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Temperature Coefficient for Modeling Denitrification in Surface Water Sediments Using the Mass Transfer Coefficient

机译:使用传质系数模拟地表沉积物中反硝化的温度系数

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Watershed modeling has become an important tool for researchers. Modeling nitrate transport within drainage networks requires quantifying the denitrification within the sediments in canals and streams. In a previous study, several of the authors developed an equation using a term called a mass transfer coefficient to mathematically describe sediment denitrification. This equation takes into account the effect that water column nitrate concentration and flow depth have on denitrification in the sediments. Water column temperature also has a marked effect on the rate of denitrification in the sediments. In the present study, a relationship between denitrification rate and temperature was developed. This relationship was inserted into the original mathematical relationship to improve its ability to predict nitrate removal due to denitrification within drainage networks. The modified equation was tested by comparing predicted and measured nitrate concentrations over time in denitrification tanks at various temperatures. Results show that the modified equation increased the accuracy of predicting nitrate removal by denitrification in drainage canals. Overall Nash-Sutcliffe model efficiency values ranged from 0.72 to 0.76 for the original equation and from 0.90 to 0.97 for the equation developed in this study. The effective temperature range for the equation is 0°C to 40°C. The equation has also only been tested under stagnant/low-flow conditions
机译:分水岭建模已成为研究人员的重要工具。对排水网络中硝酸盐的运输进行建模需要量化运河和河流中沉积物内的反硝化作用。在先前的研究中,几位作者开发了一个方程,使用一个称为传质系数的术语来数学描述沉积物的反硝化作用。该方程考虑了水柱硝酸盐浓度和流量深度对沉积物中反硝化的影响。水柱温度也对沉积物中的反硝化速率有显着影响。在本研究中,开发了反硝化速率与温度之间的关系。该关系被插入到原始数学关系中,以提高其预测由于排水管网中的反硝化作用而去除硝酸盐的能力。通过比较在不同温度下反硝化池中随时间变化的预测和测量硝酸盐浓度来测试修改后的方程式。结果表明,改进后的方程提高了排水渠中反硝化去除硝酸盐的预测精度。 Nash-Sutcliffe模型的整体效率值对于该原始方程而言为0.72至0.76,对于在本研究中开发的方程而言为0.90至0.97。该公式的有效温度范围是0°C至40°C。该方程也仅在停滞/低流量条件下进行过测试

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