School of Energy & Environment, Southeast University, 2 Sipailou Rd, Nanjing, 210096, Jiangsu, People's Republic of China.
ERC Taihu Lake Water Environment Wuxi, 99 Linghu Rd, Wuxi, 214135, People's Republic of China.
Environ Sci Pollut Res Int. 2020 Aug;27(24):29837-29855. doi: 10.1007/s11356-020-08808-y. Epub 2020 May 29.
Substrates are the main factor influencing the performance of constructed wetlands (CWs), and especially play an important role in enhancing the removal of nitrogen and phosphorus from CWs. In the recent 10 years, based on the investigation of emerged substrates used in CWs, this paper summarizes the removal efficiency and mechanism of nitrogen and phosphorus by a single substrate in detail. The simultaneous removal efficiency of nitrogen and phosphorus by different combined substrates is emphatically analyzed. Among them, the reuse of industrial and agricultural wastes as water treatment substrates is recommended due to the efficient pollutant removal efficiency and the principle of waste minimization, also more studies on the environmental impact and risk assessment of the application, and the subsequent disposal of saturated substrates are needed. This work serves as a basis for future screening and development of substrates utilized in CWs, which is helpful to enhance the synchronous removal of nitrogen and phosphorus, as well as improve the sustainability of substrates and CWs. Moreover, further studies on the interaction between different types of substrates in the wetland system are desperately needed.
基质是影响人工湿地(CWs)性能的主要因素,尤其在增强 CWs 中氮磷去除方面起着重要作用。在最近的 10 年中,基于对 CWs 中使用的浮出水面基质的调查,本文详细总结了单一基质去除氮磷的效率和机制。重点分析了不同组合基质同时去除氮磷的效率。其中,推荐将工业和农业废物作为水处理基质再利用,因为其具有高效的污染物去除效率和最小化废物的原则,还需要更多关于应用的环境影响和风险评估,以及随后对饱和基质的处理的研究。这项工作为未来 CWs 中基质的筛选和开发提供了基础,有助于增强氮磷的同步去除,提高基质和 CWs 的可持续性。此外,还迫切需要进一步研究湿地系统中不同类型基质之间的相互作用。