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Ah Investigation of the Mechanisms of Chemical Regeneration of Activated Carbon

机译:活性炭化学再生机理的研究

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The mechanisms underlying chemical regeneration of activated carbon loaded with physisorbed organics have been explored. Using four aromatic adsorbates and five chemical regenerants in batch equilibrium and regeneration experiments, it has been shown that solubility of the organics and surface characteristics of the adsorbent under regeneration conditions strongly influence the regeneration efficiency. Solubility in the regenerant has been enhanced either by the addition of micelles or by the generation of soluble forms of the adsorbate. In general, the latter technique is more effective. It has been demonstrated that soluble forms of the adsorbate can be obtained by pH control or the use of reactive regenerants. pH can also be used to control surface charge characteristics and, consequently, adsorbate affinity for the adsorbent. For adsorbates that are difficult to solubilize or are very strongly bound to the surface, reduced affinity for the adsorbent through a change in surface charge characteristics can be used to improve regeneration efficiencies.
机译:已经探索了载有物理吸附有机物的活性炭化学再生的基础机理。在间歇平衡和再生实验中使用四种芳族吸附剂和五种化学再生剂,已表明在再生条件下有机物的溶解度和吸附剂的表面特性会强烈影响再生效率。通过添加胶束或通过生成可吸附形式的吸附物,可提高再生剂的溶解度。通常,后一种技术更有效。已经证明,可通过控制pH或使用反应性再生剂来获得可溶形式的吸附物。 pH也可以用于控制表面电荷特性,从而控制吸附剂对吸附剂的亲和力。对于难以溶解或非常牢固地与表面结合的吸附物,可通过改变表面电荷特性来降低对吸附剂的亲和力,以提高再生效率。

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