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土壤—作物系统钾素动力学模型及其参数研究
引用本文:章明清,彭嘉桂,杨杰,林琼,颜明娟.土壤—作物系统钾素动力学模型及其参数研究[J].土壤学报,2003,40(1):89-95.
作者姓名:章明清  彭嘉桂  杨杰  林琼  颜明娟
作者单位:福建省农业科学院土壤肥料研究所,福州,350013
基金项目:福建省自然科学基金项目(D97012),加拿大钾磷研究所提供资助
摘    要:基于生态学的Lotka Volterra模型 ,在土壤—作物系统中提出一个新的土壤钾素动力学方程。盆栽试验表明 ,该模型能很好地拟合花生一个生长周期内土壤缓效钾和速效钾的动态变化。吸钾量实测结果表明 ,花生不同生育期吸钾量符合Logistic模型。结合上述 2个模型 ,分别求出矿物钾最大释放速率常数Kmm、缓效钾最大释放速率常数Krm和速效钾最大供钾速率常数Kam。相关分析表明 ,Kam与花生当季吸钾量、生物学产量和荚果产量以及Krm与花生当季吸钾量有显著水平以上的对数正相关。Krm和Kam可作为评价土壤当季供钾能力的速率指标。

关 键 词:土壤  钾素  模型  动力学  速率常数
收稿时间:3/1/2001 12:00:00 AM
修稿时间:2001年3月1日

KINETIC MODEL AND PARAMETERS OF POTASSIUM IN SOIL-CROP SYSTEM
Zhang Ming-qing,Peng Jia-gui,Yang Jie,Lin Qiong and Yan Ming-juan.KINETIC MODEL AND PARAMETERS OF POTASSIUM IN SOIL-CROP SYSTEM[J].Acta Pedologica Sinica,2003,40(1):89-95.
Authors:Zhang Ming-qing  Peng Jia-gui  Yang Jie  Lin Qiong and Yan Ming-juan
Institution:Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China;Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China;Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China;Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China;Soil and Fertilizer Institute, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China
Abstract:Summary This paper puts forward a new kinetic model of potassium based on Lotka Volterre model in ecology. A pot culture experiment was conducted showing that with the model, dynamic trends could be simulated of readily available potassium and slowly available potassium of soil in the growing period of peanut. The test of potassium absorption indicated that the change in K absorption in different growing periods of peanut accorded with the Logistic model. From the above two models, constants of the maximum release rates for mineral K ( K mm), slowly available K ( K rm) and rapidly available K ( K am) could be got. Correlation analyses showed that the relationship was obvious of K am with K absorption of the current crop, its biomass yield and its peanut yield, and between K rm and K absorption by the current crop. Therefore, K am and K rm could be used as index of potassium release rates in soil.
Keywords:Soil  Potassium  Model  Kinetics  Release rate constant
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