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New promising composite materials useful in the adsorption of Cu(II) in ethanol based on cellulose and cellulose acetate

机译:新型有前途的复合材料,可用于基于纤维素和醋酸纤维素的乙醇中的Cu(II)吸附

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摘要

This work describes for the first time the synthesis and characterization of new promising materials based on cellulose (Cel) and cellulose acetate (Celac), previously modified with aluminum oxide (CelAl and CelacAl) and post functionalized with 1,4-diazabicyclo [2.2.2] octane-n-propyltrimethoxysilane chloride (SiDbCl2), resulting the chemically modified hybrid materials CelAl/SiDbCl2 and CelacAl/SiDbCl2. The materials have shown to be useful in the adsorption of CuCl2 from ethanol, presenting high effective adsorption capacity. In the adsorption process, the copper ions diffuse into the solid solution interface and are retained as anionic complexes CuCl3− or CuCl42−. An expressive effective adsorption capacity tQ, as well as the stability constants β1 and β2, were found for both adsorbents: (a) CelAl/DbCl2: tQ = 0.33 × 10−3 mol g−1, log β1 = 4.23 (±0.04) and log β2 = 6.99 (±0.03); (b) CelacAl/DbCl2: tQ = 0.48 × 10−3 mol g−1, log β1 = 5.1 (±0.1) and log β2 = 8.3 (±0.1). Both adsorbent materials are potentially useful in the pre-concentration and further analysis of Cu(II) present in trace amounts in ethanol, extensively used as an automotive fuel in Brazil. Regeneration of the adsorbents requires a very simple procedure consisting in their immersion in aqueous solution which causes the immediate release of the Cu(OH2)n2+ species to the solution phase.
机译:这项工作首次描述了基于纤维素(Cel)和醋酸纤维素(Celac)的新的有前途的材料的合成和表征,该材料先前已被氧化铝(CelAl和CelacAl)改性,并被1,4-二氮杂双环[2.2。 2]辛烷-正丙基三甲氧基硅烷氯化物(SiDbCl 2 ),得到化学改性的杂化材料CelAl / SiDbCl 2 和CelacAl / SiDbCl 2 。已证明该材料可用于从乙醇中吸附CuCl 2 ,具有很高的有效吸附容量。在吸附过程中,铜离子扩散进入固溶体界面,并作为阴离子络合物CuCl 3 -或CuCl 4 保留。 2-。发现两种吸附剂的有效吸附容量t Q 以及稳定常数β 1 和β 2 :(a) CelAl / DbCl 2 :t Q = 0.33×10 -3 mol g -1 ,logβ 1 = 4.23(±0.04),对数β 2 = 6.99(±0.03); (b)CelacAl / DbCl 2 :t Q = 0.48×10 -3 mol g -1 ,对数β 1 = 5.1(±0.1),对数β 2 = 8.3(±0.1)。两种吸附剂材料都可能用于乙醇中痕量的Cu(II)的预浓缩和进一步分析,乙醇在巴西被广泛用作汽车燃料。吸附剂的再生需要非常简单的过程,包括将其浸入水溶液中,从而导致Cu(OH 2 n 2+立即释放。物种进入溶液阶段。

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