Effect of Chemical Activating Agents on Surface Area and Methylene Blue Uptake Capacity of Activated Carbons

M. Saleem
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Abstract

Activated carbon from Acacia asak (Fabaceae) tree branches was prepared utilizing three-steps- process and H3P04, ZnCl2, H2S04, K2C03, Na0H and K0H as chemical activating agents. In addition to the elemental analysis of precursor materials, produced activated carbon (ATB-AC) was also analyzed for moisture content, ash content, pH value, bulk density, volatile matter, hardness, specific surface area (SBET), iodine number and pore volume. Results revealed that the quality of ATB-AC is well comparable to the available commercial activated carbon (CAC). The SBET was found to be in the order of ATB-AC1> ATB- AC2> ATB-AC4> ATB-AC6> ATB-AC3> ATB-AC5. All the produced ATB-AC demonstrated good MB (methylene blue) removal efficiency, whereas ATB-AC1 and ATB-AC2 (produced from H3P04, and ZnCl2) showed higher efficiency. It is concluded that the chemical activating agent has significant effect on produced AC keeping all other production parameters constant. Among the six studied chemicals, H3P04 and ZnCl2 produced AC exhibited high SBET surface area and MB uptake capacity.  
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化学活化剂对活性炭表面积和吸附亚甲基蓝能力的影响
采用三步法,以H3P04、ZnCl2、H2S04、K2C03、Na0H和K0H为化学活化剂,制备了相思(Fabaceae)树枝活性炭。除前驱体材料的元素分析外,还对制备的活性炭(ATB-AC)进行了含水量、灰分、pH值、容重、挥发物、硬度、比表面积(SBET)、碘值和孔隙体积的分析。结果表明,ATB-AC的质量与现有的商品活性炭(CAC)相当。SBET的大小顺序为:ATB- ac1 > ATB- AC2> ATB- ac4 > ATB- ac6 > ATB- ac3 > ATB- ac5。所有产的ATB-AC均表现出较好的亚甲基蓝脱除效果,其中H3P04和ZnCl2产的ATB-AC1和ATB-AC2脱除效果更好。结果表明,化学活化剂在保持其他生产参数不变的情况下,对产AC有显著的影响。在所研究的6种化学物质中,H3P04和ZnCl2生产的AC具有较高的SBET表面积和MB吸收能力。
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