饮料工业固体废弃物菊花活性炭吸附亚甲基蓝的动力学及等温研究

IF 0.2 Q4 ENERGY & FUELS Journal of The Japan Institute of Energy Pub Date : 2022-07-20 DOI:10.3775/jie.101.122
Chaiwat Rattanet, Jesper T. N. Knijnenburg, Yuvarat Ngernyen
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引用次数: 0

摘要

以饮料工业固体废弃物菊花为原料,采用氯化锌(ZnCl 2)、磷酸(h3po4)和氯化铁(fecl3)化学活化法制备活性炭。简单地说,将原料在每种化学剂的溶液中按重量比1:2浸泡不同的时间(1,6,12,和24小时),然后碳化在500°C 1 h。获得激活碳的表面积和孔隙度特征的氮气吸附˗196°C的最高表面面积728 m2 / g和总孔隙体积的0.48厘米3 / g从菊花激活2 ZnCl浸泡时间24 h。最高的活性炭表面积当时其他物理化学性质和特征用于吸附亚甲基蓝(MB)。以批处理的方式考察了接触时间和初始MB浓度的影响。平衡吸附时间为60 min,吸附数据符合准二级动力学。吸附等温线最好用Langmuir模型来描述。以菊花为原料制备的活性炭对MB的最大单层吸附量为491.0 mg/g,高于化学活化法制备的其他生物质活性炭。因此,菊花基活性炭可作为废水中甲基溴的替代吸附剂。
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Kinetics and Isotherm Studies of Methylene Blue Adsorption on Activated Carbon Derived from Chrysanthemum: Solid Waste of Beverage Industry
Chrysanthemum, a solid waste from beverage industry, was used as a raw material for the preparation of activated carbon through chemical activation with zinc chloride (ZnCl 2 ), phosphoric acid (H 3 PO 4 ) and ferric chloride (FeCl 3 ). Briefly, the raw material was soaked in solutions of each chemical agent with ratio of 1:2 by weight for different times (1, 6, 12, and 24 h) and then carbonized at 500 ° C for 1 h. The obtained activated carbons were characterized for their surface area and porosity by nitrogen gas adsorption at ˗ 196 ° C. The highest surface area of 728 m 2 /g and total pore volume of 0.48 cm 3 /g were obtained from chrysanthemum activated with ZnCl 2 for a soaking time of 24 h. The activated carbon with the highest surface area was then characterized for other physicochemical properties and used for the adsorption of methylene blue (MB). The effects of contact time and initial MB concentration were investigated in batch mode. The equilibrium adsorption time was 60 min and the adsorption data followed the pseudo-second order kinetics. The adsorption isotherm was best described by the Langmuir model. The maximum monolayer adsorption capacity of activated carbon prepared from chrysanthemum for MB was 491.0 mg/g, which is higher than activated carbons prepared from other biomasses using chemical activation. Therefore, chrysanthemum-based activated carbon could be used as alternative adsorbent for MB adsorption from waste effluents.
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