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Characterization and application of heat-treated and acid-leached halloysites in the removal of malachite green: adsorption, desorption, and regeneration studies

机译:热处理和酸浸的埃洛石的表征和在孔雀石绿的去除中的应用:吸附,解吸和再生研究

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Algerian halloysite was processed at 600 degrees C and with 5-N HCl (H600-5N), and compared with the forms treated thermally at 600 degrees C (H600) and unmodified (H). The obtained samples were characterized by FTIR, TEM, and nitrogen adsorption, and employed as malachite green (MG) adsorbents from aqueous solutions. The effects of pH, contact time, solution concentration, and temperature were examined. A particular attention has been focused on desorption and regeneration. The ease in desorption and regeneration constitutes a major practical advantage for treating industrial effluents. Thermo-chemical activation leads to the leaching of Al ions from the octahedral sheet. As consequence, H600-5N presents a specific area of 503m(2)g(-1), i.e. eight orders of magnitude higher than that of H (63m(2)g(-1)). For all halloysitic solids, the capacity in MG increases with decreasing adsorption temperature. The affinity sequence is H600-5N>H600>H. The isotherms are found to be well represented by the Redlich-Peterson equation. The thermodynamic data show that the MG adsorption onto H600-5N is spontaneous and exothermic, consequence of the electrostatic attraction between positively charged molecules and negatively charged adsorption sites. Among the seven eluents used, methanol manifests the greatest desorption capacity from H600-5N, which increases overall with temperature. After four adsorption-desorption cycles, this material was easily desorbed and regenerated. On the basis of all these considerations and, also, its adsorption capacity (192.6mgg(-1) at 25 degrees C), H600-5N appears very effective for removing dyes from wastewaters.
机译:阿尔及利亚埃洛石在600摄氏度和5-N HCl(H600-5N)下加工,并与在600摄氏度(H600)和未改性(H)热处理的形式进行比较。所得样品通过FTIR,TEM和氮吸附进行表征,并用作水溶液中的孔雀石绿(MG)吸附剂。检查了pH,接触时间,溶液浓度和温度的影响。特别关注的是解吸和再生。解吸和再生的容易性构成了处理工业废水的主要实践优势。热化学活化导致从八面体片中浸出铝离子。结果,H600-5N的比表面积为503m(2)g(-1),即比H(63m(2)g(-1))高8个数量级。对于所有的致幻剂固体,MG的容量随吸附温度的降低而增加。亲和力序列为H600-5N> H600> H。发现等温线可以由Redlich-Peterson方程很好地表示。热力学数据表明,MG在H600-5N上的吸附是自发的且放热的,这是带正电的分子与带负电的吸附位点之间的静电吸引的结果。在使用的七种洗脱液中,甲醇从H600-5N中表现出最大的脱附能力,总体上随着温度的升高而增加。经过四个吸附-解吸循环后,该材料易于解吸和再生。基于所有这些考虑因素,以及其吸附能力(在25摄氏度下为192.6mgg(-1)),H600-5N似乎对去除废水中的染料非常有效。

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