Departamento de Química, Universidade Federal de São Paulo, Diadema, Rua São Nicolau, 210-Centro, Diadema, SP, CEP 09913-030, Brazil.
Departamento de Ciências da Natureza, Matemática e Educação, Universidade Federal de São Carlos, Rodovia Anhanguera, km 174-SP-330, CEP 13600-970 Araras,, São Paulo, Brazil.
Environ Sci Pollut Res Int. 2019 Oct;26(28):28419-28428. doi: 10.1007/s11356-019-05202-1. Epub 2019 Apr 26.
Yeast biomass from ethanol industry (YB) was evaluated as a biosorbent to 17α-ethinylestradiol (EE) alone and along with estrone (EST). This material is rich in sorption sites and has a good cost-benefit ratio, since it is an industrial residue largely produced (around 30 g for each liter of ethanol). A 2-factorial design was carried out to evaluate the sorption capacity of YB for EE considering the variables pH, biosorbent dose (BD), and ionic strength (IS), at two hormone concentration (HC) levels. The best conditions assessed for individual EE adsorption (pH = 10, IS = 0.1 mol/L, and BD = 0.5 mg/L) were also established for adsorption carried out in the presence of EST. Individuals EE and EST experimental sorption capacities (SC) were, respectively, 24.50 ± 0.07 and 0.80 ± 0.07 mg/g, fairly similar to Q (EE, 21.41 ± 1.27 mg/g; EST, 0.93 ± 0.075 mg/g) from Langmuir model. The Freundlich model best fitted the experimental data for EE adsorption (r = 0.9925; χ = 0.5575). The study carried out in the presence of EST showed an associative/competitive sorption process between EE and EST, which may be explained by their similar chemical structures and organic carbon-water partition coefficients K.
酵母生物质来自乙醇工业(YB)被评估为 17α-乙炔基雌二醇(EE)的吸附剂,单独使用和与雌酮(EST)一起使用。这种材料富含吸附位点,且具有良好的成本效益比,因为它是一种工业废料,大量生产(每升乙醇约 30 克)。采用 2 因素设计,考虑 pH、生物吸附剂剂量(BD)和离子强度(IS)变量,评估 YB 对 EE 的吸附能力,在两个激素浓度(HC)水平下进行。还确定了在 EST 存在下进行吸附时,单独吸附 EE 的最佳条件(pH = 10、IS = 0.1 mol/L 和 BD = 0.5 mg/L)。EE 和 EST 的个体实验吸附容量(SC)分别为 24.50 ± 0.07 和 0.80 ± 0.07 mg/g,与 Langmuir 模型中的 Q(EE,21.41 ± 1.27 mg/g;EST,0.93 ± 0.075 mg/g)相当相似。EE 吸附的 Freundlich 模型最适合实验数据(r = 0.9925;χ = 0.5575)。在 EST 存在下进行的研究表明,EE 和 EST 之间存在一种协同/竞争性吸附过程,这可以用它们相似的化学结构和有机碳-水分配系数 K 来解释。