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Evaluating Status Change of Soil Potassium from Path Model

机译:从路径模型评估土壤钾素状况

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摘要

The purpose of this study is to determine critical environmental parameters of soil K availability and to quantify those contributors by using a proposed path model. In this study, plot experiments were designed into different treatments, and soil samples were collected and further analyzed in laboratory to investigate soil properties influence on soil potassium forms (water soluble K, exchangeable K, non-exchangeable K). Furthermore, path analysis based on proposed path model was carried out to evaluate the relationship between potassium forms and soil properties. Research findings were achieved as followings. Firstly, key direct factors were soil S, ratio of sodium-potassium (Na/K), the chemical index of alteration (CIA), Soil Organic Matter in soil solution (SOM), Na and total nitrogen in soil solution (TN), and key indirect factors were Carbonate (CO3), Mg, pH, Na, S, and SOM. Secondly, path model can effectively determine direction and quantities of potassium status changes between Exchangeable potassium (eK), Non-exchangeable potassium (neK) and water-soluble potassium (wsK) under influences of specific environmental parameters. In reversible equilibrium state of , K balance state was inclined to be moved into β and χ directions in treatments of potassium shortage. However in reversible equilibrium of , K balance state was inclined to be moved into θ and λ directions in treatments of water shortage. showed that the proposed path model was able to quantitatively disclose moving direction of K status and quantify its equilibrium threshold. It provided a theoretical and practical basis for scientific and effective fertilization in agricultural plants growth.
机译:这项研究的目的是确定土壤钾有效性的关键环境参数,并通过使用拟议的路径模型来量化那些贡献者。在这项研究中,将田间试验设计为不同的处理方法,并收集土壤样品并在实验室中进行进一步分析,以研究土壤性质对土壤钾形态(水溶性钾,可交换钾,不可交换钾)的影响。此外,基于提出的路径模型进行了路径分析,以评估钾形态与土壤特性之间的关系。研究结果如下。首先,关键的直接因素是土壤S,钠钾比(Na / K),化学变化指数(CIA),土壤溶液中的土壤有机质(SOM),Na和土壤溶液中的总氮(TN),关键的间接因素是碳酸盐(CO3),镁,pH,Na,S和SOM。其次,路径模型可以有效地确定特定环境参数影响下可交换钾(eK),不可交换钾(neK)和水溶性钾(wsK)之间钾状态变化的方向和数量。在钾的可逆平衡状态下,钾平衡状态倾向于在钾和钾缺乏的情况下向β和χ方向移动。但是,在的可逆平衡下,在缺水处理中,K平衡态倾向于向θ和λ方向移动。结果表明,提出的路径模型能够定量揭示K状态的移动方向并量化其平衡阈值。它为农业植物的科学有效施肥提供了理论和实践基础。

著录项

  • 期刊名称 other
  • 作者

    Wenming He; Fang Chen;

  • 作者单位
  • 年(卷),期 -1(8),10
  • 年度 -1
  • 页码 e76712
  • 总页数 15
  • 原文格式 PDF
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