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Modeling and Multiresponse Optimization for Anaerobic Codigestion of Oil Refinery Wastewater and Chicken Manure by Using Artificial Neural Network and the Taguchi Method

机译:人工神经网络和Taguchi法对炼油废水和鸡粪厌氧消化的建模和多响应优化。

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摘要

To study the optimum process conditions for pretreatments and anaerobic codigestion of oil refinery wastewater (ORWW) with chicken manure, L9 (34) Taguchi's orthogonal array was applied. The biogas production (BGP), biomethane content (BMP), and chemical oxygen demand solubilization (CODS) in stabilization rate were evaluated as the process outputs. The optimum conditions were obtained by using Design Expert software (Version 7.0.0). The results indicated that the optimum conditions could be achieved with 44% ORWW, 36°C temperature, 30 min sonication, and 6% TS in the digester. The optimum BGP, BMP, and CODS removal rates by using the optimum conditions were 294.76 mL/gVS, 151.95 mL/gVS, and 70.22%, respectively, as concluded by the experimental results. In addition, the artificial neural network (ANN) technique was implemented to develop an ANN model for predicting BGP yield and BMP content. The Levenberg-Marquardt algorithm was utilized to train ANN, and the architecture of 9-19-2 for the ANN model was obtained.
机译:为了研究用鸡粪对炼油废水(ORWW)进行预处理和厌氧共消化的最佳工艺条件,采用了L9(3 4 )Taguchi正交阵列。稳定速率下的沼气产量(BGP),生物甲烷含量(BMP)和化学需氧量增溶(CODS)被评估为过程输出。最佳条件是通过使用Design Expert软件(版本7.0.0)获得的。结果表明,在消化池中使用44%的ORWW,36°C的温度,30分钟的超声处理和6%的TS可以达到最佳条件。实验结果表明,最佳条件下的最佳BGP,BMP和CODS去除率分别为294.76 mL / gVS,151.95 mL / gVS和70.22%。此外,还采用了人工神经网络(ANN)技术来开发用于预测BGP产量和BMP含量的ANN模型。利用Levenberg-Marquardt算法训练人工神经网络,得到了人工神经网络模型的9-19-2结构。

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