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Selective adsorption of organic pigments on inorganically modified mesoporous biochar and its mechanism based on molecular structure

机译:基于分子结构的有机颜料对有机颜料的选择性吸附及其机理

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The treatment of organic pigments has gained significant attention worldwide owing to the large amounts of pollutants emitted during the process. The main purpose of this study is to prepare an environmentally friendly, low-cost adsorbent with high efficiency with selective adsorption for water purification. An inorganically modified mesoporous biochar derived from sorghum straw was synthesized in one step, and three typical organic pigments including methyl blue (MB), acid orange 7 (AO7), and alizarin red (AR) were selected as cationic, azo, and anionic pigments, respectively. The characterization results demonstrated that Fe3O4 particles successfully attached to the surface of biochar after modification. Although the enhanced adsorption behaviors of the three pigments on the modified biochar were described effectively by the Langmuir isotherm, the as-prepared materials showed a better selective adsorption effect on the cationic pigments. Moreover, the adsorption processes of all targeted pigments were endothermic and governed by entropy. Smaller molecular dimensions, lighter molecular weight, and the low molecular electrostatic potential of MB are responsible for its selective adsorption; however, the enhanced adsorption affinity is attributed to the hydrogen bond and n-pi interaction with the benzene ring of the pigment molecules. (C) 2020 Elsevier Inc. All rights reserved.
机译:由于过程中排放的大量污染物,有机颜料的治疗在全世界都在全世界受到显着关注。本研究的主要目的是制备具有高效率的环保,低成本吸附剂,具有选择性吸附用于水净化。在一个步骤中合成了从高粱秸秆的无机改性的介孔生物炭,并选择了三种典型的有机颜料,包括甲基蓝(MB),酸橙7(AO7)和茜素红(AR)作为阳离子,偶氮和阴离子颜料, 分别。表征结果表明,在修饰后,Fe3O4颗粒成功地连接到生物炭表面上。尽管Langmuir等温器有效地描述了改性生物炭对修饰生物炭上的三种颜料的增强的吸附行为,但是制备的材料对阳离子颜料显示出更好的选择性吸附作用。此外,所有靶向颜料的吸附过程都是吸热的并且受熵的治理。较小的分子尺寸,较轻的分子量和MB的低分子静电潜力负责其选择性吸附;然而,增强的吸附亲和力归因于氢键和与颜料分子的苯环的N-PI相互作用。 (c)2020 Elsevier Inc.保留所有权利。

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