改性霞石的二氧化碳捕集及其再生性能

IF 6.9 1区 工程技术 Q2 ENERGY & FUELS International Journal of Coal Science & Technology Pub Date : 2024-03-22 DOI:10.1007/s40789-023-00661-x
Bo Jiang, Bo Zhang, Xuqin Duan, Yi Xing
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引用次数: 0

摘要

本研究的重点是利用变压吸附(PSA)技术捕获二氧化碳,吸附剂为改性铮亮石。通过焙烧、酸洗、酸洗与焙烧相结合以及离子交换等方法对天然霞石进行改性。通过酸洗-焙烧和离子交换进行改性后,发现其二氧化碳吸附容量最高,分别为 730 mL/g 和 876.7 mL/g。研究发现,通过真空解吸和加热相结合的方法对铮铮石进行再生,可以恢复其之前高达 89% 的二氧化碳吸附能力。为了检验铮沸石在混合气体中的二氧化碳吸附能力,使用了含有 12% CO2 和 4% O2 的模拟焦化废气,结果发现离子交换改性铮沸石的二氧化碳去除效率达到 92.5%。BET 测试表明,酸洗-焙烧和 Na+ 改性提高了铮沸石的孔隙率,从而提高了其吸附能力。这项工作证明了将改性霞石作为二氧化碳捕集的有效吸附剂的可行性,为处理温室气体提供了一种前景广阔的工具。
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CO2 capture by modified clinoptilolite and its regeneration performance

This study focuses on CO2 capture by pressure swing adsorption (PSA), with modified clinoptilolite as the adsorbent. Natural clinoptilolite is modified by roasting, by acid pickling, by a combination of acid pickling and roasting, and by ion exchange. Modification by acid pickling–roasting and by ion exchange are found to give the highest CO2 adsorption capacities, of 730 mL/g and 876.7 mL/g, respectively. It is found that regeneration of clinoptilolite by a combination of vacuum desorption and heating enables recovery of as much as 89% of its previous CO2 adsorption capacity. To examine the CO2 adsorption capacity of clinoptilolite when applied to mixed gas, a simulated coking exhaust containing 12% CO2 and 4% O2 is used, and it is found that ion exchange modified clinoptilolite achieves a CO2 removal efficiency of 92.5%. A BET test reveals that acid pickling–roasting and Na+ modification enhance the porosity of clinoptilolite, thereby improving its adsorption capacity. This work demonstrates the feasibility of applying modified clinoptilolite as an effective adsorbent for CO2 capture, providing a promising tool for dealing with greenhouse gases.

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来源期刊
CiteScore
11.40
自引率
8.40%
发文量
678
审稿时长
12 weeks
期刊介绍: The International Journal of Coal Science & Technology is a peer-reviewed open access journal that focuses on key topics of coal scientific research and mining development. It serves as a forum for scientists to present research findings and discuss challenging issues in the field. The journal covers a range of topics including coal geology, geochemistry, geophysics, mineralogy, and petrology. It also covers coal mining theory, technology, and engineering, as well as coal processing, utilization, and conversion. Additionally, the journal explores coal mining environment and reclamation, along with related aspects. The International Journal of Coal Science & Technology is published with China Coal Society, who also cover the publication costs. This means that authors do not need to pay an article-processing charge.
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