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Carbonization and CO2 activation of scrap tires: Optimization of specific surface area by the Taguchi method

机译:废轮胎的碳化和CO2活化:通过Taguchi方法优化比表面积

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摘要

This research demonstrates the production of activated carbon from scrap tires via physical activation with carbon dioxide. A newly constructed apparatus was utilized for uninterrupted carbonization and activation processes. Taguchi experimental design (L16) was applied to conduct the experiments at different levels by altering six operating parameters. Carbonization temperature (550-700 A degrees C), activation temperature (800-950 A degrees C), process duration (30-120 min), CO2 flow rate (400 and 600 cc/min) and heating rate (5 and 10 A degrees C/min) were the variables examined in this study. The effect of parameters on the specific surface area (SSA) of activated carbon was studied, and the influential parameters were identified employing analysis of variance (ANOVA). The optimum conditions for maximum SSA were: carbonization temperature=650 A degrees C, carbonization time=60 min, heating rate=5 A degrees C/min, activation temperature= 900 A degrees C, activation time=60 min and CO2 flow rate=400 cc/min. The most effective parameter was activation temperature with an estimated impact of 49%. The activated carbon produced under optimum conditions was characterized by pore and surface structure analysis, iodine adsorption test, ash content, scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR). The process yield for optimized activated carbon was 13.2% with the following properties: specific surface area=437 m(2)/g, total pore volume=0.353 cc/g, iodine number=404.7 mg/g and ash content=13.9% along with an amorphous structure and a lot of oxygen functional groups. These properties are comparable to those of commercial activated carbons.
机译:这项研究证明了废轮胎通过二氧化碳的物理活化来生产活性炭。一种新构造的设备被用于不间断的碳化和活化过程。 Taguchi实验设计(L16)通过更改六个操作参数应用于不同级别的实验。碳化温度(550-700 A摄氏度),活化温度(800-950 A摄氏度),过程持续时间(30-120分钟),CO2流量(400和600 cc / min)和加热速率(5和10 A C / min)是本研究中检查的变量。研究了参数对活性炭比表面积(SSA)的影响,并通过方差分析(ANOVA)确定了影响参数。最大SSA的最佳条件是:碳化温度= 650 A摄氏度,碳化时间= 60分钟,加热速率= 5 A摄氏度/分钟,活化温度= 900 A摄氏度,活化时间= 60分钟,CO2流量= 400 cc /分钟最有效的参数是活化温度,估计影响为49%。通过孔隙和表面结构分析,碘吸附试验,灰分,扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)表征了在最佳条件下生产的活性炭。优化的活性炭的工艺产率为13.2%,具有以下特性:比表面积= 437 m(2)/ g,总孔体积= 0.353 cc / g,碘值= 404.7 mg / g,灰分= 13.9%具有无定形结构和许多氧官能团。这些性质与商业活性炭相当。

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