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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effective adsorption of chloroanilines from aqueous solution by m-phenylenediamine modified hyper-cross-linked resin: Kinetic, equilibrium, and thermodynamic studies
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Effective adsorption of chloroanilines from aqueous solution by m-phenylenediamine modified hyper-cross-linked resin: Kinetic, equilibrium, and thermodynamic studies

机译:通过M-苯二胺改性超交联树脂的水溶液中氯偶胺的有效吸附:动力学,平衡和热力学研究

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Herein m-phenylenediamine was employed as the introduced polar groups reagent to prepare a novel aminomodified hyper-cross-linked resin (MPDAMR) by two successive Friedel-Crafts reactions. The adsorption capacifies of MPDAMR for two chloroanilines in aqueous solution were compared with two commercial resins (macroporous resin XAD-4 and hyper-cross-linked resin NDA150) and its precursor (post-cross-linked resin, PCLR). MPDAMR possessed high BET surface area (1040.7 m(2)/g), abundant micropores, and plentiful amino groups. The adsorption efficiencies of 4-chloroaniline (4-CA) and 2,4-dichloroaniline (2,4-DCA) by MPDAMR were 78.7% and 97.8%, respectively, which were much higher than that of XAD-4, NDA150, and PCLR. The excellent adsorption capacity of MPDAMR for chloroanilines was attributed to its high surface area, abundant micropores, primary amine driven enhanced polarity, and pi-pi stacking interactions. Pseudo first-order kinetics equation and Freundlich equation were capable of explaining the adsorption process of chloroanilines onto MPDAMR. Both the intraparticle diffusion and film diffusion were rate-controlling steps. The thermodynamics results attested that the adsorption of chloroanilines was a spontaneous exothermic process. The saturated adsorption capacities of MPDAMR for 4-CA and 2,4-DCA were 213.8 mg/g and 278.4 mg/g dry resin, respectively. Additionally, MPDAMR had good regenerated adsorption capacity after five adsorption-desorption cycles. Thus, MPDAMR was a potential adsorbent used to remove chloroaniline compounds from industrial effluent.
机译:在此,使用M-苯二胺作为引入的极性基团试剂,以通过两个连续的Friedel-Crafts反应制备新型胺型超交联树脂(MPDamr)。将MPDamR的吸附容量与两种商业树脂(大孔树脂XAD-4和超交联树脂NDA150)及其前体(交联后结树脂,PCLR)进行比较。 MPDAMR拥有高下注表面积(1040.7米(2)/ g),丰富的微孔和丰富的氨基。 4-氯苯胺(4-CA)和2,4-二氯苯胺(2,4-DCA)的吸附效率分别为78.7%和97.8%,高于XAD-4,NDA150和PCLR。 MPDamr用于氯苯胺的优异吸附能力归因于其高表面积,微孔丰富,伯胺驱动增强极性和PI-PI堆叠相互作用。 Pseudo首级动力学方程和Freundlich方程能够将氯苯胺的吸附过程解释在MPDAMR上。椎间内部扩散和薄膜扩散都是速率控制步骤。热力学结果证明了氯苯胺的吸附是一种自发放热过程。 MPDamr为4-Ca和2,4-DCA的饱和吸附能力分别为213.8mg / g和278.4mg / g干树脂。另外,在五种吸附 - 解吸循环后,MPDamr具有良好的再生吸附能力。因此,MPDamr是用于从工业流出物中除去氯苯胺化合物的潜在吸附剂。

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