• 硝化作用湖岸缓冲去除硝酸盐的重要途径

    The denitrification is an important channel to attenuate nitrate in lakeshore buffer zones.

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  • 细菌硝化作用以及催化反硝化各类酶的基本特性阐明

    Bacteria denitrification and the main characteristics of enzymes that catalyze the process were clear.

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  • 降低环境污染物并且用作模型生物体研究反硝化作用

    It can degrade ENVIRONMENTAL POLLUTANTS and has been used as a model organism to study denitrification.

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  • 存在足够的易降解有机时,发生完全好氧反硝化作用

    A complete aerobic denitrification function can take place when there are enough degradable organic carbon sources.

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  • 氧状态补充大大增强硝化作用提高去除效果

    Addition of organic carbon in anaerobic environment can enhance the denitrification process and improve the nitrogen removal efficiency.

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  • 种植大豆相比,前茬作物水稻促进麦田土壤硝化-反硝化作用

    Compared with the previous crop type of soybean, rice planting in the previous season accelerated soil nitrification-denitrification rate in the following wheat season.

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  • 乙炔抑制同时测定硝化硝化作用,在硝化反硝化作用中有着重要的应用

    Acetylene inhibition method can measure nitrification rate and denitrification rate and it had been used widely.

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  • 人工湿地转化途径主要包括微生物硝化硝化作用植物吸收湿地基质吸附等

    The major nitrogen transformation pathways in constructed wetlands include nitrification and denitrification of microbe, plant uptake and adsorption by substrate.

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  • 本文初步探讨利用好氧颗粒污泥处理实际城市生活污水过程中的同步硝化硝化作用

    In addition, the paper primarily enquires into the action of synchronous nitrification and denitrification in the course of treating practical municipal sewage utilizing aerobic granular sludge.

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  • 结果表明UNITANK的三池结构不利于硝化,B池的缺氧设置能实现部分反硝化作用

    The results showed the triple-tank structure was not good for nitrogen removal of denitrification;

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  • 地下渗滤系统通过硝化硝化作用可以去除50%进水,是地下渗滤系统去除氮的主要途径

    Biological nitrogen removal through nitrification and denitrification was the main removal mechanism of nitrogen, which could remove about 50% of influent total nitrogen.

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  • 底层土壤硝化作用土壤排放N_2O重要来源同时也是影响浅层地下水硝酸盐含量重要因素

    Denitrification in subsurface is the important source of N2O emission from soil. It is also a key factor of affecting NO3 content of shallow groundwater.

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  • MBR系统污泥的硝化反硝化作用均呈零级对应降解速率常数分别约为传统活性污泥的2.22.5倍;

    Both ammonium-oxidizing and denitrifying reaction in MBR accord to zero-grade reaction formula, and the corresponding degradation rate constant was 2.2 and 2.5 times respectively over CAS.

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  • MBR系统污泥的硝化反硝化作用均呈零级对应降解速率常数分别约为传统活性污泥的2.22.5倍;

    Both ammonium-oxidizing and denitrifying reaction in MBR accord to zero-grade reaction formula, and the corresponding degradation rate constant was 2.2 and 2.5 times respectively over CAS.

    youdao

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