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Zeolite Adsorption of Chloride from a Synthetic Alkali-Activated Cement Pore Solution

机译:合成碱活化水泥孔隙溶液中沸石对氯化物的吸附

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摘要

This work presents experimental evidence that confirms the potential for two specific zeolites, namely chabazite and faujasite (with a cage size ~2–13 Å), to adsorb small amounts of chloride from a synthetic alkali-activated cement (AAC) pore solution. Four synthetic zeolites were first exposed to a chlorinated AAC pore solution, two faujasite zeolites (i.e., FAU, X-13), chabazite (i.e., SSZ-13), and sodium-stabilized mordenite (i.e., Na-Mordenite). The mineralogy and chemical composition were subsequently investigated via X-ray diffraction (XRD) and both energy- and wavelength-dispersive X-ray spectroscopy (WDS), respectively. Upon exposure to a chlorinated AAC pore solution, FAU and SSZ-13 displayed changes to their diffraction patterns (i.e., peak shifting and broadening), characteristic of ion entrapment within zeolitic aluminosilicate frameworks. Elemental mapping with WDS confirmed the presence of small amounts of elemental chlorine. Results indicate that the chloride-bearing capacity of zeolites is likely dependent on both microstructural features (e.g., cage sizes) and chemical composition.
机译:这项工作提供了实验证据,证实了两种特殊沸石(菱沸石和八面沸石(笼尺寸约2-13Å))从合成碱活化水泥(AAC)孔隙溶液中吸附少量氯的潜力。首先将四种合成沸石暴露于氯化AAC孔隙溶液,两种八面沸石(即FAU,X-13),菱沸石(即SSZ-13)和钠稳定的丝光沸石(即Na-丝光沸石)。随后分别通过X射线衍射(XRD)和能量色散X射线光谱(WDS)研究了矿物学和化学成分。暴露于氯化AAC孔溶液后,FAU和SSZ-13显示出其衍射图谱的变化(即峰移动和展宽),这是沸石在铝硅酸盐骨架内离子截留的特征。使用WDS进行元素图谱分析确认存在少量的元素氯。结果表明,沸石的含氯能力可能取决于微观结构特征(例如笼尺寸)和化学组成。

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