Department of Sanitary and Environmental Engineering, Federal University of Santa Maria, Santa Maria, RS, 97105-900, Brazil.
Chemical Engineering Department, Federal University of Santa Maria, Santa Maria, RS, 97105-900, Brazil.
Environ Sci Pollut Res Int. 2019 Dec;26(36):36967-36977. doi: 10.1007/s11356-019-06792-6. Epub 2019 Nov 19.
The adsorption of acid red 97 dye (RED 97) by the waste of the filamentous fungus Beauveria bassiana was analyzed. The adsorbent was obtained as a waste of a fermentative process, and characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FT-IR), X-ray powder diffractometry (XRD), and specific surface area (BET). After the characterization, adsorption tests were carried out to determine the ideal conditions of pH, adsorbent mass, and contact time for the process. Adsorption isotherms, thermodynamic studies, and the treatment of textile effluent were also investigated. The adsorbent characterization allowed the visualization of its amorphous structure, with irregular and heterogeneous particles. The pore diameter was 51.9 nm and the surface area was 0.247 m g. 1.2 g L of the adsorbent and pH of 2.0 were the ideal conditions for RED 97 adsorption. The pseudo-second-order kinetic model was the most appropriate to represent the experimental data, being the equilibrium reached in about 110 min. The Langmuir model was the most suitable to represent the equilibrium data, with maximum adsorption capacity of 194.1 mg g at 45 °C. The adsorption processes was thermodynamically spontaneous, favorable, and exothermic. In the treatment of a real textile effluent, 5 g L of the spores was capable to decolorize 70% of the solution. Therefore, spore wastes of Beauveria bassiana were promising for RED 97 adsorption.
对球孢白僵菌废料吸附酸性红 97 染料(RED 97)进行了分析。吸附剂是从发酵过程的废料中获得的,并通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FT-IR)、X 射线粉末衍射(XRD)和比表面积(BET)进行了表征。在表征之后,进行了吸附试验,以确定该过程的理想 pH 值、吸附剂质量和接触时间条件。还研究了吸附等温线、热力学研究以及纺织废水的处理。吸附剂的表征允许观察到其无定形结构,具有不规则和不均匀的颗粒。孔径为 51.9nm,比表面积为 0.247m g。吸附剂用量为 1.2gL 和 pH 值为 2.0 是 RED 97 吸附的理想条件。准二级动力学模型最适合表示实验数据,在大约 110min 内达到平衡。Langmuir 模型最适合表示平衡数据,在 45°C 时最大吸附容量为 194.1mg g。吸附过程是自发的、有利的和放热的。在处理实际纺织废水中,5gL 的孢子能够使 70%的溶液脱色。因此,球孢白僵菌的孢子废料有望用于 RED 97 的吸附。