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Simultaneous adsorption of lead (II) and 3,7-Bis(dimethylamino)-phenothiazin-5-ium chloride from aqueous solution by activated carbon prepared from plantain peels

机译:车前草皮制备的活性炭同时吸附水溶液中的铅(II)和3,7-双(二甲基氨基)-吩噻嗪-5-氯化铵

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摘要

Activated carbon has been prepared from plantain peels unripe, a biowaste from confectioneries for investigation of its adsorption efficiency in binary system of lead (II) and 3,7-Bis(dimethylamino)-phenothiazin-5-ium chloride as common water pollutants. The prepared carbons were characterized using nitrogen adsorption, FTIR spectroscopy, and XRD. Batch adsorption experiments were conducted to determine most probable conditions of adsorption maximum via varying adsorbent concentration, initial pollutants concentration, and pH of adsorption. Adsorption was found to be dependent on the factors studied. Favorable adsorption was recorded at initial concentration of 300mg/dm(3) after 30min. Equilibrium and kinetic data were modeled using well-known isotherm and kinetic models. Results deviated largely from Langmuir monolayer, Freundlich multilayer and extended Langmuir isotherm models suggesting a mutual interaction of the adsorbates in solution which is shown with data obtained from competitive adsorption evaluation. Kinetics was fast and data fitted extensively to pseudo-second-order kinetic model with good correlation coefficient greater than 0.99. From the results of the analysis, mechanism of adsorption is proposed and adsorption using this adsorbent is feasible and could be developed as a low-cost alternative for the treatment of industrial effluent system of dye-metal matrix.
机译:活性炭是由未成熟的车前草皮制成的,车前皮是一种糖果店生产的生物废料,用于研究其在铅(II)和作为常见水污染物的3,7-双(二甲基氨基)-吩噻嗪-5-鎓二元体系中的吸附效率。使用氮气吸附,FTIR光谱和XRD对制得的碳进行表征。进行了批量吸附实验,通过改变吸附剂浓度,初始污染物浓度和吸附pH值,确定最可能的最大吸附条件。发现吸附取决于所研究的因素。 30分钟后,初始浓度为300mg / dm(3)记录到良好的吸附。平衡和动力学数据使用众所周知的等温线和动力学模型进行建模。结果很大程度上偏离了Langmuir单层,Freundlich多层和扩展的Langmuir等温模型,表明溶液中被吸附物的相互作用,这是通过竞争性吸附评估获得的数据显示的。动力学很快,数据广泛地拟合到伪二阶动力学模型,相关系数大于0.99。根据分析结果,提出了吸附机理,使用该吸附剂进行吸附是可行的,可作为处理染料金属基质工业废水系统的低成本替代品。

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