首页> 外文期刊>Iranian Journal of Chemistry and Chemical Engineering >Adsorption of the Cationic Dye Ethyl Violet on Acid and Alkali-Treated Wild Carob Powder, A Low-Cost Adsorbent Derived from Forest Waste
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Adsorption of the Cationic Dye Ethyl Violet on Acid and Alkali-Treated Wild Carob Powder, A Low-Cost Adsorbent Derived from Forest Waste

机译:阳离子染料乙基紫在酸和碱处理的野生角豆粉上的吸附,这是一种低成本的森林废料吸附剂

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摘要

The effect of acid-alkaline treatment of lignocellulosic material (wild carob forest wastes) on Ethyl violet adsorption was investigated. It was found that surface chemistry plays an important role in Ethyl Violet (EV) adsorption. HCl treatment produces more active acidic surface groups such as carboxylic and lactone, resulting in an increase in the adsorption of EV dye. The adsorption efficiency was higher for treated lignocellulosic material with HCl (WCHCl) compared to that treated with KOH (WCKOH); maximum biosorption capacities were 170 and 130 mg/g for WCHCl and WCKOH at pH 6, respectively. It was also found that for both treated materials less than 150 min was needed to reach equilibrium. The adsorption of a basic dye (i.e. ethyl violet or basic violet 4) was carried out by varying some process parameters, such as the initial concentration and pH. The adsorption process can be well described by means of a pseudo-second-order reaction model and experimental data were accurately expressed by the Sips and Langmuir models for both WCHCl and WCKOH.
机译:研究了酸碱处理木质纤维素材料(野生角豆树废料)对乙基紫吸附的影响。发现表面化学在乙基紫(EV)吸附中起重要作用。 HCl处理产生更多的活性酸性表面基团,例如羧基和内酯,从而导致EV染料的吸附增加。与用KOH(WCKOH)处理相比,用HCl(WCHCl)处理的木质纤维素材料的吸附效率更高。在pH 6下,WCHCl和WCKOH的最大生物吸附量分别为170和130 mg / g。还发现对于两种处理的材料而言,达到平衡所需的时间都少于150分钟。碱性染料(即乙基紫或碱性紫4)的吸附是通过改变一些工艺参数,例如初始浓度和pH值来进行的。吸附过程可以通过伪二级反应模型很好地描述,并且通过Sips和Langmuir模型准确地表示WCHCl和WCKOH的实验数据。

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