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Hydrothermal synthesis of mixtures of NaA zeolite and sodalite from Ti-bearing electric arc furnace slag

机译:来自轴承电弧炉炉渣的Naa沸石和钠盐的水热合成

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摘要

Ti-bearing electric arc furnace slag (Ti-bearing EAF slag) is the main solid waste generated in the direct reduction iron making process. During the extraction process of Ti from Ti-bearing EAF slag, a by-product containing abundant Si and Al was seldom utilized, thus leading to waste of valuable elements and secondary pollution. In this paper, NaA zeolite (6Na _(2) O·6Al _(2) O _(3) ·12SiO _(2) ) and sodalite (SOD, 4Na _(2) O·3Al _(2) O _(3) ·6SiO _(2) ) were synthesized successfully using the by-product as a precursor. The effects of the SiO _(2) /Al _(2) O _(3) molar ratio ( n (SiO _(2) )/ n (Al _(2) O _(3) )), H _(2) O/Na _(2) O molar ratio ( n (H _(2) O)/ n (Na _(2) O)), hydrothermal temperature and time on the crystal phase and microstructure of the prepared zeolites were systematically investigated. The results indicated that NaA zeolite with good crystallinity and cubic morphology was obtained at 140 °C for 3 h with n (SiO _(2) )/ n (Al _(2) O _(3) ) and n (H _(2) O)/ n (Na _(2) O) fixed at 2.0?:?1 and 100?:?1, respectively. Decreasing n (H _(2) O)/ n (Na _(2) O), raising the hydrothermal temperature and prolonging the hydrothermal time were beneficial for the formation of spherical SOD zeolite. The phase transformation between NaA and SOD zeolite was discussed and a mechanism was proposed to explain the phenomenon of these zeolites coexisting in the obtained samples. In addition, the removal performances of Cu ~(2+) in aqueous solutions using zeolites synthesized at different temperatures were studied. The maximum removal capacity of the prepared zeolite can reach 1.346 mmol g ~(?1) for 180 min.
机译:Ti-轴承电弧炉炉渣(Ti-轴承EAF炉渣)是直接减速铁制造过程中产生的主要固体废物。在从Ti轴承EAF渣的Ti的提取过程中,含有丰富的Si和Al的副产物很少利用,从而导致浪费有价值的元素和二次污染。在本文中,NAA沸石(6NA _(2)O·6AL _(2)O _(3)·12SIO _(2))和钠(SOD,4NA _(2)O·3Al _(2)O _ (3)·6SIO _(2))用副产物成功合成,作为前体。 SiO_(2)/ Al _(2)O o _(3)摩尔比的影响(N(SiO _(2))/ n(Al _(2)O _(3))),H _( 2)O / Na _(2)O摩尔比(N(H _(2)O)/ N(Na _(2)O)),系统地系统地提供了制备的沸石的晶体相和微观结构上的水热温度和时间调查。结果表明,具有良好结晶度和立方体形态的NAA沸石在140℃下获得3小时(SiO_(2))/ N(Al _(2)O _(3))和N(H _( 2)o)/ n(na _(2)o)固定在2.0?:?1和100?:?1分别。降低N(H _(2)O)/ N(Na _(2)O),提高水热温度并延长水热时间是有益于形成球形SOD沸石的形成。讨论了NAA和SOD沸石之间的相变,提出了一种机理以解释在所得样品中共存的这些沸石的现象。此外,研究了使用在不同温度下合成的沸石的水溶液中Cu〜(2+)的去除性能。制备的沸石的最大去除能力可达到1.346mmol g〜(α1)180分钟。

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