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Preparation and characterization of a porous silicate material using a CO2-storage material for CO2 adsorption

机译:使用CO2吸附的CO2储存材料制备和表征多孔硅酸盐材料

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A porous silicon material (PSM) was successfully prepared by using a CO2-storage material (CO2SM) as raw material, in which Na2SiO3 was used as a silicon source and the CO2SM was used as an acid source. The effects of CO2SM dosage, particle size, post-treatment temperature, and post-treatment time on CO2 adsorption capability was systemically evaluated, and the optimum condition was confirmed by response surface experiments as follows: 10 g CO2SM dosage, 50 mL 0.5 M Na2SiO3, 40-160 mesh, the post-treatment temperature of 80 degrees C, and the post-treatment time of 36 h with the maximum adsorption capacity of 9.74 mg CO2/g adsorbent for 8% CO2/N-2 at 25 degrees C. Based the optimum condition, SiO32- extraction from coal gangue was used as the silicon source to prepare the PSM with the maximum adsorption capacity of 9.02 mg CO2/g adsorbent for 8% CO2/N-2 at 25 degrees C. Next, PSM was impregnated with ethanediamine (EDA), after that the CO2 adsorption capacity increased to 17.14 mg CO2/g adsorbent. In addition, the optimum PSM was characterized by Fourier transform infrared spectroscopy, X-ray photoelectron spectroscopy, thermogravimetric analysis, scanning electron microscopy, transmission electron microscopy, and N-2 adsorption desorption isotherms. Although the resulting materials showed a low adsorption capacity, its silicon source was inexpensive, which was of significance in the rational utilization of coal gangue. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过使用CO 2储存材料(CO2SM)作为原料成功制备多孔硅材料(PSM),其中使用Na 2 SiO 3用作硅源,并且CO 2SM用作酸源。 CO2SM剂量,粒度,处理后温度和处理后时间对CO 2吸附能力的影响得到全身评价,并通过响应表面实验证实了最佳条件,如下:10g CO2SM剂量,50mL 0.5M Na 2 SiO3 ,40-160目,后处理温度为80℃,后处理时间为36小时,最大吸附容量为9.74mg CO 2 / g吸附剂,8%CO 2 / N-2在25℃下。基于最佳条件,使用煤矸石的SiO32-萃取用作硅源,在25℃下以8%CO 2 / N-2的吸附剂为9.02mg CO 2 / G吸附剂的最大吸附容量。接下来,PSM是乙二胺(EDA)浸渍后,CO 2吸附能力增加至17.14mg CO 2 / g吸附剂。此外,最佳PSM的特征在于傅里叶变换红外光谱,X射线光电子体光谱,热重分析,扫描电子显微镜,透射电子显微镜和N-2吸附解吸等温线。虽然所得材料显示出低吸附能力,但其硅源廉价,这在煤矸石的合理利用中具有重要意义。 (c)2017 Elsevier B.v.保留所有权利。

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