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Activated carbon from coal tar pitch and furfural for the removal of p-nitrophenol and m-aminophenol

机译:煤焦油沥青和糠醛中的活性炭,用于去除对硝基苯酚和间氨基苯酚

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摘要

[EN] Adsorption of m-aminophenol and p-nitrophenol from aqueous solution on activated carbon synthesized on the base of industrial by product (coal tar pitch) and furfural was investigated. The adsorption capacity of the activated carbon and its oxidized modification is related to the surface area and composition of the prepared materials, as well as to the nature of the adsorbents. Despite the moderate porosity, the prepared materials display adequate adsorption capacity towards the investigated aromatic compounds. Both adsorbates show higher affinity towards the hydrophobic carbon, confirming that the retention mechanism occurs via non-specific interactions between the electronic density of the adsorbent and the aromatic pollutants. Electrostatic interactions may also appear depending on the solution pH and the charge distribution of the carbons; we have established that this parameter has a strong influence on the final performance of the oxidized carbon, where repulsive interactions that reduced the uptake of the carbon were found to appear within a larger pH range.
机译:[EN]研究了以工业副产物(煤焦油沥青)和糠醛为基础合成的活性炭对水溶液中间氨基苯酚和对硝基苯酚的吸附。活性炭及其氧化修饰物的吸附能力与所制备材料的表面积和组成以及吸附剂的性质有关。尽管孔隙度适中,但制备的材料对所研究的芳族化合物仍显示出足够的吸附能力。两种吸附物都对疏水性碳表现出更高的亲和力,从而证实了保留机理是通过吸附剂的电子密度与芳族污染物之间的非特异性相互作用而发生的。静电相互作用也可能出现,具体取决于溶液的pH值和碳的电荷分布。我们已经确定,该参数对氧化碳的最终性能有很大影响,发现在较大的pH范围内会出现减少碳吸收的排斥相互作用。

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