Khatoon Hina, Rai J P N
Department of Environmental Science, G.B. Pant University of Agriculture and Technology, Pantnagar (U.S. Nagar), Uttarakhand, India.
Biotechnol Rep (Amst). 2020 Apr 28;26:e00459. doi: 10.1016/j.btre.2020.e00459. eCollection 2020 Jun.
In this study, the optimization of distinctive environmental factors such as pH, temperature, agitation-speed and atrazine-concentration on atrazine degradation by utilizing ABP6 strain, has been done through response-surface-methodology (RSM). The optimum-conditions after analysis for the maximum atrazine degradation were: pH 7.05, temperature 30.4 °C, agitation-speed 145.7 rpm, and atrazine-concentration 200.9 ppm. The prescribed model was approved for high F-value (95.92), very low P-value (<0.01) and non- significant lack of fit (0.1627). It was observed that under the optimized-conditions, the R value of regression models for all the response variables was 0.9897 and the maximum atrazine degradation i.e. 89.7 % was found. Finally for graphical representation, the validated optimum-conditions of variables and responses were simulated using three dimensional plots (3D). The confirmation of the model is successful to suggest the optimization parameters of atrazine degradation under in-situ condition by bacterial isolate employing response-surface-methodology optimization tool of Design expert software (new version 10.0.1).
在本研究中,利用响应面法(RSM)对诸如pH值、温度、搅拌速度和阿特拉津浓度等独特环境因素对ABP6菌株降解阿特拉津的影响进行了优化。经分析,阿特拉津最大降解率的最佳条件为:pH值7.05、温度30.4℃、搅拌速度145.7转/分钟、阿特拉津浓度200.9ppm。规定模型的F值较高(95.92)、P值极低(<0.01)且失拟不显著(0.1627),得到了验证。观察发现,在优化条件下,所有响应变量的回归模型R值为0.9897,阿特拉津的最大降解率为89.7%。最后,为了进行图形表示,使用三维图(3D)模拟了经过验证的变量和响应的最佳条件。该模型的验证成功地通过使用Design expert软件(新版本10.0.1)的响应面法优化工具,提出了原位条件下细菌分离株降解阿特拉津的优化参数。