K(I)、Ca(II)、Ce(III)改性钛渣衍生LTA型沸石及其CO2吸附性能
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1.钒钛资源综合利用国家重点实验室;2.昆明理工大学 化学工程学院

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钒钛资源综合利用国家重点实验室开放课题(2022P4FZG03A);云南省科技厅 昆明理工大学“双一流”联合专项(202101BE070001-031);昆明理工大学分析测试基金(2022T20160009)


Enhancement of CO2 adsorption capacity by K(I), Ca(II), and Ce(III) modified LTA zeolite
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1.State Key Laboratory of Vanadium and Titanium Resources Comprehensive Utilization;2.Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming;3.School of Chemical Engineering, Kunming University of Science and Technology;4.Faculty of Chemical Engineering, Kunming University of Science and Technology

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    摘要:

    LTA沸石吸附剂被认为是一种很有前途的二氧化碳(CO2)捕获材料,但其应用在经济和吸附能力上具有挑战。本文采用一种可持续的绿色合成策略:以工业固体废渣钛渣为原料构筑LTA(Na-LTA)沸石母体,通过常规液相离子交换法(LPIE)调变阳离子活性位制备系列阳离子交换型M-LTA(M:K、Ca、Ce)沸石分子筛吸附剂提升CO2吸附性能。通过动态吸附法和重量吸附法测定,所有M-LTA沸石分子筛的饱和吸附量均有所提高,但K-LTA的穿透吸附量显著减小,这与较低的吸附速率和孔容相关。而Ca-LTA型沸石显著提高了CO2捕集能力以及CO2/N2和CO2/CH4分离率,经5次循环吸附/脱附后仍保持优异的循环稳定性;加速了CO2吸附速率,是Na-LTA母体的4.95倍;根据Langmuir-Freundlich等温线模型预测,Ca-LTA最大吸附能力可达4.02 mmol/g。Na-LTA沸石吸附CO2过程由物理和化学吸附共同主导。本研究遵循“以废治废”的环保理念,为固废的资源化利用与改善环境污染协同捕集CO2提供了重要的参考价值。

    Abstract:

    LTA zeolite adsorbent is considered to be a promising material for capturing carbon dioxide (CO2), but its application faces challenges in terms of economy and adsorption capacity. This paper proposes a sustainable green synthesis strategy to construct the LTA (Na-LTA) zeolite precursor using industrial solid waste titania slag as raw material, and then prepare a series of cation-exchanged M-LTA (M: K, Ca, Ce) zeolite molecular sieves adsorbents through conventional liquid-phase ion exchange (LPIE) to adjust the cationic active sites. The dynamic adsorption test and weight adsorption test show that the saturated adsorption capacity of all M-LTA zeolite molecular sieves has been improved, but the penetration adsorption capacity of K-LTA is significantly reduced, which is related to the lower adsorption rate and pore volume. The Ca-LTA type zeolite significantly improved the CO2 capture capacity and CO2/N2 and CO2/CH4 separation rate, and maintained excellent cyclic stability after five cycles of adsorption/desorption; it accelerated the CO2 adsorption rate, being 4.95 times that of the Na-LTA precursor; and according to the Langmuir-Freundlich isotherm model, the maximum adsorption capacity of Ca-LTA could reach 4.02 mmol/g. The CO2 adsorption process by Na-LTA zeolite is dominated by both physical and chemical adsorption. This study follows the environmental protection concept of "treating waste with waste" and provides important reference value for the resource utilization of solid waste and the improvement of environmental pollution through synergistic CO2 capture.

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皇甫林,尚波,李方园,罗中秋,祖运,周新涛,蔡秀楠. K(I)、Ca(II)、Ce(III)改性钛渣衍生LTA型沸石及其CO2吸附性能[J].精细化工,2025,42(7):

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  • 收稿日期:2024-06-06
  • 最后修改日期:2024-07-23
  • 录用日期:2024-07-03
  • 在线发布日期: 2025-07-10
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