不同煤燃烧副产物合成的高纯沸石在二氧化碳捕集中的应用

J. C. Izidoro, D. Castanho, C. Rossati, D. Fungaro, S. Guilhen, T. Nogueira, M. Andrade
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引用次数: 0

摘要

以不同的煤燃烧副产物(袋滤飞灰、旋风滤灰和底灰)为原料合成了高纯度沸石A,并对其进行了形态、化学和矿物组成的表征。产品的二氧化碳捕获测试是通过一个连续的二氧化碳流系统,该系统通过一个填充了吸附剂材料的柱,该柱与直接测量二氧化碳浓度的分析仪相连。未改性的Na-A分子筛(ZABF、ZACF和ZABA)的CO 2吸附量分别为556.48、494.29和654.82 mg g。这些数值高于钙改性沸石样品所获得的数值。与其他吸附剂相比,ZABA吸附剂对co2的吸附性能最好,吸附量比4A型工业沸石高32%。在吸附循环研究中,ZABA在第二次和第三次循环中对CO 2的解吸率达到93%,表明在150℃下加热可以再生A沸石。利用煤灰制备沸石,并利用这些产品吸附co2,可以成为缓解燃煤电厂废物管理和温室气体排放问题的重要策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of high-purity zeolite a synthesized from different coal combustion by-products in carbon dioxide capture
High-purity zeolites A were synthesized from different coal combustion by-products (baghouse filter fly ash, cyclone filter ash, and bottom ash) and characterized in terms of morphology, chemical, and mineralogical composition. The products were tested for carbon dioxide capture by using a continuous CO 2 flow system passing through a column packed with the adsorbent material, which was connected to an analyser that directly measures the concentration of CO 2 . The values of CO 2 adsorption capacities calculated for the unmodified Na-A zeolites (ZABF, ZACF, and ZABA) were 556.48, 494.29 and 654.82 mg g, respectively. These values were higher than those achieved by the calcium-modified zeolite samples. ZABA adsorbent presented the best performance in CO 2 capture when compared to the other adsorbent material and achieved an adsorption capacity 32% higher than a 4A commercial zeolite. In the adsorption cycles study, the percentage of CO 2 desorption by ZABA at the second and third cycles reached 93%, showing that zeolite A can be regenerated by heating at 150 oC. The use of coal ashes to obtain zeolites and the application of these products for the CO 2 adsorption can be an important strategy to mitigate both the problem of waste management and the greenhouse gases emission in coal-fired power plants.
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来源期刊
CiteScore
1.20
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32
审稿时长
21 weeks
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