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Effect of water content on the characteristics of hydro-compacted nanosilica

机译:含水量对加氢压缩纳米二氧化硅特性的影响

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摘要

The morphological and textural characteristics of hydro-compacted nanosilicas (wetted by various water amounts in the range of h(cp) = 0.3-5.0 g per gram of dry silica, and then dried) were analyzed using low-temperature H-1 NMR spectroscopy, SAXS, SEM, TEM, IR spectroscopy, and nitrogen adsorption methods. The results of the hydro-compaction of nanosilica A-300 depend strongly on the h(cp), value, which can be varied to control reorganization of secondary and ternary structures formed by nanoparticles. The compaction is accompanied by non-monotonic changes in the textural characteristics; however, the nanoparticles per se are practically not affected by the treatment. At h(cp )= 1 g/g, the reorganization of secondary/ternary structures does not lead to diminution of the specific surface area (S-BET); however, at h(cp) = 1.5 g/g, the S-BET value decreases, but the pore volume increases despite the empty volume of the powder decreases from 21.8 cm(3)/g for initial A-300 (bulk density rho(b) = 0.045 g/cm(3)) to 3.45 cm(3)/g on compaction at h(cp) = 4.5 g/g (rho(b) = 0.256 g/cm(3)). The structural reorganization of hydro-compacted powders is possible after addition of new water amount. This suggests that the chemical bonds between neighboring nanoparticles do not practically form upon the hydro-compaction. Thus, hydro-compacted nanosilica can lose a dust-forming property but remains active with respect to nanoparticles mobility and possibility of reorganization of the secondary structures with nanoparticles.
机译:使用低温H-1 NMR光谱分析了水合压缩纳米二氧化硅的形态和质地特征(通过在每克干二氧化硅中h(cp)= 0.3-5.0 g的各种水量润湿,然后干燥) ,SAXS,SEM,TEM,IR光谱和氮吸附方法。纳米二氧化硅A-300的水致压缩结果强烈取决于h(cp)值,该值可以变化以控制由纳米粒子形成的二级和三级结构的重组。压实伴随着纹理特征的非单调变化。然而,纳米粒子本身实际上不受处理的影响。当h(cp)<= 1 g / g时,二级/三级结构的重组不会导致比表面积(S-BET)减小。但是,在h(cp)> = 1.5 g / g时,S-BET值降低,但尽管粉末的空体积从初始A-300的21.8 cm(3)/ g降低,但孔体积却增加了(体密度在h(cp)= 4.5 g / g(rho(b)= 0.256 g / cm(3))压实时,rho(b)= 0.045 g / cm(3))至3.45 cm(3)/ g。在添加新的水量之后,可以对氢致密粉进行结构重组。这表明相邻的纳米颗粒之间的化学键实际上没有在加氢致密化时形成。因此,水力压实的纳米二氧化硅可失去形成粉尘的性能,但在纳米颗粒的迁移性以及二级结构与纳米颗粒重组的可能性方面保持活性。

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