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Removal of chromium (vi) in aqueous environments using cork and heat-treated cork samples from quercus cerris and quercus suber

机译:在水环境中,使用软木和热处理的软木样品(来自栎和栎)来去除铬(vi)

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摘要

Chromium (VI) removal and its reduction to chromium (III) from aqueous solution by untreated and heat-treated Quercus cerris and heat-treated Quercus suber black agglomerate cork granules was investigated. Initial screening studies revealed that among the sorbents tested, untreated Q. cerris and Q. suber black agglomerate are the most efficient in the removal of Cr(VI) ions and were selected for adsorption essays. Heat treatment adversely affected chromium adsorption and chromium (VI) reduction in Q. cerris cork. The highest metal uptake was found at pH 3.0 for Q. cerris and pH 2.0 for black agglomerate. The experimental data fitted the Langmuir model and the calculated qmax was 22.98 mg/g in black agglomerate and 21.69 mg/g in untreated Q. cerris cork. The FTIR results indicated that while in black agglomerate, lignin is the sole component responsible for Cr(VI) sorption, and in untreated Q. cerris cork, suberin and polysaccharides also play a significant role on the sorption. The SEM-EDX results imply that chromium has a homogenous distribution within both cork granules. Also, phloemic residues in Q. cerris granules showed higher chromium concentration. The results obtained in this study show that untreated Q. cerris and black agglomerate cork granules can be an effective and economical alternative to more costly materials for the treatment of liquid wastes containing chromium
机译:研究了未经处理和热处理过的栎(Quercus cerris)和热处理过的栎(Quercus suber)黑色团聚软木颗粒从水溶液中去除铬(VI)并将其还原为铬(III)。初步筛选研究表明,在所测试的吸附剂中,未经处理的Q.cerris和Q.suber黑色附聚物是去除Cr(VI)离子最有效的方法,因此被选作吸附论文。热处理对Q.cerris软木中的铬吸附和铬(VI)还原产生不利影响。对于蜡状Q.cerris,在pH 3.0和对于黑色附聚物,pH 2.0发现最高的金属吸收。实验数据拟合了Langmuir模型,在黑色团聚体中计算出的qmax为22.98 mg / g,在未经处理的塞拉克罗塞木塞中计算出的qmax为21.69 mg / g。 FTIR结果表明,在黑色团聚体中,木质素是负责Cr(VI)吸附的唯一成分,在未经处理的Q. cerris软木中,木栓质和多糖也对吸附具有重要作用。 SEM-EDX结果表明,铬在两个软木颗粒中均一分布。此外,蜡状Q.cerris颗粒中的发色残留物显示出较高的铬浓度。这项研究中获得的结果表明,未经处理的鸢尾和黑色附聚软木颗粒可以替代昂贵的材料来处理含铬的液体废物,是一种有效且经济的选择

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