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Preparation and Characterization of Highly Ordered Mercapto-Modified Bridged Silsesquioxane for Removing Ammonia-Nitrogen from Water

机译:高价巯基改性桥接硅氧烷的制备与表征,用于从水中除去氨氮

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摘要

In acidic conditions, mesoporous molecular sieves SBA-15 and SBA-15-SH were synthesized. Structural characterization was carried out by powder X-ray diffraction (XRD), Fourier Transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), transmission electron microscopy (TEM), 13C CP MAS-NMR, 29Si CP MAS-NMR and nitrogen adsorption–desorption (BET). The results showed that in SBA-15-SH, the direct synthesis method made the absorption peak intensity weaker than that of SBA-15, while the post-grafted peak intensity did not change. Their spectra were different due to the C-H stretching bands of Si-O-Si and propyl groups. But their structure was still evenly distributed and was still hexangular mesoporous structure. Their pore size increased, and the H-SBA-15-SH had larger pore size. The adsorption of ammonia-nitrogen by molecular sieve was affected by the relative pressure and the concentration of ammonia-nitrogen, in which the adsorption capacity of G-SBA-15-SH was the largest and the adsorption capacity of SBA-15 was the smallest.
机译:在酸性条件下,合成了中孔分子筛SBA-15和SBA-15-SH。结构表征通过粉末X射线衍射(XRD),傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM),透射电子显微镜(TEM),13C CP MAS-NMR,29SI CP MAS-NMR和氮气吸附 - 解吸(赌注)。结果表明,在SBA-15-SH中,直接合成方法使得吸收峰强度比SBA-15的吸收峰强度较弱,而接枝后峰强度不会发生变化。由于Si-O-Si和丙基的C-H拉伸带,它们的光谱是不同的。但它们的结构仍然均匀分布,并且仍然是六角形介孔结构。它们的孔径增加,H-SBA-15-SH具有更大的孔径。通过分子筛对氨氮的吸附受相对压力和氨氮的浓度影响,其中G-SBA-15-SH的吸附能力是最大的,SBA-15的吸附能力是最小的。

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