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Zeolite-carbon composites prepared from industrial wastes: (Ⅰ) Effects of processing parameters

机译:工业废料制备的沸石-碳复合材料:(Ⅰ)工艺参数的影响

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Zeolite-carbon composites were synthesized by a combined process of calcination and carbonization at 600-850℃ in N_2 atmosphere followed by a hydrothermal treatment in alkaline aqueous solution from industrial wastes of coal fly ash and sawdust mixtures. The effects of processing parameters on the phase compositions, microstructure and the physical properties of the composites were investigated. With addition of Na_2CO_3 as an activator, the zeolite-carbon composite calcinated at 600℃ and hydrothermally treated at 120℃ in 2M NaOH aqueous solution consisting of zeolite Na-Pl and zeolite Na-X phases yielded a specific surface area of 84 m~2/g and a total pore volume of 0.15 cm~3/g, which were higher than some commercial building materials. The resulting composites with micropores and mesopores have potentials as low cost and high value-added environmental materials, such as metal ion and organic pollutant adsorbents, building material with humidity-controlling capacity and so on.
机译:沸石-碳复合材料是通过在N_2气氛中于600-850℃下煅烧和碳化的组合过程,然后从工业粉煤灰和木屑混合物的碱性水溶液中进行水热处理而合成的。研究了工艺参数对复合材料的相组成,微观结构和物理性能的影响。加入Na_2CO_3作为活化剂后,在600M煅烧并在120M的NaM水溶液(由Na-Pl和Na-X沸石组成的NaOH水溶液)中水热处理的沸石-碳复合物的比表面积为84 m〜2 / g,总孔容为0.15 cm〜3 / g,高于部分商业建材。所得的具有微孔和中孔的复合材料具有作为低成本和高附加值的环境材料的潜力,例如金属离子和有机污染物吸附剂,具有调湿能力的建筑材料等。

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