Process modelling of waste tyre pyrolysis for gas production using response surface methodology

Odunayo T. Ore , Festus M. Adebiyi
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Abstract

The search for cleaner and renewable energy sources coupled with the need for environmental protection has necessitated the conversion of municipal solid wastes to energy sources. In this study, the pyrolysis of waste tyres in a fixed-bed reactor was carried out in a bid to generate non-condensable gases. The influence of process variables such as sample weight, reaction temperature, and reaction time were modelled and optimized using the central composite design of the response surface methodology. Based on the central composite design of the response surface methodology, the R2, adjusted R2 and predicted R2 values of 0.968, 0.941 and 0.750 respectively, indicated that the model properly fitted the experimental data. This implied the accuracy of the model prediction. The maximum predicted gas yield of 10.212 wt% was estimated under optimal conditions with desirability of 0.697, a dimensionless value indicating the closeness of the combination of input variables to the desired values for the response variables. The gases obtained upon pyrolysis of waste tyres can serve as a source of hydrocarbon gases in the petroleum and petrochemical industry.

Abstract Image

利用响应面法建立废轮胎热解制气工艺模型
为了寻求更清洁的可再生能源,同时也为了保护环境,有必要将城市固体废物转化为能源。本研究在固定床反应器中对废轮胎进行热解,以产生不凝结气体。采用响应面方法的中心复合设计对样品重量、反应温度和反应时间等工艺变量的影响进行了建模和优化。根据响应面法的中心复合设计,R2、调整 R2 和预测 R2 值分别为 0.968、0.941 和 0.750,表明模型正确拟合了实验数据。这意味着模型预测的准确性。在最佳条件下,预测的最大产气量为 10.212 wt%,可取性为 0.697,这是一个无量纲值,表示输入变量的组合与响应变量的期望值的接近程度。废轮胎热解产生的气体可作为石油和石化工业的碳氢化合物气体来源。
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