碳化
活性炭
打赌理论
核化学
试剂
产量(工程)
比表面积
化学
材料科学
碳纤维
吸附
有机化学
催化作用
复合材料
复合数
作者
Cansu Guclu,Koray Alper,Murat Erdem,Kubilay Tekin,Selhan Karagöz
标识
DOI:10.1016/j.scp.2021.100410
摘要
This study reports the co-carbonization of waste truck tires (WTT) and spent tea leaves (STL) at different blend ratios using chemical activating reagents (KOH and ZnCl 2 ) carried out at 800 °C. The highest BET surface area from blends was 527.24 m 2 /g, obtained using ZnCl 2 activation at a blend ratio of 1:3 (WTT/STL). Activated carbons yields in the blends were the highest at a blend ratio of 3:1 (WTT/STL) for both chemical activations. They were 24.37 wt% for KOH activation and 41.59 wt% for ZnCl 2 activation. ZnCl 2 activation produced higher carbon and lower oxygen content than those using KOH activation. Regardless of the type of feed, the oxygen removal efficiency of ZnCl 2 was higher than that of KOH under identical conditions. Among all the activated carbons produced, the BET surface area of the activated carbons obtained from the carbonization of STL alone was highest for both activations. The BET surface area of the activated carbons produced in this study was comparable to that of activated carbons produced commercially. • Activated carbons were prepared from waste truck tyres and spent tea leaves. • The effects of blend ratio on the yield and properties of the activated carbons were investigated. • The highest BET surface area from blends was 527.24 m2/g. • The highest yields were 24.37 wt% for KOH activation and 41.59 wt% for ZnCl 2 activation. • The carbon contents were in the range between 66. 25 and 72.01 wt% for KOH, 68.12 and 74.96 wt% for ZnCl 2 .
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