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Study on the adsorption mechanism of activated carbon removing low concentrations of heavy metals

机译:活性炭吸附去除低浓度重金属的机理研究

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This paper focused on the adsorption mechanism of activated carbon for the removal of low-concentration heavy metals in drinking water treatment. Two commercial activated carbon AC-1 and AC-2 were selected, which mainly were used for the terminal purification of drinking water. To investigate the differences of adsorption capacity of ACs for Pb, Hg, and As, scanning electron microscopy test (SEM), N-2 adsorption/desorption isotherm, the surface functional groups (FT-IR), the point zero charge (PZC), and X-ray photoelectron spectroscopy analysis were conducted. Freundlich isotherms were used to describe the adsorption behavior of ACs on heavy metal ions. The results showed that both AC-1 and AC-2 have aptitude for low-concentration heavy metals retention; taking the removal capacity and cost into account, AC-1 is more efficient and economic than AC-2 for the low-concentration heavy metal ions (Pb and Hg) removal from water. The mechanism analysis showed that the adsorption of ACs on low-concentration heavy metals heavily depends on the properties of ACs (pore size distribution, pHPZC, surface functional groups etc.) and the experiment condition, which cannot only be explained by ion exchange, chemical adsorption, specific adsorption, and electrostatic effects.
机译:本文着重研究了活性炭对饮用水处理中低浓度重金属的吸附机理。选择了两种商用活性炭AC-1和AC-2,它们主要用于饮用水的最终净化。为了研究AC对Pb,Hg和As的吸附能力的差异,扫描电子显微镜测试(SEM),N-2吸附/解吸等温线,表面官能团(FT-IR),零电荷点(PZC) ,并进行了X射线光电子能谱分析。用弗氏等温线描述了ACs在重金属离子上的吸附行为。结果表明,AC-1和AC-2均具有低浓度重金属保留的能力。考虑到去除能力和成本,从水中去除低浓度重金属离子(Pb和Hg)时,AC-1比AC-2更为有效和经济。机理分析表明,ACs在低浓度重金属上的吸附在很大程度上取决于ACs的性质(孔径分布,pHPZC,表面官能团等)和实验条件,这不能仅通过离子交换,化学反应来解释。吸附,特定吸附和静电作用。

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