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Structural Characterizations of Aluminosilicates in Two Types of Fly Ash Samples from Shanxi Province, North China

机译:北方山西省两种类型粉煤灰样品中硅铝酸盐的结构表征

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In order to determine the structural characterization of aluminosilicates in two types of fly ashes, two samples from Shanxi Province, China were selected for study. One was from a pulverized coal boiler (FA-1), and the other from a circulating fluidized bed boiler (FA-2). FA-1 had a much higher content of silicon dioxide (SiO 2 ) (70.30%) than FA-2(42.19%), but aluminum oxide (Al 2 O 3 ) was higher in FA-2 (25.41%) than in FA-1 (17.04%). The characterizations were investigated using various methods including X-ray diffraction (XRD), Fourier transform infrared spectrometry (FTIR), magic angle spinning nuclear magnetic resonance (MAS–NMR) spectrometry, and X-ray photoelectron spectroscopy (XPS). The XRD analysis showed that FA-1 contained aluminosilicate glass, quartz and mullite, while FA-2 contained significant amounts of amorphous aluminosilicate, quartz and gypsum. The FTIR results showed an increased substitution of Al 3+ for Si 4+ as the band of asymmetric stretching vibrations Si–O(Si) (1100 cm ?1 ) moved to 1090 cm ?1 for FA-2, much lower than for FA-1(1097 cm ?1 ). Moreover, the sharpness of the bands in the 1250–1000 cm ?1 region for FA-2 indicates that the silicate structure of FA-2 was more ordered than for FA-1. It can be understood from the 29 Si MAS–NMR results that Q 4 (mAl) (Q 4 are connected via 4 bridging O atoms to mAl) is the main structural type in FA-1 and FA-2, and that FA-2 contains more Al, which substitutes for Si in the Q 4 structure. 27 Al MAS–NMR demonstrated that a combination of tetrahedral, pentahedral, and octahedral Al existed in FA-1 and FA-2. The Si 2p XPS spectra suggested that there were three forms of Si, including bridging Si (Si–O 2 ), non–bridging Si (Si–O), and SiO 2 gel. The content of Si–O 2 for FA-1 was 37.48% higher than Si–O (28.57%), while the content of Si–O 2 was 30.21% lower than Si–O (40.15%) for FA-2. The Al 2p XPS spectra showed that octahedral Al was the dominant form for FA-1 with a content of 40.25%, while the main phase was tetrahedral Al for FA-2 with a proportion of 37.36%, which corresponds well with the 27 Al MAS–NMR results.
机译:为了确定两种类型的粉煤灰中铝硅酸盐的结构特征,选择了两个来自中国山西省的样品进行研究。一种来自粉煤锅炉(FA-1),另一种来自循环流化床锅炉(FA-2)。 FA-1的二氧化硅(SiO 2)含量(70.30%)比FA-2(42.19%)高得多,但FA-2的氧化铝(Al 2 O 3)含量比FA-2高(25.41%) -1(17.04%)。使用各种方法研究了表征,包括X射线衍射(XRD),傅立叶变换红外光谱(FTIR),魔角旋转核磁共振(MAS–NMR)光谱和X射线光电子能谱(XPS)。 XRD分析表明,FA-1含有铝硅酸盐玻璃,石英和莫来石,而FA-2含有大量非晶硅铝酸盐,石英和石膏。 FTIR结果表明,随着非对称拉伸振动带Si–O(Si)(1100 cm?1)移至FA-2的1090 cm?1波段,Al 3+替代了Si 4+,远远低于FA 2 -1(1097厘米?1)。此外,FA-2在1250–1000 cm?1区域的能带尖锐度表明FA-2的硅酸盐结构比FA-1更有序。从29 Si MAS–NMR结果可以看出,Q 4(mAl)(Q 4通过4个桥接的O原子与mAl连接)是FA-1和FA-2的主要结构类型,而FA-2含有更多的Al,可替代Q 4结构中的Si。 27 Al MAS-NMR证明FA-1和FA-2中存在四面体,五面体和八面体Al的组合。 Si 2p XPS光谱表明存在三种形式的Si,包括桥接Si(Si–O 2),非桥接Si(Si–O)和SiO 2凝胶。 FA-1的Si–O 2含量比Si–O(28.57%)高37.48%,而Si–O 2的含量比FA-2的Si–O(40.15%)低30.21%。 Al 2p XPS光谱表明,八面体Al是FA-1的主要形式,含量为40.25%,而主相是FA-2的四面体Al,占37.36%的比例,与27 Al MAS相当-NMR结果。

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