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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Spectroscopic investigations of sequential nitric acid treatments on granulated activated carbon: Effects of surface oxygen groups on n density
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Spectroscopic investigations of sequential nitric acid treatments on granulated activated carbon: Effects of surface oxygen groups on n density

机译:连续硝酸处理颗粒状活性炭的光谱研究:表面氧基团对n密度的影响

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摘要

Surface oxygen groups (SOGs) on granulated activated carbon were introduced using ~10% v/v of nitric acid in a controlled, stepwise fashion. SOG peaks from DRIFTS were deconvo-luted and correlated with chemical titration of acidic and basic surface sites. Total surface area was maximized at the 3rd oxidation stage with maximum absorption intensities of conjugated aromatic, aromatic, ether, phenol, and lactone groups. SEM and EDS data reveal optimal cleaning of the substrate and edge chemisorption of non-pore restricting SOGs at the 3rd oxidation stage. Increased order of the substrate is revealed with a minimum I(D):I(G) ratio, a reduced D-band FWHM and a large D-band red shift. Concurrent strengthening of conjugated olefin bonds are indicated through G-band blue shifts as well as conjugated aromatic and carboxylic acid features. Inductive effects resulting from the attachment of electron withdrawing SOGs are responsible for an aromatic-to-olefin n bond restructuring, contributing to the overall graphite-like order of the system, which is simultaneously stabilized by donating and withdrawing SOGs. Heteromaterial loss, high relative %C increases, and the presence of SOGs result in enhanced order and pore access from acid treatments. Such heteromaterial alterations and microstructure analysis shed light on chemical alterations commonly used in activated carbon pre-adsorption treatments.
机译:使用约10%v / v的硝酸以受控的逐步方式将颗粒状活性炭上的表面氧基团(SOG)引入。将DRIFTS中的SOG峰去卷积,并与酸性和碱性表面位点的化学滴定相关。在第三个氧化阶段,总表面积最大,共轭芳族,芳族,醚,苯酚和内酯基团的吸收强度最大。 SEM和EDS数据表明,在第3个氧化阶段,可以对基材进行最佳清洁,并且可以对非孔限制SOG进行边缘化学吸附。以最小的I(D):I(G)比,减小的D波段FWHM和大的D波段红移显示基板的顺序增加。共轭烯烃键的同时增强通过G带蓝移以及共轭芳族和羧酸特征表示。吸电子SOG的附着产生的感应效应负责芳烃与烯烃的n键重组,有助于整个系统的类石墨顺序,并通过捐赠和撤除SOG使其稳定。异质材料损失,较高的相对%C增加,并且SOG的存在会导致酸处理过程中的顺序和孔隙进入增加。这种异质材料的变化和微观结构分析揭示了活性炭预吸附处理中通常使用的化学变化。

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