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Applications of Box–Behnken experimental design coupled with artificial neural networks for biosorption of low concentrations of cadmium using Spirulina (Arthrospira) spp.

机译:Box-Behnken实验设计与人工神经网络结合使用螺旋藻(Arthrospira)spp吸附低浓度镉的应用。

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The present study deals with the application of artificial intelligence techniques coupled with Box–Behnken (BB) design to model the process parameters for biosorption of cadmium using live Spirulina (Arthrospira) spp. as adsorbent in open race way pond with Zarrouk medium. The biomass concentration of Spirulina spp. decreased to half at 4?ppm Cd (II) after 8 days. Based on the LCt50 values, 3.69?ppm (8th day), Spirulina (Arthospira) maxima showed maximum tolerance. Considerable growth and bioaccumulation of Spirulina spp . is observed below 1?ppm and tolerant up to 3?ppm. The cadmium adsorption on Spirulina spp. showed good correlation (R2?=?0.99) when applied to Freundlich equation and data fit into pseudo second order kinetics. A four factorial, three blocks and three level Box–Behnken design with initial concentration (1?ppb to 5?ppb), biosorbant dosage (0.1?gdw to 0.2?gdw), agitation speed (12?rpm to 16?rpm) and pH (6 to 8) as independent variables and percentage adsorption as dependent variable were selected for study. The data were further processed using artificial neural network model and DIRECT algorithm for better optimization. The final Cd (II) concentration of Graphical Figure options.
机译:本研究涉及人工智能技术与Box-Behnken(BB)设计的结合,以利用活螺旋藻(Arthrospira)spp对镉的生物吸附过程参数进行建模。在带有Zarrouk培养基的开放赛道池塘中作为吸附剂。螺旋藻的生物量浓度8天后,在4?ppm Cd(II)下降至一半。根据LCt50值3.69ppm(第8天),最大螺旋藻显示出最大的耐受性。螺旋藻的大量生长和生物积累。观察到低于1?ppm且耐受高达3?ppm。螺旋藻对镉的吸附应用于Freundlich方程时显示出良好的相关性(R 2 ?=?0.99),数据拟合为伪二阶动力学。四因子,三嵌段和三级Box–Behnken设计,其初始浓度(1?ppb至5?ppb),生物吸附剂剂量(0.1?gdw至0.2?gdw),搅拌速度(12?rpm至16?rpm)和选择pH(6至8)作为自变量,并选择吸附百分数作为因变量。使用人工神经网络模型和DIRECT算法对数据进行进一步处理,以实现更好的优化。图形选项的最终Cd(II)浓度。

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