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Extraction of Valuable Metals and Preparation of Mesoporous Materials from Circulating Fluidized Bed-Derived Fly Ash via an Acid–Alkali-Based Alternate Method

机译:通过酸碱基交替方法萃取循环流化床衍生粉煤灰的宝贵金属和介孔材料的制备

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Stringent leaching conditions including high pressure, temperature, and chemical consumption limit the extraction of valuable metals from circulating fluidized bed-derived high-alumina fly ash (CFB-HAFA) via the acid leaching method. In the present study, a complex utilization of CFB-HAFA, including the extraction of valuable metals (Al, Li, and Ga) and preparation of mesoporous material, is realized via a moderate acid–alkali-based alternate method. The results show that 82, 78, and 69% of Al, Li, and Ga, respectively, in CFB-HAFA are extracted by two treatments of acid leaching under moderate conditions of 15 wt % HCl concentration and 90 °C leaching temperature. The leaching behaviors of metals follow a shrinking core model, and the leaching process is first controlled by the surface chemical reaction at the initial stage and H~(+) diffusion thereafter. Numerous slit-shaped mesopores form in the residue during acid leaching. The final residue with a specific surface area of 273 m~(2)/g can be used as an efficient adsorbent for removing methylene blue from dye wastewater. The maximum adsorption capacity is approximately 140.0 mg/g at room temperature. The Langmuir adsorption isotherm and pseudo second-order model can well describe the adsorption process and kinetics, implying that the adsorption is a monolayer and chemical adsorption.
机译:严格的浸出条件包括高压,温度和化学品消耗,限制了通过酸浸出方法循环流化床衍生的高氧化铝飞灰(CFB-HAFA)的有价值金属的提取。在本研究中,通过中等酸碱基交替方法实现了CFB-HaFa的复杂利用,包括提取有价值金属(Al,Li和Ga)和介孔材料的制备。结果表明,在CFB-HAFA中,82,78和69%分别在CFB-HaFa中通过两种酸浸出的治疗在15wt%HCl浓度和90℃的浸出温度下提取。金属的浸出行为遵循收缩核心模型,并且首先通过初始阶段和H〜(+)扩散的表面化学反应来控制浸出过程。在酸浸出期间残留物中的许多狭缝形状的缺口形式。具有273m〜(2)/ g的比表面积的最终残留物可用作从染料废水中除去亚甲基蓝的有效吸附剂。在室温下最大吸附容量约为140.0mg / g。 Langmuir吸附等温线和伪二阶模型可以很好地描述吸附过程和动力学,这意味着吸附是单层和化学吸附。

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