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Analysis of the behavior for operation parameters in the anaerobic digestion process with thermal pretreatment, using fuzzy logic

机译:使用模糊逻辑分析热预处理厌氧消化过程中操作参数的行为

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This article presents a study that identifies the variables with greatest impact on the biogas and methane production over a process with thermal pretreatment, to accelerate anaerobic digestion process in sewage sludge in a water treatment plant, for a poultry processing factory, by using fuzzy logic. The designed fuzzy logic model includes 688 inference rules, with a correlation of 99.3% between prediction data against experimental data, for the biogas variable; and 97% for the methane variable. The predictions of the fuzzy logic model were analyzed with response surface models, and it is concluded that the temperature and operating time variables are mutually determining in the biogas and methane production. Likewise, this research provides a methodology for the design of an expert decision support system that allows to evaluate and optimize a mesophilic anaerobic digestion process through a previous thermal treatment in order to improve the yields of biogas and methane in the treatment of effluent sludge from agroindustry. These results propose to diffuse logic as a reliable tool to make comparisons, and predictions for operation variables management on the treatment of residual sludge with thermal pretreatment on anaerobic digestion.
机译:本文提出了一项研究,该研究使用模糊逻辑确定了采用热预处理的过程中对沼气和甲烷生产产生最大影响的变量,从而为家禽加工厂的水处理厂的污水污泥加速了厌氧消化过程。设计的模糊逻辑模型包括688条推理规则,对于沼气变量,预测数据与实验数据之间的相关性为99.3%。甲烷变量为97%。用响应面模型对模糊逻辑模型的预测进行了分析,得出结论:温度和运行时间变量是沼气和甲烷生产中相互决定的。同样,该研究为专家决策支持系统的设计提供了一种方法,该系统可通过先前的热处理评估和优化中温厌氧消化过程,以提高处理农业工业废水污泥的沼气和甲烷的产率。 。这些结果表明,将扩散逻辑作为进行比较的可靠工具,并通过厌氧消化的热预处理来处理残留污泥的操作变量管理的预测。

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