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首页> 外文期刊>Chemical Engineering Research Bulletin >Optimization of Flooded Soil Recovery via Plant- Arbuscular Mycorrhizal Fungi Symbiotic Interaction
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Optimization of Flooded Soil Recovery via Plant- Arbuscular Mycorrhizal Fungi Symbiotic Interaction

机译:通过植物-丛枝菌根真菌共生相互作用优化水淹土壤的恢复

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Flooded soil recovery was optimized using experimental design methodology by manipulating the symbiotic relationship between soil fungi, Arbuscular Mycorrhizal Fungi (AMF) and the host plant (Allium cepa L.) planted in a soil containing AMF (SA). This was achieved by measuring the amount of nutrient (nitrogen, phosphorus and potassium) uptake by AMF using HACH spectrophotometer after 14 days of planting in several condition suggested by Design-Expert? software (Ver 7.1.6). In order to determine the optimum condition for the AMF to recover the flooded soil, the experiments were designed according to a central composite design in two variables following the Response Surface Methodology (RSM). A quadratic polynomial model was generated to predict soil recovery. R2 for nitrogen, phosphorus and potassium was found at 0.89, 0.96 and 0.94 respectively of the range for the factors studied namely 24-32 ml water content and 4.0-6.0 cm depth of soil. Among two parameters, depth of soil showed significant effect on the recovery of flooded soil for phosphorus and potassium while for nitrogen both parameters showed insignificant effect. Model validation experiments showed good correspondence between experimental and predicted values at error for N, P, and K at 7.0%, 1.86% and 2.65% respectively. The optimal condition for soil recovery was at 28 ml soil water content and 5 cm soil depth. At this condition, the nutrient uptake by AMF was predicted to be at their maximum rate where the concentration of nutrients increased approximately by 2 to 3 times from the initial nutrient concentration. Chemical Engineering Research Bulletin 19(2017) 67-74.
机译:使用实验设计方法,通过控制土壤真菌,丛枝菌根真菌(AMF)和种植在含有AMF(SA)的土壤中的寄主植物(ceium Lepa)之间的共生关系,优化了淹水土壤的恢复。这是通过在Design-Expert?建议的几种条件下种植14天后使用HACH分光光度计测量AMF对AMF吸收的养分(氮,磷和钾)的量来实现的。软件(版本7.1.6)。为了确定AMF恢复淹没土壤的最佳条件,根据中央复合设计,按照响应面方法(RSM)在两个变量中进行了实验设计。生成二次多项式模型来预测土壤恢复。氮,磷和钾的R2分别为所研究因素的范围(24-32 ml含水量和4.0-6.0 cm土壤深度)的0.89、0.96和0.94。在两个参数中,土壤深度对淹水土壤中的磷和钾的恢复表现出显着影响,而对于氮而言,两个参数均显示不显着的影响。模型验证实验显示,N,P和K的误差分别为7.0%,1.86%和2.65%时,实验值与预测值之间具有良好的对应关系。土壤恢复的最佳条件是土壤含水量为28 ml,土壤深度为5 cm。在此条件下,AMF吸收的养分预计达到最大速率,此时养分的浓度比初始养分的浓度增加约2至3倍。化学工程研究通报19(2017)67-74。

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