Laboratório de Materiais Poliméricos e Biossorventes, Universidade Federal de São Carlos, Araras, SP, 13600-970, Brazil.
Grupo de Análises Químicas Aplicadas, Universidade Federal de São Paulo, Diadema, SP, 09913-030, Brazil.
Environ Sci Pollut Res Int. 2018 Dec;25(36):35895-35905. doi: 10.1007/s11356-018-1615-0. Epub 2018 Mar 8.
Sugarcane bagasse and hydroponic lettuce roots were used as biosorbents for Cu(II), Fe(II), Zn(II), and Mn(II) removal from monoelemental solutions in aqueous medium, at pH 5.5, using batch procedures. These biomasses were studied in natura (lettuce roots, NLR, and sugarcane bagasse, NSB) and modified with HNO (lettuce roots, MLR, and sugarcane bagasse, MSB). Langmuir, Freundlich, and Dubinin-Radushkevich non-linear isotherm models were used to evaluate the data from the metal ion adsorption assessment. The maximum adsorption capacities (q) in monoelemental solution, calculated using the Langmuir isothermal model for Cu(II), Fe(II), Zn(II), and Mn(II), were respectively 24.61, 2.64, 23.04, and 5.92 mg/g for NLR; 2.29, 16.89, 1.97, and 2.88 mg/g for MLR; 0.81, 0.06, 0.83, and 0.46 mg/g for NSB; and 1.35, 2.89, 20.76, and 1.56 mg/g for MSB. The Freundlich n parameter indicated that the adsorption process was favorable for Cu(II) uptake by NLR; Fe(II) retention by MLR and MSB; and Zn(II) sorption by NSB, MLR, and NSB and favorable for all biomasses in the accumulation of Mn(II). The Dubinin-Radushkevich isotherm was applied to estimate the energy (E) and type of adsorption process involved, which was found to be a physical one between analytes and adsorbents. Organic groups such as O-H, C-O-C, CH, and C=O were found in the characterization of the biomass by FTIR. In the determination of the biomass surface charges by using blue methylene and red amaranth dyes, there was a predominance of negative charges.
甘蔗渣和水培生菜根被用作生物吸附剂,用于从水溶液中单元素溶液中去除 Cu(II)、Fe(II)、Zn(II) 和 Mn(II),使用分批程序,pH 值为 5.5。这些生物质在自然状态下进行了研究(生菜根 NLR 和甘蔗渣 NSB),并用 HNO 进行了改性(生菜根 MLR 和甘蔗渣 MSB)。Langmuir、Freundlich 和 Dubinin-Radushkevich 非线性等温模型用于评估金属离子吸附评估数据。使用 Langmuir 等温模型计算单元素溶液中最大吸附容量 (q),Cu(II)、Fe(II)、Zn(II) 和 Mn(II) 的吸附容量分别为 24.61、2.64、23.04 和 5.92 mg/g NLR;2.29、16.89、1.97 和 2.88 mg/g MLR;0.81、0.06、0.83 和 0.46 mg/g NSB;1.35、2.89、20.76 和 1.56 mg/g MSB。Freundlich n 参数表明,吸附过程有利于 NLR 对 Cu(II)的吸附;MLR 和 MSB 对 Fe(II)的保留;NSB、MLR 和 NSB 对 Zn(II)的吸附,以及所有生物质对 Mn(II)的积累都有利。Dubinin-Radushkevich 等温线用于估计能量 (E) 和吸附过程的类型,发现这是分析物与吸附剂之间的物理过程。FTIR 对生物质的表征发现了 O-H、C-O-C、CH 和 C=O 等有机基团。在使用蓝色亚甲蓝和红色苋菜染料测定生物质表面电荷时,存在大量负电荷。