Center for Biofilm Engineering, Montana State University, Bozeman, MT 59717, USA.
Water Sci Technol. 2011;64(10):2089-95. doi: 10.2166/wst.2011.576.
Floating islands are a form of treatment wetland characterized by a mat of synthetic matrix at the water surface into which macrophytes can be planted and through which water passes. We evaluated two matrix materials for treating domestic wastewater, recycled plastic and recycled carpet fibers, for chemical oxygen demand (COD) and nitrogen removal. These materials were compared to pea gravel or open water (control). Experiments were conducted in laboratory scale columns fed with synthetic wastewater containing COD, organic and inorganic nitrogen, and mineral salts. Columns were unplanted, naturally inoculated, and operated in batch mode with continuous recirculation and aeration. COD was efficiently removed in all systems examined (>90% removal). Ammonia was efficiently removed by nitrification. Removal of total dissolved N was ∼50% by day 28, by which time most remaining nitrogen was present as NO(3)-N. Complete removal of NO(3)-N by denitrification was accomplished by dosing columns with molasses. Microbial communities of interest were visualized with denaturing gradient gel electrophoresis (DGGE) by targeting specific functional genes. Shifts in the denitrifying community were observed post-molasses addition, when nitrate levels decreased. The conditioning time for reliable nitrification was determined to be approximately three months. These results suggest that floating treatment wetlands are a viable alternative for domestic wastewater treatment.
浮岛是一种处理湿地形式,其特点是水面上有一层合成基质,可种植大型植物,水可从中流过。我们评估了两种用于处理生活污水的基质材料,即再生塑料和再生地毯纤维,以去除化学需氧量 (COD) 和氮。这些材料与砾石或开阔水面(对照)进行了比较。实验在实验室规模的柱子中进行,柱子中填充了含有 COD、有机和无机氮以及矿物质盐的合成废水。柱子未种植,自然接种,以连续循环和曝气的批处理模式运行。在所有检查的系统中,COD 都被有效地去除(>90%的去除率)。氨通过硝化作用被有效地去除。到第 28 天,总溶解氮的去除率约为 50%,此时大部分剩余的氮以 NO3-N 的形式存在。通过向柱子中投加糖蜜,完成了对 NO3-N 的完全反硝化去除。通过靶向特定功能基因,用变性梯度凝胶电泳 (DGGE) 可视化了感兴趣的微生物群落。在添加糖蜜后,硝酸盐水平下降时,观察到反硝化群落的变化。可靠硝化的调节时间确定为大约三个月。这些结果表明,浮式处理湿地是生活污水处理的一种可行替代方案。