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Synthesis of 4A Zeolite from Kaolinite-Type Pyrite Flotation Tailings (KPFT)

机译:由高岭石型硫铁矿浮选尾矿(KPFT)合成4A沸石

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As a solid waste, kaolinite-type pyrite flotation tailings (KPFT) are a type of low-quality kaolin that contain impurities, such as iron and titanium. In this study, KPFT were calcined at 800 °C for two hours. The calcined production (CKPFT), which is mainly metakaolin, was used as the silicon and aluminum source to synthesize 4A zeolite (Na 12 [(AlO 2 ) 12 (SiO 2 ) 12 ]·27H 2 O) via hydrothermal synthesis. The optimal hydrothermal synthesis conditions were determined from X-ray diffraction phase analysis, relative crystallinity (RC), and cation ion exchange capacity (CEC). The optimal hydrothermal synthesis conditions were determined to be a ratio of 5 g CKPFT, 6.5 g NaOH, 65 mL H 2 O, crystallization temperature 110 °C, and crystallization time of three hours. Under the optimal hydrothermal synthesis conditions, the RC and CEC of the synthesized 4A zeolite were 40.77% and 210.32 mg CaCO 3 ·g ?1 , respectively. Further characterizations including pore size distribution, scanning electron microscopy, energy dispersive X-ray, thermogravimetry-differential scanning calorimetry, and Fourier transform infrared spectroscopy were performed. The results revealed that impurities in KPFT do not affect the synthesis of 4A zeolite. The surface morphology of the synthesized 4A zeolite was composed of chamfered-edged cubes with a particle size of one to three μm that was thermally stable up to approximately 890 °C.
机译:作为固体废物,高岭石型黄铁矿浮选尾矿(KPFT)是一种低质量的高岭土,其中含有铁和钛等杂质。在这项研究中,KPFT在800°C下煅烧了两个小时。煅烧产物(CKPFT)主要是偏高岭土,被用作硅和铝源,通过水热合成法合成4A沸石(Na 12 [(AlO 2)12(SiO 2)12]·27H 2 O)。通过X射线衍射相分析,相对结晶度(RC)和阳离子交换能力(CEC)确定了最佳水热合成条件。确定最佳水热合成条件为:5 g CKPFT,6.5 g NaOH,65 mL H 2 O,结晶温度110°C和结晶时间为3小时。在最佳水热合成条件下,合成的4A沸石的RC和CEC分别为40.7%和210.32 mg CaCO 3·g?1。进行了进一步的表征,包括孔径分布,扫描电子显微镜,能量色散X射线,热重分析-差示扫描量热法和傅立叶变换红外光谱。结果表明,KPFT中的杂质不影响4A沸石的合成。合成的4A沸石的表面形貌由倒角的立方体组成,其粒径为1至3μm,在高达890°C的温度下具有热稳定性。

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