Removal of Volatile Toluene Using K2CO3-Activated Carbon Adsorbents Prepared from Buckwheat Hull

Tomoya Takada, R. Tanaka, Ryoto Ono
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引用次数: 1

Abstract

Carbon adsorbents for use in the removal of gaseous toluene from the air were prepared from buckwheat (Fagopyrum esculentum Moench) hull. A chemically-activated adsorbent was prepared via the impregnation of raw hull powder with potassium carbonate, followed by thermal decomposition. The chemically-activated adsorbent exhibited improved adsorption capacity for toluene compared to the adsorbent prepared without chemical activation. Toluene concentration in the air decreased from 220 ppm to 160 ppm during 24 h of adsorption using unactivated adsorbent. Only a trace amount of toluene remained after the adsorption under the same conditions using K2CO3-activated adsorbent. This improvement was explained based on experimental results, specifically, iodine adsorption tests, methylene blue adsorption tests, and microscopic observations. Chemical activation dramatically increased the specific surface area of the adsorbent and created mesopores capable of adsorbing toluene. This study revealed that a mesoporous adsorbent for use in volatile toluene removal can be prepared from waste biomass (buckwheat hull) by chemical activation using potassium carbonate.
用荞麦壳制备的k2co3 -活性炭吸附剂去除挥发性甲苯
以荞麦壳为原料制备了用于从空气中去除气态甲苯的碳吸附剂。采用碳酸钾浸渍生船壳粉,热分解制备化学活性吸附剂。与未经化学活化制备的吸附剂相比,化学活化吸附剂对甲苯的吸附能力有所提高。无活性吸附剂吸附24 h后,空气中甲苯浓度由220 ppm降至160 ppm。在相同条件下,使用k2co3活化吸附剂吸附后,仅残留微量甲苯。这种改进是基于实验结果,特别是碘吸附试验、亚甲基蓝吸附试验和微观观察来解释的。化学活化极大地增加了吸附剂的比表面积,并产生了能够吸附甲苯的介孔。研究表明,以废弃生物质(荞麦壳)为原料,采用碳酸钾化学活化法制备了一种用于去除挥发性甲苯的介孔吸附剂。
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