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Characterization of modified wheat straw, kinetic and equilibrium study about copper ion and methylene blue adsorption in batch mode

机译:改性小麦秸秆的表征,分批模式吸附铜离子和亚甲基蓝的动力学和平衡研究

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摘要

The citric acid modified wheat straw (MWS) was characterized and the adsorption properties of copper ion and methylene blue (MB) onto MWS were investigated in single adsorbate system by batch techniques. The mass loss during thermo-gravimetric analysis can be divided into steps related to moisture, cellulose and lignin. There were carbonyl group, hydroxyl group, etc. on surface of adsorbent from FT1R. Kinetic studies indicated that Cu~(2+) and MB adsorption followed the pseudo-second-order model. The adsorption may be controlled by external mass transfer followed by intra-partide diffusion mass transfer. The adsorption equilibrium data were fitted well by both the Freundlich and Langmuir models. The maximal equilibrium quantity of Cu~(2+) and MB from Langmuir model on MWS was 39.17 and 396.9 mg g~(-1) at 293 K, respectively. The thermodynamics parameters of adsorption systems indicated spontaneous and endothermic process.
机译:表征了柠檬酸改性小麦秸秆(MWS)的特性,并用间歇吸附技术研究了铜离子和亚甲基蓝(MB)在MWS上的吸附性能。热重分析过程中的质量损失可分为与水分,纤维素和木质素有关的步骤。 FT1R的吸附剂表面有羰基,羟基等。动力学研究表明,Cu〜(2+)和MB的吸附遵循伪二级模型。吸附可以通过外部传质,随后是粒子内扩散传质来控制。 Freundlich和Langmuir模型都很好地拟合了吸附平衡数据。 MWS上Langmuir模型的Cu〜(2+)和MB的最大平衡量分别为293 K和396.9 mg g〜(-1)。吸附系统的热力学参数表明自发和吸热过程。

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