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首页> 外文期刊>Chemical Science International Journal >Kinetics of the Adsorption of Anionic andCationic Dyes in Aqueous Solution byLow-Cost Activated Carbons Prepared fromSea Cake and Cotton Cake
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Kinetics of the Adsorption of Anionic andCationic Dyes in Aqueous Solution byLow-Cost Activated Carbons Prepared fromSea Cake and Cotton Cake

机译:海饼和棉饼制备的低成本活性炭吸附水溶液中阴离子和阳离子染料的动力学

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Activated carbons prepared from shea cake (CA-K) and cotton cake (CA-C) were investigated for removal of four dyes in aqueous solutions (0 – 200 mg/L): Reactive Black 5 (RB5), Methylene blue (BM), Reactive Orange 16 (RO16) and Methyl Orange (MO) from water by adsorption. The activated carbons were prepared by chemical activation using phosphoric acid as activation agent. Chemical characteristics of these activated carbons was monitored by Bohem titration and the method of Lopez-Ramon et al. while surface areas of the samples were determined by nitrogen adsorption/desorption isotherm measurement. Activated carbons CA-K and CA-C have the following characteristics: BET surface and the pore volumes are respectively 1148 m~(2)/g and 0.607 cm~(3)/g for CA-K, 584 m~(2)/g and 0.298 cm~(3)/g for CA-C. The two activated carbons synthesized are microporous activated carbon with micropores volume representing more than 70% of the total pore volume. The removal of dyes was studied using batch reactor. The nature of the activated carbon and the dyes are the key factors influencing the contact time. At the equilibrium times (35 to 270 min for CA-K and 60 to 300 min for CA-C), the removal of BM, MO and RO16 was quasi-total while for RB5 the amount adsorbed was about 83%. Based on the adsorption capacity, it was shown that CA-K was more effective than CA-C. Various kinetic models such as pseudo first-order, pseudo second-order and intraparticle diffusion were used to evaluate the mechanism of dyes adsorption on activated carbons. BM, RO16, and MO removal process was found to be governed by second-order kinetic while pseudo-first order kinetic is suitable for RB5 adsorption study. The pHs of the solutions and the amount of activated carbon have strong effect on the adsorption capacity of these dyes. An acid pH (for anionic dyes) and basic pH (for cationic dyes) were favorable for the maximum adsorption of dyes. The isotherm data could be well described by the Freundlich and Langmuir equations in the concentration range of 0–80 mg/L. For the present adsorption process intraparticle diffusion of dyes within the particle was identified to be rate limiting. Both activated carbons were shown to be promising materials for adsorption removal of dyes from aqueous solutions.
机译:研究了由乳木果油饼(CA-K)和棉饼(CA-C)制备的活性炭在水溶液(0 – 200 mg / L)中的四种染料的去除:活性黑5(RB5),亚甲基蓝(BM) ,活性橙16(RO16)和甲基橙(MO)的吸附作用。活性炭通过使用磷酸作为活化剂的化学活化来制备。这些活性炭的化学特性通过Bohem滴定法和Lopez-Ramon等人的方法进行监测。而样品的表面积通过氮吸附/解吸等温线测定来确定。活性炭CA-K和CA-C具有以下特征:BET表面和孔体积分别为:CA-K为1148 m〜(2)/ g和0.607 cm〜(3)/ g,584 m〜(2) / g,CA-C为0.298 cm〜(3)/ g。合成的两种活性炭是微孔活性炭,其微孔体积占总孔体积的70%以上。使用间歇反应器研究了染料的去除。活性炭和染料的性质是影响接触时间的关键因素。在平衡时间(CA-K为35至270分钟,CA-C为60至300分钟)时,BM,MO和RO16的去除几乎全部消除,而RB5的吸附量约为83%。基于吸附容量,表明CA-K比CA-C更有效。各种动力学模型,如伪一级,伪二级和颗粒内扩散,用于评估染料在活性炭上的吸附机理。发现BM,RO16和MO的去除过程受二级动力学控制,而拟一级动力学适用于RB5吸附研究。溶液的pH值和活性炭的量对这些染料的吸附能力有很大的影响。酸性pH(对于阴离子染料)和碱性pH(对于阳离子染料)有利于染料的最大吸附。等温线数据可以用Freundlich和Langmuir方程在0-80 mg / L的浓度范围内很好地描述。对于本发明的吸附方法,将染料在颗粒内的颗粒内扩散确定为速率限制。两种活性炭均被证明是从水溶液中吸附去除染料的有前途的材料。

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