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一种用于去除活性纺织染料的新型吸附剂:TDPA-KCl。

A novel sorbent for removal of reactive textile dye: TDPA-KCl.

机构信息

Department of Chemistry, Faculty of Arts and Science, Hitit University, Campus Arts and Science, 19030, Corum, Turkey.

Department of Chemistry, Faculty of Arts and Science, Eskişehir Osmangazi University, Eskişehir, Turkey.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(23):23279-23291. doi: 10.1007/s11356-019-05466-7. Epub 2019 Jun 13.

Abstract

The use of alunite as an adsorbent for the removal of dye was the aim of this report. Mixing the alunite with different salts may allow adsorption with higher efficiency. In the present study, the thermal decomposition product of alunite-potassium chloride mixture (TDPA-KCl) was used efficiently and inexpensively to remove Reactive Blue 49 (RB49) dye. The adsorption capacity of TDPA-KCl was found to be affected by pH, temperature, adsorbent amount, calcination temperature, dye concentration, and ionic strength. The highest RB49 adsorption yield was obtained at an initial pH of 2 and an equilibrium was reached within 20 min using 80 mg of adsorbent. The most suitable kinetic model was found as the pseudo-second-order and compatible isotherm was determined as the Langmuir model. The optimum adsorption capacity was found as 119.10 mg g at 40 °C. ∆G°, ∆H°, and ∆S° values were calculated. A positive value of ∆H° stated that the adsorption is exothermic and spontaneous. In addition, ∆G° showed a more negative value when temperature was increased. Column studies indicated that TDPA-KCl could be effectively used for five cycles without any loss in its desorption potential. Breakthrough studies also supported a favorable adsorption of RB49 onto TDPA-KCl. This study showed that TDPA-KCl is a practical, efficient, and inexpensive adsorbent to remove reactive dyes from wastewater.

摘要

本报告旨在研究明矾石作为吸附剂去除染料的应用。混合不同盐类的明矾石可能会提高吸附效率。本研究中,我们使用廉价且高效的明矾石-氯化钾热分解产物(TDPA-KCl)来去除活性蓝 49(RB49)染料。研究发现,TDPA-KCl 的吸附容量受 pH 值、温度、吸附剂用量、煅烧温度、染料浓度和离子强度的影响。在初始 pH 值为 2 时,RB49 的吸附产率最高,在 80mg 吸附剂的作用下,20min 内达到平衡。最适合的动力学模型为拟二级动力学模型,而最匹配的等温线模型则为 Langmuir 模型。在 40°C 时,吸附容量达到 119.10mg/g。还计算了 ∆G°、∆H°和 ∆S°的值。∆H°的正值表明吸附是放热和自发的。此外,随着温度的升高,∆G°的值变得更负。柱实验表明,TDPA-KCl 可在不损失其解吸潜力的情况下有效使用 5 次。穿透实验也支持 RB49 对 TDPA-KCl 的有利吸附。本研究表明,TDPA-KCl 是一种实用、高效且廉价的吸附剂,可用于从废水中去除活性染料。

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