor performance.
机译:从厌氧消化(AD)中回收氨是去除多余氮,生产低成本肥料和增强气味消除的显着有益方法。通过将简单有效的汽提过程与AD系统集成在一起,开发了一种用于营养物回收的过程。为了设计,优化和扩展该系统,开发了多流体模型来模拟氨汽提塔中的流量,传质和反应。传质和传热与离解反应被引入CFD框架。在异质传质速率中考虑了域中每个单元中的气/液比。 CFD建模与采用填充床的实验之间在去除氨气时pH和温度的影响方面取得了很好的一致性。发现在高气/液比和较短的液体停留时间的情况下,在填充床下部的液-气传质速率变慢,降低了氨的去除效率。下部的预测轮廓还显示出液体体积分数和液体温度降低。这些结果表明,使用多段式进料和再循环以改善反应堆性能具有巨大的潜在补偿能力。

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