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Preparation and Characterization of a Novel Activated Carbon from Vine Shoots by ZnCl2 Activation and Investigation of Its Rifampicine Removal Capability

机译:ZnCl2活化从藤条中制备新型活性炭及其表征及对利福平的去除能力研究

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Preparation and characterization of a novel activated carbon obtained from vine shoots by ZnCl2 activation and its rifampicine removal capacity were investigated in this study. The effects of activation temperature and impregnation ratio (precursor/ZnCl2) on the activated carbon properties were investigated. The prepared activated carbon was characterized by BET surface area, surface functional group analysis by Boehm's titration and FT-IR analysis, pH(pzc), iodine number, SEM-EDX, and particle size distribution. The results showed that the surface area, pore size, and pore volume of the activated carbon increased with the increasing temperature and impregnation ratio and reached maxima at the impregnation ratio of 40/30 at 700 degrees C. Under the optimal conditions, it was determined that the BET surface area, total pore volume, iodine number, and pH(pzc) of the activated carbon were 1689 m(2)/g, 0.842 cm(3)/g, 1276 mg/g, and 4.8, respectively, and it has mainly acidic functional groups (total 0.2516 meq/g) on its surface. The activated carbon obtained was evaluated for rifampicine removal efficiency depending on contact time, adsorbent dosage, and initial concentration of rifampicine. Maximum adsorption capacity of rifampicine by the activated carbon (Q degrees) was determined according to Langmuir adsorption isotherm. The adsorption data was best fitted to the Langmuir isotherm with R-2 of 0.983 and Q degrees was found to be 476.2 mg/g.
机译:本研究研究了通过ZnCl2活化从藤条中获得的新型活性炭的制备,表征及其对利福平的去除能力。研究了活化温度和浸渍率(前体/ ZnCl2)对活性炭性能的影响。通过BET比表面积,通过Boehm滴定法和FT-IR分析,pH(pzc),碘值,SEM-EDX和粒度分布对表面官能团进行表征。结果表明,活性炭的表面积,孔径和孔体积随着温度和浸渍率的增加而增加,并在700℃下以40/30的浸渍率达到最大值。确定了最佳条件活性炭的BET表面积,总孔体积,碘值和pH(pzc)分别为1689 m(2)/g、0.842 cm(3)/ g,1276 mg / g和4.8,并且它的表面上主要有酸性官能团(总计0.2516 meq / g)。根据接触时间,吸附剂剂量和利福平的初始浓度,对获得的活性炭的利福平去除效率进行评估。根据Langmuir吸附等温线,确定活性炭对利福平的最大吸附容量(Q度)。吸附数据最适合Langmuir等温线,R-2为0.983,Q度为476.2 mg / g。

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