Department of Sanitary and Environmental Engineering, Federal University of Santa Catarina, Trindade, Florianópolis, Santa Catarina, Brazil CEP 88040-970 E-mail:
Water Sci Technol. 2017 Jun;75(12):2926-2934. doi: 10.2166/wst.2017.172.
The microorganism community that grows under duckweed shelter can play an important role on treatment processes. Therefore, the present study aimed to assess the zooplankton dynamic and microbial community in duckweed ponds (DPs) applied for domestic wastewater treatment under open field conditions. A pilot system comprised of two DPs in series (DP1 and DP2), with 10 m each, received domestic wastewater through a flow rate of 200 L·day. Thus, the system was monitored during 314 days through samples collected and analysed weekly. Also, the zooplankton organisms were identified and quantified. DNA sequencing was performed in order to identify the bacterial populations. The findings showed a high efficiency of nutrient removal with 93% and 91% of total phosphorus and total nitrogen, respectively. A high density of microcrustaceans was observed in DP1 reaching 4,700 org.100 mL and rotifers (over than 32,000 org.100 mL) in DP2, that could be related to the low suspended solids concentration (<30 mg·L) and turbidity (<10 NTU). The bacterial community showed a strong heterogeneity between samples collected along the seasons. Through these findings, it is possible to realise that the understanding of ecology could help to enhance the operation and designs of DPs.
在浮萍庇护下生长的微生物群落可以在处理过程中发挥重要作用。因此,本研究旨在评估浮萍池塘(DPs)在野外条件下应用于处理生活污水时的浮游动物动态和微生物群落。一个由两个串联的 DP(DP1 和 DP2)组成的试点系统,每个 DP 长 10 米,通过 200 L·天的流速接收生活污水。因此,该系统通过每周收集和分析样本进行了 314 天的监测。此外,还对浮游动物进行了鉴定和定量。为了识别细菌种群,进行了 DNA 测序。研究结果表明,该系统对营养物质的去除效率很高,总磷和总氮的去除率分别达到 93%和 91%。在 DP1 中观察到大量的微型甲壳类动物,密度达到 4700 个·100 mL,而 DP2 中的轮虫(超过 32000 个·100 mL),这可能与悬浮物浓度低(<30 mg·L)和浊度低(<10 NTU)有关。细菌群落显示出样本在不同季节之间的强烈异质性。通过这些发现,可以意识到对生态学的理解有助于增强 DPs 的运行和设计。