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首页> 外文期刊>Water and environment journal >Assessing the influence of pronounced diurnal temperature variations in nontemperate zones on the denitrificationitrification rate using the COST Benchmark activated sludge model no. 1 simulation
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Assessing the influence of pronounced diurnal temperature variations in nontemperate zones on the denitrificationitrification rate using the COST Benchmark activated sludge model no. 1 simulation

机译:使用COST Benchmark活性污泥模型No.1评估非温带区域明显的昼夜温度变化对反硝化/反硝化速率的影响。 1模拟

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摘要

Activated sludge plants are usually designed using formulae based on fixed waste-water temperatures. In some nontemperate zones, these procedures may need altering, particularly for areas that experience large diurnal and seasonal temperature variation such as in desert or high-altitude environments. This study investigates these temperature effects on the denitrificationitrification rate by utilising the COST Benchmark activated sludge model no. 1 (ASM1) simulation model. The COST Benchmark was developed under the European Cooperation in Science and Technology programme Action 624 which specifically focused on the Optimal Management of Wastewater Systems. Various simulations and associated control strategies were carried out using gPROMS software package (Process Systems Enterprise Limited, London, UK) to ascertain the following: any likely nutrient removal implications; use of a nitrate and/or ammonia sensor coupled to a strategy to change the solids loading inventory to minimise falls in nitrification rate during night time hours; and changes to controller set point levels during the day and night to reflect diurnal load, flow and temperature variations using a temperature-dependent control algorithm. It was found that inclusion of temperature dependency in simulation models may prove beneficial when designing plants located in these regions.
机译:活性污泥厂通常采用基于固定废水温度的公式进行设计。在某些非温带地区,可能需要更改这些程序,尤其是对于沙漠和高海拔环境中昼夜和季节性温度变化较大的区域。这项研究利用COST Benchmark活性污泥模型No.1研究了这些温度对反硝化/反硝化率的影响。 1(ASM1)仿真模型。 COST基准是根据欧洲科技合作计划行动624制定的,该计划的重点是废水系统的优化管理。使用gPROMS软件包(Process Systems Enterprise Limited,英国伦敦)进行了各种模拟和相关的控制策略,以确定以下内容:任何可能的营养去除影响;使用硝酸盐和/或氨水传感器,结合改变固体装载量的策略以最大程度减少夜间的硝化速率下降;并使用温度相关的控制算法在白天和晚上改变控制器的设定点水平,以反映日负荷,流量和温度变化。发现在设计位于这些区域的工厂时,将温度依赖性包括在仿真模型中可能会证明是有益的。

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