石油炼制与化工 ›› 2026, Vol. 57 ›› Issue (8): 35-43.

• 基础研究 • 上一篇    下一篇

微量积炭对ZSM-5分子筛中正己烷扩散行为的双重调控效应研究

李宏池,秦玉才,张晓欣,关慧敏,高可欣,南翔彬,高英慧   

  1. 辽宁石油化工大学石油化工学院
  • 收稿日期:2026-02-11 修回日期:2026-05-10 出版日期:2026-08-12 发布日期:2026-07-23
  • 通讯作者: 张晓欣 E-mail:zxx5266@126.com
  • 基金资助:
    国家自然科学基金;国家自然科学基金;“兴辽英才”计划;辽宁省教育厅基本科研项目;辽宁石油化工大学科研启动项目

STUDY ON DUAL REGULATORY EFFECT OF TRACE COKE ON n-HEXANE DIFFUSION BEHAVIOR IN ZSM-5 MOLECULAR SIEVE

  • Received:2026-02-11 Revised:2026-05-10 Online:2026-08-12 Published:2026-07-23

摘要: 以正己烷为探针分子,通过调控积炭反应次数制备一系列微量积炭的ZSM-5分子筛样品,针对性研究积炭物种演化对分子筛传质性能的影响。结合X射线衍射、化学吸附、原位红外光谱等表征手段,明确积炭的形态及物种种类;分别利用零长柱技术和智能重量分析仪定量评估正己烷的扩散动力学与吸附热力学行为。结果表明:微量积炭的引入并未破坏ZSM-5分子筛的晶体骨架结构,积炭优先富集于微孔孔口及邻近的外表面区域;在积炭初期,低环芳香族积炭的生成可覆盖孔口Bronsted酸位点,削弱正己烷分子与孔口羟基之间的强吸附作用,从而降低孔口扩散势垒,促进分子在孔道内的扩散;随着反应进一步进行,多环芳烃(如蒽、菲)及石墨化积炭逐渐累积,在孔口及邻近外表面形成连续沉积层,导致孔道部分堵塞并显著提高扩散阻力,使正己烷的传质扩散速率明显下降。上述研究明晰了微量积炭对正己烷扩散行为的“双重调控效应”,为深入理解分子筛积炭失活过程及孔口扩散调控机制提供了新的认识。

关键词: 微量积炭, 正己烷, ZSM-5, 分子筛, 孔口扩散阻力, 积炭物种

Abstract: n-Hexane was employed as a probe molecule, and a series of ZSM-5 molecular sieve samples with different levels of trace coke deposition were prepared by controlling the number of reactant injections. The effect of coke species evolution on the mass transfer properties of molecular sieve was systematically investigated. A combination of X-ray diffraction, chemisorption, in-situ infrared spectroscopy, among others was used to elucidate the morphology, distribution and chemical nature of coke species. Meanwhile, the diffusion kinetics and adsorption thermodynamics of n-hexane were quantitatively evaluated using the zero-length column technique and an intelligent gravimetric analyzer, respectively. The results demonstrate that the introduction of trace amounts of coke does not damage the crystalline framework structure of the ZSM-5molecular sieve, with coke species preferentially accumulating at the micropore mouth and the adjacent outer surface areas. At the early stage of coke formation, low-ring aromatic coke covers Bronsted acid sites at the pore mouth, weakens the strong adsorption interactions between n-hexane molecules and pore-mouth hydroxyl groups, and thereby reduces the diffusion barrier, leading to enhanced intracrystalline diffusion. As the reaction proceeds further, higher-ring polycyclic aromatic hydrocarbons (e.g., anthracene and phenanthrene) and graphitized coke gradually accumulate, forming a continuous deposit at the pore mouths and external surfaces. This results in partial pore blockage and a substantial increase in diffusion resistance, significantly suppressing the mass transfer and diffusion rate of n-hexane. Overall, this study clarifies the dual regulatory effect of trace coke deposition on n-hexane diffusion behavior, providing new insights into coke-induced deactivation and pore-mouth diffusion regulation in molecular sieve catalysts.

Key words: trace coke deposition, n-hexane, ZSM-5, molecular sieve, diffusion resistance of pore mouth, coke species