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Influence of Dry Milling on Phase Transformation of Sepiolite upon Alkali Activation: Implications for Textural Catalytic and Sorptive Properties

机译:干磨对碱活化后海泡石相变的影响:纹理催化和吸附性能的影响

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摘要

Activation of natural sepiolite by means of grinding in a planetary mill followed by wet NaOH activation was studied for the purpose of endowing the product with enhanced basicity for potential catalytic/sorptive applications. Synthesized solids were characterized with X-ray powder diffraction (XRD), N2 adsorption/desorption, scanning electron microscopy (SEM), energy dispersive (EDX), atomic absorption (AAS), Fourier-transform infrared (FTIR) and 29Si magic angle spinning nuclear magnetic resonance (MAS NMR) spectroscopies. Surface basicity was determined by titration with benzoic acid. Grinding changed the pathway of sepiolite phase transformation upon NaOH treatment. The as-received sepiolite evolved to Na-sepiolite (loughlinite) with a micropore system blocked by nanocrystalline Mg(OH)2, while ground samples yielded magnesium silicate hydrate phase (MSH), with well-developed microporous texture. In unmilled sepiolite desilication involved preferential leaching of Si from the center of the structural ribbons, while in ground samples additional loss of Si from ribbon-ribbon corner linkages was observed. In all cases treatment with NaOH led to enhancement of surface basicity. Synthesized materials were tested as catalysts in a base-catalyzed aldol self-condensation of acetone and oxidation of cyclohexanone to ε-caprolactone, as well as CO2 sorbents. Catalytic trends depended not only on samples’ basicity, but also on texture and phase composition of the catalysts. Grinding combined with alkali activation proved a simple and effective method for boosting CO2-sorption capacity of sepiolite to the level comparable to amine-functionalized, acid-activated sepiolite sorbents.
机译:通过在行星磨机中研磨,然后研究了湿NaOH活化的天然海泡石的活化,目的是赋予该产品具有增强的潜在催化/吸附应用的碱度。合成固体具有X射线粉末衍射(XRD),N 2吸附/解吸,扫描电子显微镜(SEM),能量分散(EDX),原子吸收(AAS),傅里叶变换红外(FTIR)和29SI魔法角旋转核磁共振(MAS NMR)光谱。用苯甲酸滴定来确定表面碱度。研磨在NaOH处理时改变了海泡石相变的途径。由纳米晶Mg(OH)2阻断的微孔系统进化到Na-Sepiolite(LoughLumite)的甲硫醇锂,而研磨的微孔纹理,含有纳米晶Mg(OH)2的微孔系统。在未甲基硫醇脱硫中涉及Si的优先浸出从结构丝带的中心,而在地样品中观察到从带状拐角键的额外损失Si。在所有案例中,NaOH治疗导致提高表面碱度。在丙酮的丙酮和环己酮的氧化丙酮的催化剂中测试合成材料作为丙酮的催化剂和环己酮至ε-己内酯以及CO 2吸附剂。催化趋势不仅取决于样品的碱度,还取决于催化剂的质地和相位组成。与碱活化结合的研磨证明了一种简单且有效的方法,用于将海泡石的CO2吸附能力提高到与胺官能化的酸活化的海泡石吸附剂相当的水平。

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