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Preparation of CTAB-functionalized aqai stalk and its efficient application as adsorbent for the removal of Direct Blue 15 and Direct Red 23 dyes from aqueous media

机译:CTAB官能化AQAI茎秆的制备及其高效应用作为去除直接蓝15并从含水培养基中直接红23染料的吸附剂

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In this work, a new adsorbent material based on the chemical modification of aqai stalk (AS) with hexadecyltrimethylammonium bromide (CTAB) was proposed, forming a new material called AS-CTAB. The characterization data from the AS-CTAB adsorbent indicated that the biomass was chemically modified by the surfactant. The prepared material was successfully used as an adsorbent for the removal of Direct Blue 15 (DB-15) and Direct Red 23 (DR-23) from aqueous solutions. For both dyes, adsorption followed the Avrami kinetic model. The kinetic data were better fitted using the nonlinear Avrami fractional model for both dyes. The contact time between the adsorbent and adsorbate was fixed at 180 and 30min for DB-15 and DR-23, respectively. This remarkable difference of contact time between the dyes with AS-CTAB adsorbent was attributed to the difference in the physicochemical characteristics of the dyes such as size of the molecule, hydrophilic-lipophilic balance, and polar surface area (PA). The Liu isotherm model displayed Q(max) of 394.2 and 454.9mgg(-1) for DB-15 and DR-23, respectively, at 45 degrees C. Since the AS-CTAB is not a porous material, electrostatic interaction was the main mechanism involved in the adsorption process for both dyes. The thermodynamic adsorption reaction was shown to be a spontaneous and endothermic process. The AS-CTAB adsorbent was also tested in the treatment of synthetic dye effluents and presented a removal of up to 95.41% of a simulated effluent containing several dyes and high saline concentration.
机译:在这项工作中,提出了一种基于Aqai茎(AS)的化学改性的新吸附材料,形成了具有十六烷基三甲基溴化铵(CTAB)的新材料,形成了一种称为As-CTAB的新材料。来自AS-CTAB吸附剂的表征数据表明,生物质由表面活性剂化学改性。制备的材料成功地用作去除直接蓝15(DB-15)和直接红23(DR-23)的吸附剂。对于染料,吸附遵循Avrami动力学模型。使用非线性Avrami分数模型适用于两种染料的非线性Avrami分数更好。吸附剂和吸附物之间的接触时间分别在180和30min中固定为DB-15和DR-23。具有AS-CTAB吸附剂之间的染料之间的接触时间差异归因于染料的物理化学特性,例如分子的尺寸,亲水性 - 亲脂性平衡和极性表面积(PA)的差异。刘等温模型显示394.2和454.9mgg(-1)的DB-15和DR-23分别为45摄氏度,因为AS-CTAB不是多孔材料,静电相互作用是主要的两种染料吸附过程中涉及的机制。显示热力吸附反应是自发性和吸热的过程。还在合成染料流出物处理中测试AS-CTAB吸附剂,并呈现高达95.41%的含有几种染料和高盐水浓度的模拟污水。

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