改良填料生物滞留柱去除雨水径流中 污染物试验研究
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湖南省株洲市科技计划基金资助项目(2020-022,2019-022);株洲市海绵城市低影响开发技术工程研究中心 基金资助项目(2018-015)


An Experimental Research on the Removal of Pollutants in Rainwater Runoff by Improved Filler Biological Retention Tanks
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    摘要:

    针对传统类型生物滞留设施氮、磷去除效果不佳且不稳定的问题,对装填改良材料的传统生 物滞留柱性能展开了研究。构建了 4 个生物滞留柱(Z1、Z2、Z3、Z4),Z1 为对照生物滞留柱,其余 3 个 柱子分别装有麦饭石、沸石、蛭石填料层,柱内均设置了 35 cm 的淹没区,对滞留柱出水进行取样分析。 结果表明:4 个生物滞留柱对 TP、COD、氨氮、硝态氮的去除率分别为 76.7%~85.6%、87.78%~94.19%、 76.7%~87.67% 和 78%~88%。与 Z1 相比,Z2、Z3 和 Z4 对不同污染物的去除效果都有提升,其中 Z4(蛭 石填料)去除效果最优。

    Abstract:

    In view of the poor and unstable removal effects of nitrogen and phosphorus by traditional biological retention facilities, a research has thus been carried out on the performance of biological retention columns packed with improved fillers. Four biological retention columns have been constructed, one being a control biological retention column (Z1), and three equipped with different modified packing layers (maifanite, zeolite, vermiculite) biological retention columns, with a 35 cm submerged area set up in the column, followed by a sampling and analysis of the effluent of the retention columns. The results show that the removal rates of TP, COD, NH4+-N, and NO3--N by the four biological retention columns are 76.7%~85.6%、87.78%~94.19%、76.7%~87.67% and 78%~88%, respectively. Compared with Z1, it is obvious that Z2, Z3 and Z4 are characterized with improved removal effects of different pollutants, among which Z4 (vermiculite filler) has the best performance.

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付峥嵘,倪尚源,王耀辉,唐宁远,马满英,刘岳林.改良填料生物滞留柱去除雨水径流中 污染物试验研究[J].湖南工业大学学报,2022,36(1):95-100.

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  • 收稿日期:2021-06-25
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  • 在线发布日期: 2022-01-05
  • 出版日期: 2022-01-01