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Reaction-Multi Diffusion Model for Nutrient Release and Autocatalytic Degradation of PLA-Coated Controlled-Release Fertilizer

机译:PLA包膜控释肥料养分释放与自催化降解的反应-扩散模型

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A mathematical model for the reaction-diffusion equation is developed to describe the nutrient release profiles and degradation of poly(lactic acid) (PLA)-coated controlled-release fertilizer. A multi-diffusion model that consists of coupled partial differential equations is used to study the diffusion and chemical reaction (autocatalytic degradation) simultaneously. The model is solved using an analytical-numerical method. Firstly, the model equation is transformed using the Laplace transformation as the Laplace transform cannot be inverted analytically. Numerical inversion of the Laplace transform is used by employing the Zakian method. The solution is useful in predicting the nutrient release profiles at various diffusivity, concentration of extraction medium, and reaction rates. It also helps in explaining the transformation of autocatalytic concentration in the coating material for various reaction rates, times of reaction, and reaction-multi diffusion. The solution is also applicable to the other biodegradable polymer-coated controlled-release fertilizers.
机译:建立了反应扩散方程的数学模型,以描述养分释放曲线和聚乳酸(PLA)涂层控释肥料的降解。由耦合的偏微分方程组成的多重扩散模型用于同时研究扩散和化学反应(自催化降解)。使用解析数值方法求解模型。首先,使用拉普拉斯变换对模型方程进行变换,因为拉普拉斯变换无法解析地反转。通过采用Zakian方法对Laplace变换进行数值反演。该解决方案可用于预测各种扩散率,提取介质浓度和反应速率下的养分释放曲线。它还有助于解释涂料中自催化浓度在各种反应速率,反应时间和反应多重扩散下的转化。该溶液也适用于其他可生物降解的聚合物包衣控释肥料。

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