• 考察不同曝气量水力停留时间下污染物去除效果

    The pollutant removal performance was investigated at different aeration fluxes and HRTs.

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  • 由于显著降低气量,又需要较高设备要求,因此又是一种节能技术

    As the micro-aerobic technology could reduce the aeration volume obviously, and the requirement for equipment was not so high, it was also considered to be an energy-saving technology.

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  • 影响cod去除率最主要因素气量时间、沉淀时间也有一定影响。

    Main factors affecting COD removal rate were orderly aeration volume, aeration and settling duration.

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  • 研究活性炭处理焦化废水规律,考察了活性炭的粒径、投加曝气量影响

    The law of treatment of coking waste water with activated carbon was studied. The influence of particle size of activated carbon, dozing quantity and aeration amount was investigated.

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  • 采用模糊自适应PID制约对策,可以比较准确反应污水水质变化合理制约曝气量降低运行费用

    The fuzzy adaptive PID controller can indicate the changes of the water quality in sewage treatment, effectively control the volume of aeration and then cut down the operation costs.

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  • 试验基础气量、外加碳源反应器容积方面短程硝化—反硝化工艺的优点进行了分析讨论。

    Based on the experiment, this paper discussed the advantages of shortcut nitrification and denitrification from aeration amount, organic material and volume of reactor and the other respect.

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  • 采用SBR法研究了不同气量、初始污泥浓度和进水COD质量浓度等条件有机物降解过程温度DO变化影响。

    DO variation with temperature under the conditions of changing aeration rate, MLSS density and influent COD in the process of the organism degraded.

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  • 根据气过程转移有关理论推导气量表达式

    The equation of air demand was derived from the theory of oxygen transfer in aeration.

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  • 升流式厌氧-好氧一体化滤池处理生活污水进行了试验研究,探讨了生物膜的形成及供气量、水力停留时间对处理效果影响。

    An experimental study of domestic sewage treatment by an integrated biological filter with up-flow anaerobic-anoxic aerated is presented in this paper.

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  • 设计圆盘型涡凹气头螺旋桨型涡凹气头,比较了两种类型器的引气量气泡直径、粒径分布等。

    The design of the disc turbine aerator and the oar turbine aerator are discussed. Their inspiratory capacity, air bubble diameter and distribution frequency are compared.

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  • 设计圆盘型涡凹气头螺旋桨型涡凹气头,比较了两种类型器的引气量气泡直径、粒径分布等。

    The design of the disc turbine aerator and the oar turbine aerator are discussed. Their inspiratory capacity, air bubble diameter and distribution frequency are compared.

    youdao

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