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首页> 外文期刊>Clays and clay minerals >THERMAL BEHAVIOR OF NATURAL AND CATION-EXCHANGED CLINOPTILOLITE FROM SARDINIA (ITALY)
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THERMAL BEHAVIOR OF NATURAL AND CATION-EXCHANGED CLINOPTILOLITE FROM SARDINIA (ITALY)

机译:撒丁岛(意大利)的天然和阳离子交换斜云母的热行为

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摘要

The thermal behavior of two clinoptilolites from an epiclastic and a pyroclastic deposit of central-northern Sardinia and of their exchanged forms (Li, Na, K, Cs, Mg, Ca, Sr and ammonium) were investigated by differential thermal analysis and thermogravimetry up to 1000℃. Their thermal stability was studied by evaluating the residual crystallinity (expressed as rehydration capacity) after 2 h thermal treatments at 450, 600 and 900℃. The water loss at 1000℃ was linearly related to the radius (r) and the charge (z) of the exchangeable cations by the equations r~2/z or r~3/z, which are proportional to the inverse of the charge density over the surface or to the charge density over the volume of the cations. The cation composition plays a crucial role in determining the thermal behavior of clinoptilolite. The presence of cations such as Cs or K, which have low surface or volume charge densities, was found to increase the thermal resistance. In particular, the crystallinity of Cs- and K-exchanged forms of both clinoptilolites was not affected by thermal treatment at 450℃ and was only slightly reduced by thermal treatment at 600℃. Predicting the thermal behavior of natural and cation-exchanged forms of these clinoptilolites can provide useful information for possible applications in catalysis, in the case of high thermal stability, or for thermal transformation into ceramics or lightweight aggregates.
机译:通过差示热分析和热重分析法研究了中北部撒丁岛的表生碎屑和热碎屑沉积物中两种斜发沸石及其交换形式(Li,Na,K,Cs,Mg,Ca,Sr和铵)的热行为。 1000℃。通过评估在450、600和900℃下2 h热处理后的残余结晶度(以复水能力表示)来研究其热稳定性。通过方程r〜2 / z或r〜3 / z,与1000℃时的水分损失与可交换阳离子的半径(r)和电荷(z)线性相关,它们与电荷密度的倒数成比例在表面上或整个阳离子体积上的电荷密度。阳离子组成在确定斜发沸石的热行为中起着至关重要的作用。发现具有低表面或体积电荷密度的阳离子如Cs或K的存在增加了热阻。特别是,两种斜发沸石的Cs和K交换形式的结晶度不受450℃热处理的影响,而仅受600℃热处理的结晶度略有降低。预测这些斜发沸石的天然形式和阳离子交换形式的热行为,可以为在高热稳定性的情况下在催化中的可能应用或热转化为陶瓷或轻质骨料提供有用的信息。

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