首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Decision support system for NPK fertilization: a solution method for minimizing the impact on human health, climate change, ecosystem quality and resources
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Decision support system for NPK fertilization: a solution method for minimizing the impact on human health, climate change, ecosystem quality and resources

机译:NPK施肥的决策支持系统:最大限度地减少对人类健康,气候变化,生态系统质量和资源影响的解决方案方法

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摘要

Sugarcane cultivation requires correct fertilizer rates. However, when nutrients are not available, or there is over-fertilization, the yields are significantly reduced and the environmental burden increase. In this study, it is proposed a decision support system (DSS) for the correct NPK (nitrogen, phosphorus and potassium) fertilization. The DSS consists of two fuzzy models; the edaphic condition model (EDC-M) and the NPK fertilization model (NPK-M). The DSS using parameters from soil analysis and is based on the experience of two groups of experts to avoid the bias to the reality of a single group of professionals. The results of the DSS are compared with the results of soil analysis and those of the group of experts. One hundred and sixty tests were developed in the NPK-M. The N rate showsR(2)=0.981 for the DSS andR(2)=0.963 for soil analyzes. The P rate showsR(2)=0.9702 for the DSS andR(2)=0.9183 for the soil analyzes. The K rate showsR(2)=0.9691 for the DSS andR(2)=0.9663 for the soil analyzes. Environmental results indicate that the estimated rates with the DSS do reduce the environmental impact on the tests performed.
机译:甘蔗栽培需要矫正肥料率。然而,当营养素不可用时,或者存在过度施肥时,产量显着降低,环境负担增加。在本研究中,提出了一种用于正确的NPK(氮,磷和钾)施肥的决策支持系统(DSS)。 DSS由两个模糊模型组成;助理条件模型(EDC-M)和NPK施肥模型(NPK-M)。 DSS使用土壤分析的参数,是基于两组专家的经验,以避免偏见对单一专业人士的现实。将DSS的结果与土壤分析结果和专家组的结果进行比较。在NPK-M中开发了一百六十次测试。对于土壤分析的DSS和0.963,N速率显示(2)= 0.981 = 0.981。对于土壤分析,P速率显示为0.9702 = 0.9183。对于土壤分析,DSS和0.9691的k率显示(2)= 0.9691 = 0.9663。环境结果表明,与DSS的估计率确实会降低对测试的对测试的环境影响。

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