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首页> 外文期刊>Chemical engineering journal >Synthesis and characterization of a novel amphoteric adsorbent coating for anionic and cationic dyes adsorption: Experimental investigation and statistical physics modelling
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Synthesis and characterization of a novel amphoteric adsorbent coating for anionic and cationic dyes adsorption: Experimental investigation and statistical physics modelling

机译:新型反两性吸附剂涂层对阴离子和阳离子染料吸附的合成与表征:实验研究和统计物理建模

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摘要

A new adsorbent (amphoteric adsorbent coating: AAC) based on composite coating with amphoteric functionality was employed to study the adsorption mechanism of Brilliant Green (BG) and Acid Red 1 (AR1) dyes. This adsorbent was prepared as a coating and supported on cotton cloth by application of a facile method, based on the combined use of smectite-based clay powder, acrylic polymer emulsion (APE) and cationic polyelectrolyte. The novel adsorbent coating was characterized by FE-SEM, EDX, zeta potential and FTIR analysis. Subsequently, the equilibrium adsorption isotherms of AR1 and BG dyes were performed and analyzed at different temperatures (from 303 to 343 K) in order to achieve a thorough comprehension of dyes adsorption mechanism. To this aim, a multilayer model with saturation was developed using statistical physics theory and was applied as a sophisticated tool for data interpretation. The correlations of experimental and theoretical results allowed to understand two distinct behaviours for the adsorption of AR1 and of BG dyes, which were related to the formation of two different adsorbed layers and a variable number of layers, respectively. Based on the parameter of the adopted model, the adsorption geometry of dyes has been described at different temperatures. Interestingly, the adsorption process was energetically typified by estimation of the adsorption energies, which indicated that the adsorption of AR1 and BG dyes were exothermic and endothermic, respectively.
机译:采用基于具有两性官能度的复合涂层的新吸附剂(两性吸附剂涂层:AAC)研究了辉煌的绿色(BG)和酸红1(AR1)染料的吸附机理。将该吸附剂作为涂层制备成涂层并通过施加硅藻土粘土粉末,丙烯酸类聚合物乳液(APE)和阳离子聚电解质的组合使用,通过施加涂层并负载棉布。通过Fe-SEM,EDX,Zeta电位和FTIR分析表征了新型吸附剂涂层。随后,在不同的温度下进行并分析AR1和BG染料的平衡吸附等温,以实现染料吸附机制的彻底理解。为此目的,使用统计物理理论开发了一种具有饱和饱和的多层模型,并应用于数据解释的复杂工具。实验和理论结果的相关性允许理解用于吸附AR1和BG染料的两个不同行为,其分别与形成两种不同的吸附层和可变数量的层有关。基于所采用模型的参数,已经在不同温度下描述了染料的吸附几何形状。有趣的是,通过估计吸附能量,吸附过程能够依赖于吸附能量,表明AR1和BG染料的吸附分别是放热和吸热。

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