• The residence time distribution in W-SFCW system experiments was studied using the reactor theory, from chemical engineering.

    运用化学工程反应器理论试验分析波式潜流人工湿地(W-SFCW中的停留时间分布

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  • DASB can remove the organic particle by its short-time anaerobic technology, thus preventing W-SFCW from jamming and affording enough carbon for denitrification.

    DASB单元采用短时厌氧技术去除颗粒有机物部分溶解有机物,防止W -SFCW堵塞,保证W - SFCW单元所需的碳源

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  • W-SFCW system, which provides more interaction surfaces for wastewater to react with soil, oval stone and small-sized stone layers, showed higher chances to form insoluble phosphate than SFCW.

    SFCW由于使所有水流不断土壤层、砾石层反复接触,生成难磷酸盐几率大大高于SFCW,能够SFCW更加显著地促进磷沉积。

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  • W-SFCW system, which provides more interaction surfaces for wastewater to react with soil, oval stone and small-sized stone layers, showed higher chances to form insoluble phosphate than SFCW.

    SFCW由于使所有水流不断土壤层、砾石层反复接触,生成难磷酸盐几率大大高于SFCW,能够SFCW更加显著地促进磷沉积。

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