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Comparative on plant stoichiometry response to agricultural non-point source pollution in different types of ecological ditches

机译:不同类型生态沟渠农业非点源污染的植物化学计量反应比较

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摘要

Long-term agricultural development has led to agricultural non-point source (NPS) pollution. Ecological ditches (eco-ditch), as specific wetland systems, can be used to manage agricultural NPS water and achieve both ecological and environmental benefits. In order to understand which type of eco-ditch systems (Es, soil eco-ditch; Ec, concrete eco-ditch; Eh, concrete eco-ditch with holes on double-sided wall) is more suitable for plant nutrient balance meanwhile reducing NPS water (total nitrogen [TN], about 10mg/L; total phosphorus [TP], about 1mg/L), it is essential to evaluate the plant (Vallisneria natans) stoichiometry response to water in different types of eco-ditches under static experiment. The results indicated that there were no significant differences in TP removal efficiency among three eco-ditches, yet Eh systems had the best TN removal efficiency during the earlier experimental time. Addition of agricultural NPS water had varying effects on plants living in different types of eco-ditch systems. Plant organ stoichiometry of V. natans varied in relation to eco-ditch types. Plant stoichiometry (C:N, C:P, and N:P) of V. natans in Eh systems could maintain the homeostasis of nutrients and was not greatly affected by external changing environment. V. natans in Es systems can more easily modify the nutrient contents of organs with regard to nutrient availability in the environment. Our findings provide useful plant stoichiometry information for ecologists studying other specific ecosystems.
机译:长期农业发展导致农业非点源(NPS)污染。作为特定湿地系统的生态沟渠(Eco-Ditch)可用于管理农业NPS水,实现生态和环境效益。为了了解哪种类型的生态沟系统(es,土壤生态沟; Ec,混凝土生态沟; eh,双面墙上的孔的混凝土生态沟)更适合于植物养分平衡,同时减少NPS水(总氮素[Tn],约10mg / L;总磷[TP],约1mg / L),必须在静态实验下评估植物(Vallisneria Natiss)的化学计量对不同类型的生态沟渠的水。结果表明,三个生态沟渠中的TP去除效率没有显着差异,但又在早期的实验时间内具有最佳的TN清除效率。添加农业NPS水对生活在不同类型的Eco-Ditch系统中的植物具有不同的影响。 V.北纳的植物器官化学计量与Eco-Ditch类型有关。在EH系统中的V. Natiss的植物化学计量(C:N,C:P和N:P)可以维持营养成分的稳态,并受到外部变化环境的大大影响。 V.在ES系统中的纳斯人在环境中更容易修改器官的营养物质内容。我们的研究结果为研究其他特定生态系统的生态学家提供了有用的工厂化学计量信息。

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