Sun Zhen, Yao Zongli, Gao Pengcheng, Zhou Kai, Li Yan, Wei Yuxing, Liu Qinhong, Lai Qifang
East China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, 300 Jungong Road, Shanghai 200090, China.
Department of Environmental Science and Engineering, University of Shanghai for Science and Technology, 384 Jungong Road, Shanghai 200093, China.
ACS Omega. 2024 Dec 10;9(51):50214-50224. doi: 10.1021/acsomega.4c05077. eCollection 2024 Dec 24.
Micro-polluted surface waters (MPSWs) draw increased concern for environmental protection. However, traditional treatment methods such as activated sludge, ozone activated carbon, and membrane filtration suffer from high cost and susceptibility to secondary pollution and are rarely used to address MPSWs. Herein, a new stepped combined constructed wetland planted with without additional inputs was developed. In a 60-day experiment conducted in a drainage canal, we evaluated contaminant removal and bacterial communities using laboratory analysis and amplicon sequencing. Our results showed that the stepped combined constructed wetland achieved impressive removal rates for various contaminants. It was able to remove 70% of suspended solids, 51% of total nitrogen, 55% of total phosphorus, 70% of ammonia nitrogen, and 64% of the chemical oxygen demand. The dominant bacterial phyla found in stepped combined constructed wetland was Proteobacteria and Actinobacteria, with average relative abundances of 43.4 and 19.9%, respectively. We also observed clear differences in bacterial genera between the influent and effluent water samples. Specifically, we found that the stepped combined constructed wetland significantly reduced the abundance of bacteria such as , , and , while increasing the abundance of bacteria like , , , and . The dominant bacterial community comprised nitrifying bacteria ( and ), denitrifying bacteria (e.g., , , , , ), and nitrogen-fixing bacteria (, , ). Notably, the abundance of nitrogen-fixing bacteria, nitrite-oxidizing bacteria, and denitrifying bacteria increased with the stepped combined constructed wetland presence. The stepped combined constructed wetland technology is highly cost-effective, with a total investment of only 259.83 USD. The majority of this investment is used for construction, with minimal expenditure required for operation and maintenance. Therefore, the stepped combined constructed wetland presents an economical and environmentally friendly solution for pollutant removal in slow flow and still water areas. It offers numerous benefits, including improved pollutant removal efficiency, low cost, ecological advantages, and extensive development potential, in various fields.
微污染地表水(MPSWs)日益受到环境保护的关注。然而,传统的处理方法,如活性污泥法、臭氧活性炭法和膜过滤法,成本高且易受二次污染,很少用于处理微污染地表水。在此,开发了一种无需额外投入的新型阶梯式组合人工湿地。在一条排水渠中进行的为期60天的实验中,我们使用实验室分析和扩增子测序评估了污染物去除情况和细菌群落。我们的结果表明,阶梯式组合人工湿地对各种污染物实现了令人印象深刻的去除率。它能够去除70%的悬浮固体、51%的总氮、55%的总磷、70%的氨氮和64%的化学需氧量。在阶梯式组合人工湿地中发现的优势细菌门是变形菌门和放线菌门,平均相对丰度分别为43.4%和19.9%。我们还观察到进水和出水水样之间细菌属的明显差异。具体而言,我们发现阶梯式组合人工湿地显著降低了诸如 、 和 等细菌的丰度,同时增加了诸如 、 、 和 等细菌的丰度。优势细菌群落包括硝化细菌( 和 )、反硝化细菌(如 、 、 、 、 )和固氮细菌( 、 、 )。值得注意的是,随着阶梯式组合人工湿地的存在,固氮细菌、亚硝酸盐氧化细菌和反硝化细菌的丰度增加。阶梯式组合人工湿地技术具有很高的成本效益,总投资仅为259.83美元。这项投资的大部分用于建设,运营和维护所需支出极少。因此,阶梯式组合人工湿地为缓流和静水区域的污染物去除提供了一种经济且环保的解决方案。它在各个领域都有诸多益处,包括提高污染物去除效率、低成本、生态优势和广阔的发展潜力。