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Reuse of waste silica as adsorbent for metal removal by iron oxide modification

机译:再利用废二氧化硅作为吸附剂,通过氧化铁改性去除金属

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Silica gel is widely used in research laboratories, especially for the purification of organic compounds. Consequently, waste silica gel is generated in increasing amounts. In this work, waste silica was modified by coating its surface with iron oxide aiming to obtain an effective adsorbent for metal removal from wastewater. In the preparation of the adsorbent, the optimal pretreatment temperature and iron concentration were investigated. The coated waste silica was characterized for BET surface area, pore size, specific pore volume and iron content. Iron oxide-coated waste silica was tested for the adsorption of Pb(II), Cu(II), Cd(II) and Ni(II) from solutions in a batch system. The effect of contact time, pH and salt concentration on metal adsorption was investigated. It was found that the adsorption of metals occurred rapidly and reached equilibrium within 30 min. The pH suitable for metal adsorption was between 6 and 7 and leaching of iron from the coating was observed only at pH 3 or lower. The presence of salt reduced the adsorption efficiency of the adsorbent. The adsorption behavior followed both Langmuir and Freundlich isotherms (25 ℃). Finally, the efficacy of the adsorbents was investigated using aqueous lab waste where removal efficiencies ranging from 62 to 89% were achieved when the initial metal concentrations ranged from 13 to 42 mg L~(-1).
机译:硅胶广泛用于研究实验室,尤其是用于纯化有机化合物。因此,越来越多地产生废硅胶。在这项工作中,废二氧化硅通过在其表面涂上氧化铁进行改性,目的是获得一种有效的吸附剂,用于从废水中去除金属。在制备吸附剂时,研究了最佳预处理温度和铁浓度。涂覆的废二氧化硅的特征在于BET表面积,孔尺寸,比孔体积和铁含量。测试了氧化铁涂层废二氧化硅在间歇系统中从溶液中吸附Pb(II),Cu(II),Cd(II)和Ni(II)的能力。研究了接触时间,pH值和盐浓度对金属吸附的影响。发现金属的吸附迅速发生并在30分钟内达到平衡。适于金属吸附的pH为6至7,并且仅在pH 3或更低时才观察到铁从涂层中的浸出。盐的存在降低了吸附剂的吸附效率。吸附行为遵循Langmuir和Freundlich等温线(25℃)。最后,使用实验室含水废水研究了吸附剂的功效,当初始金属浓度为13至42 mg L〜(-1)时,去除效率为62至89%。

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