...
首页> 外文期刊>Journal of Hydrology >Simulation of bioavailable phosphorus and nitrogen loading in an agricultural river basin in Finland using VEMALA v.3
【24h】

Simulation of bioavailable phosphorus and nitrogen loading in an agricultural river basin in Finland using VEMALA v.3

机译:使用vemala v.3模拟芬兰农业河流盆地生物可利用磷和氮载荷

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The water quality model VEMALA v.3 reconciles the complexity of a freshwater ecosystem model with the terrestrial and marine ecosystem models already implemented in Finland. This model unifies VEMALA-ICECREAM, VEMALA-N and VEMALA 1.1 as it uses their independent terrestrial loading and implements a simplification of the biogeochemical model RIVE and phytoplankton model AQUAPHY in the river network. VEMALA v.3 simulates the transport and transformations of nitrate, ammonium, organic nitrogen, phosphate, particulate inorganic phosphorus, organic phosphorus, phytoplankton, suspended sediments and total organic carbon during their travel to the sea. The model's results were satisfactory in the Aurajoki river basin (South-Western Finland) in simulating nutrients daily loads, with all Nash and Sutcliffe coefficients (NSE) ranging from 0.51 to 0.89 against observations, and monthly loads (NSE = 0.4-0.97 against estimations). Simulations of total nitrogen and total phosphorus loads were comparable to estimated annual loads with the exception of a few exceptional years. The quantification of the nutrient cycling river processes were consistent with the Aurajoki river ecosystem with maximum summer rates for mineralisation 0.1 mgC L-1 d(-1) and denitrification 55 mgN m(-2) d(-1) resulting in a loss of 4% of the annual nitrogen load entering the river. VEMALA v3 unites the previous versions of VEMALA to better predict the co-impact of dissolved inorganic nitrogen and phosphate on algal growth and therefore eutrophication. Simulation of bioavailable nutrients rather than total nutrients will allow the distinction in the quality of the various loading sources, farming actions and loading reduction actions. In the Aurajoki simulation, nitrate and ammonium represented on average 74% and 3% respectively of the total nitrogen load to the Baltic Sea, while phosphate constituted 38% of the total phosphorus load to the sea. Thus, the biological impact in the river and the sea will be better assessed to help water managers implement the Water Framework Directive in Finland. (C) 2017 Elsevier B.V. All rights reserved.
机译:水质模型vemala v.3与芬兰已经实施的陆地和海洋生态系统模型进行了淡水生态系统模型的复杂性。此模型统一vemala-icecream,vemala-n和vemala 1.1,因为它使用其独立的地面装载并实现了河网中的生物地球化学模型rive和phytoplancton模型水电池的简化。 vemala v.3模拟硝酸盐,铵,有机氮,磷酸盐,颗粒状无机磷,有机磷,浮游植物,悬浮沉积物和总有机碳的运输和转化。该模型的结果在Aurajoki河流域(西南芬兰)在模拟日常载荷时令人满意,所有纳什和萨夫克利夫系数(NSE)与0.51至0.89的观察结果,每月载荷(NSE = 0.4-0.97抵抗估计)。除少年外,总氮和总磷荷载量的模拟与估计的年载荷相当。营养循环河流过程的定量与Aurajoki河生态系统一致,矿化的最大夏季速率为0.1 MgC L-1 D(-1)和反硝化55mgN m(-2)d(-1)导致损失进入河流的年氮负荷的4%。 vemala v3将先前版本的vemala联合以更好地预测溶解的无机氮和磷酸盐对藻类生长的共同影响,因此富营养化。模拟生物可利用营养素而不是总营养素将允许区分各种装载来源,农业行动和减少措施。在Aurajoki模拟中,硝酸盐和铵平均分别为34%和3%,分别为波罗的海的总氮负荷,而磷酸盐构成了海洋总磷荷载量的38%。因此,将更好地评估河流和海洋中的生物影响,以帮助水管理人员在芬兰实施水框架指令。 (c)2017年Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号