Conventional regeneration of spent activated carbon from brewer’s spent grain

M. Ejikeme, Ebere M., Patrick C.N., Mr. Nwosu, David C
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Abstract

This work studied conventional regeneration of saturated activated carbon using muffle furnace. The activated carbon was prepared from brewer’s spent grain using carbonization and chemical activation with potassium hydroxide. It was saturated with methylene blue dye and regenerated using muffle furnace. Effect of 30% hydrogen peroxide (H202 ) as an oxidant in the regeneration process was studied. Adsorption – regeneration process was studied for six cycles. Regeneration condition was optimized using central composite design (CCD). Effect of regeneration temperature and time on the adsorptive capacity of regenerated carbon was studied for one cycle. Adsorptive capacity and regeneration efficiency were found to decrease with increase in the number of cycles. 30% H202 had a tremendous effect on the adsorptive capacity of the regenerated carbon. The adsorptive capacity increased as the temperature grew from 200°C to 500°C, but dropped after being raised to 6,000°C. Adsorptive capacity increased from 10 minutes to 30 minutes, but declined to 50 minutes. The Quadratic model was used to regenerate a long network of electronics devices. In this experiment, the parameters were exactly what were required for optimal adsorption: temperature of 537.76 degrees Celsius, time of 29.34 minutes, and an initial dye concentration of 100mg/L with estimated adsorptive capacity of 54.2827mg/L. This was an extremely small mistake of 0.02 percent following validation.
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啤酒用废谷物中废活性炭的常规再生
本文研究了利用马弗炉对饱和活性炭进行常规再生。以啤酒废粮为原料,采用炭化和氢氧化钾化学活化法制备活性炭。用亚甲蓝染料浸透,用马弗炉再生。研究了30%过氧化氢(H202)作为氧化剂在再生过程中的作用。对吸附再生工艺进行了六次循环研究。采用中心复合设计(CCD)对再生条件进行优化。在一个循环中,研究了再生温度和时间对再生炭吸附性能的影响。吸附量和再生效率随循环次数的增加而降低。30% H202对再生炭的吸附性能影响较大。当温度从200℃升高到500℃时,吸附量增加,但当温度升高到6000℃时,吸附量下降。吸附量从10分钟增加到30分钟,但下降到50分钟。二次元模型被用来重建一个长网络的电子设备。在本实验中,最佳吸附所需的参数正是:温度537.76摄氏度,时间29.34分钟,初始染料浓度100mg/L,估计吸附量为54.2827mg/L。在验证之后,这是一个极小的0.02%的错误。
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