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Removal of crystal violet dye from aqueous solutions using rubber (hevea brasillensis) seed shell-based biosorbent

机译:使用橡胶(巴西橡胶树)种子壳基生物吸附剂从水溶液中去除结晶紫染料

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The need of safe and economical methods for the elimination of hazardous dyes from contaminated waters has necessitated research interest towards the production of low-cost adsorbent. The present study aims to investigate the feasibility of rubber seed shell-based biosorbent for removal of crystal violet dye from aqueous solutions. The biosorbent was prepared using sulfuric acid treatment. Fourier transform infrared analysis showed that the main functional groups present on the surface of the biosorbent were aliphatic compounds. Batch adsorption studies were conducted to determine the effects of contact time, initial dye concentration and biosorbent dosage on the uptake of dye at 30 ℃. The equilibrium data were analyzed by using Langmuir and Freundlich isotherm models. Equilibrium data fitted well with the Langmuir model, yielding maximum monolayer adsorption capacity of 23.81 mg/g. The kinetic data were found to conform to pseudo-second-order kinetic model with good correlation. Rubber seed shell-based biosorbent was shown to be a promising low-cost material for adsorption of crystal violet dye from aqueous solutions.
机译:为了从污染的水中消除有害染料,需要安全,经济的方法,因此对生产低成本吸附剂的研究兴趣日益浓厚。本研究旨在研究基于橡胶籽壳的生物吸附剂从水溶液中去除结晶紫染料的可行性。使用硫酸处理来制备生物吸附剂。傅里叶变换红外分析表明,生物吸附剂表面上存在的主要官能团是脂肪族化合物。进行了批量吸附研究,以确定在30℃下接触时间,初始染料浓度和生物吸附剂量对染料吸收的影响。通过使用Langmuir和Freundlich等温线模型分析平衡数据。平衡数据与Langmuir模型非常吻合,最大单层吸附容量为23.81 mg / g。发现动力学数据符合具有良好相关性的伪二级动力学模型。橡胶籽壳基生物吸附剂已被证明是一种从水溶液中吸附结晶紫染料的有前途的低成本材料。

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