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Ammonia Removal Model Based on the Equilibrium and Mass Transfer Principles

机译:基于平衡和传质原理的氨气去除模型

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In air stripping of ammonia from the aqueous solution,a new removal model was presented considering the equilibrium principles for the ammonia in aqueous solution and between the aqueous and air phase.The effects of pH,temperature and airflow rate on the ammonia removal were evaluated with the model.In addition,the saturation degree of ammonia in air was defined and used to evaluate the effect of each experimental factor on the removal rate.As pH(8.9 to 11.9)or temperature(20 to 50°C)was increased,the overall removal rate constants in all cases were appeared to be increased.Our presented model shows that the degrees of saturation were about the same(0.45)in all cases when the airflow condition remains the same.This result indicates that the effect of pH and temperature were directly taken into consideration in the model equation.As the airflow increases,the overall removal rate constants were increased in all cases as expected.However,the saturation degree was exponentially decreased with increasing the airflow rate in the air phase(or above-surface)aeration.In the subsurface aeration the saturation degree remains a constant value of 0.65 even though the airflow rate was increased.These results indicate that the degree of saturation is affected mainly by the turbulence of the aqueous solution and remains the same above a certain airflow rate.
机译:在空气中从水溶液中汽提氨气时,考虑了水溶液中以及水相与气相之间氨气的平衡原理,提出了一种新的去除模型。用pH值,温度和流速对氨气的去除效果进行了评估。此外,定义了氨在空气中的饱和度,并用于评估各个实验因素对去除率的影响。随着pH(8.9至11.9)或温度(20至50°C)的升高,在所有情况下,总去除速率常数似乎都增加了。我们提出的模型表明,在气流条件保持相同的情况下,所有情况下的饱和度几乎相同(0.45)。该结果表明pH和温度的影响在模型方程式中直接考虑到了这一点。随着气流的增加,所有情况下的总去除速率常数都按预期增加。但是,饱和度却以指数方式降低通过增加空气中(或表面以上)通气的风量。在地下通气中,即使风量增加,饱和度仍保持恒定值0.65。这些结果表明,饱和度主要受以下因素的影响:水溶液的湍流,并且在一定的气流速率以上保持相同。

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