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Processing and kinetics studies on the alumina enrichment of coal fly ash by fractionating silicon dioxide as nano particles

机译:通过分馏二氧化硅为纳米颗粒富集粉煤灰中氧化铝的工艺和动力学研究

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摘要

Coal fly ash produced in the northern China is a potential bauxite substitute for aluminum production because of its high alumina content. However, this industrial application has been limited for its high silicon content. Alumina enrichment by removing silicon becomes a key technology for its utilization. A novel process was developed to fractionate the coal fly ash into high purity nano silicon particles and aluminum enriched residual ash. The procedure has major steps as sodium silicate dissolution with sodium hydroxide, first carbonation to remove impurities, second carbonation to precipitate silicon, and silicon precipitate recovery as a mesospheric nano particles product. Morphological and X-ray diffraction evidences indicated the glassy amorphous silicon content of the ash was dissolved in the sodium hydroxide solution whereas mullite remained in the residue. Kinetics study indicated that the second carbonation was a kinetically second order medium fast multi-phase reaction in which sodium silicate was precipitated as silicic acid. It was found that the reaction was controlled by the mass transferring resistance in the liquid membrane. These nano silicon dioxide particles were in size of 50 nm with a purity of 96%. Alumina content in process residue was slightly increased from 42.00 to 49.20%. Silicon dioxide content was reduced from 48.89 to 30.26%. Ratio of alumina/silica was increased from 0.86 to 1.63.
机译:在中国北方生产的粉煤灰由于其氧化铝含量高而成为铝生产的潜在铝土矿替代品。然而,由于其高硅含量,该工业应用受到限制。通过去除硅来富集氧化铝成为其利用的关键技术。开发了一种新的方法将煤粉煤灰分馏成高纯度的纳米硅颗粒和富铝残留灰分。该过程具有主要步骤,例如用氢氧化钠溶解硅酸钠,第一次碳酸化以除去杂质,第二次碳酸化以沉淀硅,以及将硅沉淀物回收为中层纳米颗粒产物。形态和X射线衍射证据表明,灰分的玻璃态非晶态硅含量溶解在氢氧化钠溶液中,而莫来石则残留在残余物中。动力学研究表明,第二次碳酸化反应是一种动力学二级中速多相反应,其中硅酸钠以硅酸的形式沉淀出来。发现该反应受液膜中的传质阻力控制。这些纳米二氧化硅颗粒的尺寸为50nm,纯度为96%。工艺残留物中的氧化铝含量从42.00%略微增加到49.20%。二氧化硅含量从48.89降低到30.26%。氧化铝/二氧化硅的比例从0.86增加到1.63。

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