Meili Lucas, da Silva Társila Santos, Henrique Daniely Carlos, Soletti João Inácio, de Carvalho Sandra Helena Vieira, Fonseca Eduardo Jorge da Silva, de Almeida André Ricardo Felkl, Dotto Guilherme Luiz
Separation Systems and Process Optimization Laboratory, Center of Technology, Federal University of Alagoas, Maceió 57072-970, Brazil E-mail:
Quantic and Non Linear Optic Laboratory, Department of Physics, Center of Exact and Natural Sciences, Federal University of Alagoas, Av. Lourival de Melo Mota, s/n, Tabuleiro de Martins, Maceió, AL 57072-970, Brazil.
Water Sci Technol. 2017 Jan;75(1-2):106-114. doi: 10.2166/wst.2016.495.
In this work, the potential of ouricuri (Syagrus coronata) fiber as a novel biosorbent to remove methylene blue (MB) from aqueous solutions was investigated. The fiber was prepared and characterized according to the fundamental features for adsorption. A 2 experimental design was used to evaluate the effects of adsorbent dosage (M), fiber diameter (D) and agitation (A) on the adsorption capacity. In the more adequate conditions, kinetic and equilibrium studies were performed. The experimental design results showed that M = 10 g L), D = 0.595 mm and A = 200 rpm were the more adequate conditions for MB adsorption. Based on the kinetic study, it was found that the adsorption process was fast, being the equilibrium was attained at about 5 min, with 90% of color removal. The isotherm was properly represented by the Sips model, and the maximum adsorption capacity was 31.7 mg g. In brief, it was demonstrated that ouricuri fiber is an alternative biosorbent to remove MB from aqueous media, taking into account the process efficiency and economic viewpoint.
在本研究中,考察了库里棕榈(Syagrus coronata)纤维作为一种新型生物吸附剂从水溶液中去除亚甲基蓝(MB)的潜力。根据吸附的基本特性制备并表征了该纤维。采用二因素实验设计来评估吸附剂用量(M)、纤维直径(D)和搅拌速度(A)对吸附容量的影响。在最适宜的条件下,进行了动力学和平衡研究。实验设计结果表明,M = 10 g/L、D = 0.595 mm和A = 200 rpm是MB吸附的最适宜条件。基于动力学研究发现,吸附过程很快,约5分钟达到平衡,脱色率达90%。等温线可用Sips模型很好地描述,最大吸附容量为31.7 mg/g。简而言之,从工艺效率和经济角度考虑,证明了库里棕榈纤维是从水介质中去除MB的一种替代生物吸附剂。