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Adsorption of lead ions from aqueous solution using porous carbon derived from rubber tires: Experimental and computational study

机译:使用橡胶轮胎中的多孔碳从水溶液中吸附铅离子的实验和计算研究

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Effective activated porous carbon (AC) was prepared by thermal treatment of waste rubber tires and was further activated using oxidizing agents like nitric acid and hydrogen peroxide. The tire-derived porous carbon was characterized by means of FTIR and X-ray diffraction. Careful analysis of the IR spectra of the synthesized AC reveals a number of bands centered at about 3400, 2350, 1710, 1650, and 1300-1000cm~(-1), proving the existence of hydroxyl and carboxylic groups on the surface of AC in addition to CC double bonds. The developed AC was tested and evaluated as a potential adsorbent for the removal of lead (II) ions. Experimental parameters, such as contact time, initial concentration, adsorbent dosage, and pH were optimized. AC was effective in a pH range between 4 and 7 with a highest uptake of lead ions at pH 5 and 6. For further understanding of the chemistry behind the process, density functional theory (DFT) calculations were performed at the B3LYP/6-31G(d) level adopting a functionalized pyrene molecule as a model. The binding energy of Pb(II) ion toward carboxylic acid, carbonyl, and hydroxyl groups was calculated. A binding energy in the range of 310-340kcal/mol, which is considered to be high and to be indicative of a chemisorptions process, was predicted. The adsorption of the lead ion toward the CO groups in relatively all cases shows more stable binding compared to the sorption toward the alcohol groups.
机译:通过对废旧橡胶轮胎进行热处理来制备有效的活性多孔碳(AC),并使用硝酸和过氧化氢等氧化剂对其进行进一步活化。借助于FTIR和X射线衍射对源自轮胎的多孔碳进行表征。仔细分析合成AC的IR光谱,发现许多条带集中在3400、2350、1710、1650和1300-1000cm〜(-1)处,证明AC的表面存在羟基和羧基。除了CC双键。测试和评估开发的AC作为去除铅(II)离子的潜在吸附剂。优化了实验参数,如接触时间,初始浓度,吸附剂剂量和pH。 AC在4到7的pH范围内有效,在5到6的条件下铅离子的吸收最高。为进一步了解该过程背后的化学作用,在B3LYP / 6-31G上进行了密度泛函理论(DFT)计算(d)采用功能化的molecule分子作为模型的水平。计算了Pb(II)离子与羧酸,羰基和羟基的结合能。预测了在310-340kcal / mol范围内的结合能,该结合能被认为是高的并且指示化学吸附过程。与相对于醇基团的吸附相比,在所有情况下铅离子对CO基团的吸附显示出更稳定的结合。

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