碱酸处理对铁素体沸石理化性质的影响及其在正己烷和超高分子量聚乙烯催化裂化反应中的应用

IF 2.5 4区 材料科学 Q2 CHEMISTRY, APPLIED
Bruno J. B. Silva, Diogo P. S. Silva, Elisa G. C. Gouveia, Bruna E. B. Costa, Rayssa J. B. Motta, Paulo H. L. Quintela, Jose G. A. Pacheco, Maritza M. Urbina, Antonio O. S. Silva
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引用次数: 0

摘要

本研究采用不同浓度的 NaOH(0.2 M 和 0.35 M)和温度(80 ºC 和 100 ºC),同时保持固定浓度的草酸(0.9 M),研究了对商用铁沸石(Si/Al = 10)进行连续碱-酸处理的效果。然后对这些沸石在正己烷和超高分子量聚乙烯(UHMWPE)裂解过程中的质构特性和酸度进行了评估。通过 X 射线衍射 (XRD)、能量色散 X 射线 (EDX) 分析、使用 BET、t-plot 和 BJH 方法进行氮吸附-解吸、透射电子显微镜 (TEM)、热分析 (TG/DTG)、傅立叶变换红外光谱 (FT-IR) 和氨温度编程解吸 (NH3-TPD),对这些沸石的化学和质地特性进行了表征。碱处理导致硅沥滤,降低了结晶度和微孔率,同时增加了中孔率和外表面积。随后的酸处理可去除无定形物质并保持中孔率,从而恢复结晶度和微孔率。更严格的碱性处理条件(0.35 M 和 100 ºC)会产生更多的中孔,但会显著降低微孔率和酸度,从而损害铁氧体沸石的形状选择性和活性催化位点。因此,在 80 ºC 下用 0.2 M NaOH 和 0.9 M 草酸处理的沸石在微孔度和酸度之间表现出最佳平衡,从而在正己烷和超高分子量聚乙烯的裂解过程中具有更高的催化活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of alkaline-acid treatment on the physicochemical properties of ferrierite zeolite with application in the catalytic cracking reactions of n-hexane and UHMWPE

This study investigates the effects of sequential alkaline-acid treatments on commercial ferrierite zeolite (Si/Al = 10) using different concentrations of NaOH (0.2 and 0.35 M) and temperatures (80 and 100 ºC), while maintaining a fixed concentration of oxalic acid (0.9 M). These zeolites were then evaluated for their textural properties and acidity in the cracking of n-hexane and ultra-high molecular weight polyethylene (UHMWPE). Chemical and textural properties were characterized by X-ray diffraction (XRD), energy dispersive X-ray (EDX) analyses, nitrogen adsorption–desorption using BET, t-plot and BJH methods, transmission electron microscopy (TEM), thermal analyses (TG/DTG), Fourier transform infrared spectroscopy (FT-IR), and ammonia temperature-programmed desorption (NH3-TPD). Alkaline treatments caused Si leaching, reducing crystallinity and microporosity, while increasing mesoporosity and external surface area. Subsequent acid treatments restored crystallinity and microporosity by removing amorphous species and preserving mesoporosity. More severe alkaline treatment conditions (0.35 M and 100 ºC) generated more mesopores but significantly reduced microporosity and acidity, compromising the shape selectivity and active catalytic sites of ferrierite zeolite. Thus, the zeolite treated with 0.2 M NaOH and 0.9 M oxalic acid at 80 ºC exhibited the best balance between micro-mesoporosity and acidity, resulting in higher catalytic activity in the cracking of n-hexane and UHMWPE.

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来源期刊
Journal of Porous Materials
Journal of Porous Materials 工程技术-材料科学:综合
CiteScore
4.80
自引率
7.70%
发文量
203
审稿时长
2.6 months
期刊介绍: The Journal of Porous Materials is an interdisciplinary and international periodical devoted to all types of porous materials. Its aim is the rapid publication of high quality, peer-reviewed papers focused on the synthesis, processing, characterization and property evaluation of all porous materials. The objective is to establish a unique journal that will serve as a principal means of communication for the growing interdisciplinary field of porous materials. Porous materials include microporous materials with 50 nm pores. Examples of microporous materials are natural and synthetic molecular sieves, cationic and anionic clays, pillared clays, tobermorites, pillared Zr and Ti phosphates, spherosilicates, carbons, porous polymers, xerogels, etc. Mesoporous materials include synthetic molecular sieves, xerogels, aerogels, glasses, glass ceramics, porous polymers, etc.; while macroporous materials include ceramics, glass ceramics, porous polymers, aerogels, cement, etc. The porous materials can be crystalline, semicrystalline or noncrystalline, or combinations thereof. They can also be either organic, inorganic, or their composites. The overall objective of the journal is the establishment of one main forum covering the basic and applied aspects of all porous materials.
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