Kumwimba Mathieu Nsenga, Zhu Bo
Key Laboratory of Mountain Surface Processes and Ecological Regulation, Chinese Academy of Sciences, #.9, Block 4, Ren min nan Road, Chengdu, 610041, People's Republic of China.
Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu, 610041, People's Republic of China.
Bull Environ Contam Toxicol. 2017 May;98(5):682-689. doi: 10.1007/s00128-017-2054-1. Epub 2017 Mar 14.
Plant species have an important role in eco-ditches; however, the Michaelis-Menten kinetic parameters of nutrient uptake, growth rate and purification efficiency of ditch plants and their influences on domestic sewage treatment efficiency are still unclear. Growth rates of all nine species, but especially Lemna gibba, Cladophora and Myriophyllum verticillatum were best in undiluted domestic sewage as opposed to a mixture of domestic sewage. Performance of species to accumulate nutrients was not only species-specific, but was also affected by both sewage treatments. Removal efficiency of nutrients was dependent on both plant species and treatment. Uptake kinetic parameters were significantly affected by both nutrient form and plant species. The maximum uptake rate (Vmax) of NH-N was higher than NO-N. Similarly, Km values for NH-N were greater than NO-N. These results could be used to identify plants for sewage treatment efficiency and enhance water quality in eco-ditch treatment systems.
植物物种在生态沟渠中具有重要作用;然而,沟渠植物养分吸收的米氏动力学参数、生长速率和净化效率及其对生活污水处理效率的影响仍不明确。所有九个物种的生长速率,尤其是浮萍、刚毛藻和轮叶狐尾藻,在未经稀释的生活污水中比在生活污水混合物中表现最佳。物种积累养分的性能不仅具有物种特异性,还受到两种污水处理的影响。养分去除效率取决于植物物种和处理方式。吸收动力学参数受到养分形态和植物物种的显著影响。NH-N的最大吸收速率(Vmax)高于NO-N。同样,NH-N的Km值大于NO-N。这些结果可用于确定提高生态沟渠处理系统污水处理效率和改善水质的植物。