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首页> 外文期刊>Environmental Science & Technology >Assessment of Full-Scale N_2O Emission Characteristics and Testing of Control Concepts in an Activated Sludge Wastewater Treatment Plant with Alternating Aerobic and Anoxic Phases
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Assessment of Full-Scale N_2O Emission Characteristics and Testing of Control Concepts in an Activated Sludge Wastewater Treatment Plant with Alternating Aerobic and Anoxic Phases

机译:好氧和缺氧相交替的活性污泥废水处理厂N_2O排放特征的评估和控制概念的测试

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摘要

This work aims to obtain full-scale N2O emission characteristics translatable into viable N2O control strategies and conduct full-scale testing of the proposed N2O control concepts. Data of a long-term monitoring campaign was first used to quantify full-scale N2O emission and probe into the seasonal pattern. Then trends between N2O production/emission and process variables/conditions during typical operating cycles were revealed to explore the dynamic N2O emission behavior. A multivariate statistical analysis was performed to find the dependency of N2O emission on relevant process variables. The results show for the first time that relatively low/high N2O emission took place in seasons with a decreasing/increasing trend of water temperature, respectively. Aerobic phase contributed to N2O production/emission probably mainly through the hydroxylamine pathway. Comparatively, heterotrophic bacteria had a dual role in the anoxic phase and could be responsible for both net N2O production and consumption. Incomplete denitrification might contribute mainly to the N2O production/emission in the anoxic phase and the accumulation of N2O to be significantly emitted in the following cycle due to the competition between different denitrification steps for electron donors. Therefore, properly extending the length of anoxic phase could serve as a potential control means to regulate N2O accumulation in the anoxic phase. The full-scale testing not only verified the efficacy of reduced dissolved oxygen set-point in reducing N2O emission by 60%, but also confirmed the proposed concepts of control over the aerobic and anoxic phases collectively.
机译:这项工作旨在获得可转化为可行的N2O控制策略的全面N2O排放特征,并对建议的N2O控制概念进行全面测试。长期监测活动的数据首先用于量化全面N2O排放并探究季节性模式。然后揭示了典型操作周期中N2O产生/排放与过程变量/条件之间的趋势,以探索动态N2O排放行为。进行了多元统计分析,以发现N2O排放对相关工艺变量的依赖性。结果首次表明,相对较低/较高的N2O排放分别发生在水温下降/上升趋势的季节。好氧相可能主要通过羟胺途径促进了N2O的产生/排放。相比之下,异养细菌在缺氧阶段具有双重作用,并且可能负责净N2O的产生和消耗。由于电子供体不同反硝化步骤之间的竞争,不完全的反硝化作用可能主要导致缺氧相中N2O的产生/排放,并在随后的循环中显着排放N2O的积累。因此,适当延长缺氧相的长度可以作为调节缺氧相中N2O积累的潜在控制手段。全面测试不仅验证了降低溶解氧设定值的效果,可将N2O排放降低60%,而且还证实了拟议的控制好氧相和缺氧相的概念。

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