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首页> 外文期刊>The Korean journal of chemical engineering >Preparation and characterization of a porous silicate material from silica fume
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Preparation and characterization of a porous silicate material from silica fume

机译:硅粉制备多孔硅酸盐材料及其表征

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A porous silicate material derived from silica fume was successfully prepared and characterized by X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier-transform infrared (FT-IR) spectroscopy, Thermogravimetry and Differential thermal gravity (TG-DTG), N-2 adsorption and desorption isotherms, and scanning electron microscopy (SEM). Raw silica fume was analyzed by XRD, FT-IR and SEM. The analysis results of silica fume indicated that SiO2 in silica fume is mainly determined as amorphous state, and that the particles of raw silica fume exhibited characteristic spherical structure with a diameter of from 50 nm to 200 nm. The preparation of the porous silicate material involved two steps. The first step was the extraction of the SiO (3) (2-) leachate from raw silica fume. The maximum value of SiO (3) (2-) extraction yield was obtained under the following conditions: reaction temperature of 120 A degrees C, reaction time of 120 min, NaOH concentration of 15%, and alkali to SiO2 molar ratio of 2. The second step was the preparation of the porous silicate material though the reaction of SiO (3) (2-) leachate and Ca(OH)(2) suspension liquid. The optimum preparation conditions were as follows: preparation temperature of 90 A degrees C, preparation time of 1.5 h, Si/Ca molar ratio of 1 : 1, and stirring rate of 100 r/min. The BET surface area and pore size of the porous silicate material were 220.7 m(2)center dot g(-1) and 8.55 cm(3)/g, respectively. The porous silicate material presented an amorphous and unordered structure. The spectroscopic results indicated that the porous silicate material was mainly composed of Si, Ca, O, C, and Na, in the form of Ca2+, SiO (3) (2-) , CO (3) (2-) and Na+ ions, respectively, which agreed with the XRD, TG-DSC, and FT-IR data. The N-2 adsorption-desorption isotherm mode indicates that the porous silicate material belonged to a typical mesoporous material. The porous silicate material presented efficiency for the removal of formaldehyde: it showed a formaldehyde adsorption capacity of 8.01 mg/g for 140 min at 25 A degrees C.
机译:成功地制备了一种由硅粉衍生的多孔硅酸盐材料,并通过X射线衍射(XRD),X射线光电子能谱(XPS),傅里叶变换红外(FT-IR)光谱,热重分析和差热重(TG- DTG),N-2吸附和解吸等温线,以及扫描电子显微镜(SEM)。通过XRD,FT-IR和SEM分析粗硅粉。硅粉的分析结果表明,硅粉中的SiO2主要被确定为非晶态,而粗制硅粉的颗粒表现出特征性的球形结构,直径为50 nm至200 nm。多孔硅酸盐材料的制备涉及两个步骤。第一步是从粗制硅粉中提取SiO(3)(2-)渗滤液。在以下条件下获得SiO(3)(2-)提取率的最大值:反应温度为120 A摄氏度,反应时间为120分钟,NaOH浓度为15%,碱与SiO2的摩尔比为2。第二步是通过SiO(3)(2-)浸出液和Ca(OH)(2)悬浮液的反应制备多孔硅酸盐材料。最佳制备条件如下:制备温度为90 A摄氏度,制备时间为1.5 h,Si / Ca摩尔比为1:1,搅拌速度为100 r / min。 BET表面积和多孔硅酸盐材料的孔径分别为220.7 m(2)中心点g(-1)和8.55 cm(3)/ g。多孔硅酸盐材料呈现出无定形和无序的结构。光谱结果表明,多孔硅酸盐材料主要由Si,Ca,O,C和Na组成,形式为Ca2 +,SiO(3)(2-),CO(3)(2-)和Na +离子分别与XRD,TG-DSC和FT-IR数据一致。 N-2吸附-解吸等温线模式表明多孔硅酸盐材料属于典型的中孔材料。多孔硅酸盐材料具有去除甲醛的效率:在25 A摄氏度下140分钟的甲醛吸附能力为8.01 mg / g。

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