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Discerning the Location and Nature of Coke Deposition from Surface to Bulk of Spent Zeolite Catalysts

机译:从表面探测焦炭沉积的位置和性质到大量的沸石催化剂

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The formation of carbonaceous deposits (coke) in zeolite pores during catalysis leads to temporary deactivation of catalyst, necessitating regeneration steps, affecting throughput, and resulting in partial permanent loss of catalytic efficiency. Yet, even to date, the coke molecule distribution is quite challenging to study with high spatial resolution from surface to bulk of the catalyst particles at a single particle level. To address this challenge we investigated the coke molecules in HZSM-5 catalyst after ethanol conversion treatment by a combination of C K-edge X-ray absorption spectroscopy (XAS), (13)C Cross polarization-magic angle spinning nuclear magnetic resonance (CP-MAS NMR) spectroscopy, and atom probe tomography (APT). XAS and NMR highlighted the aromatic character of coke molecules. APT permitted the imaging of the spatial distribution of hydrocarbon molecules located within the pores of spent HZSM-5 catalyst from surface to bulk at a single particle level. (27)Al NMR results and APT results indicated association of coke molecules with Al enriched regions within the spent HZSM-5 catalyst particles. The experimental results were additionally validated by a level-set-based APT field evaporation model. These results provide a new approach to investigate catalytic deactivation due to hydrocarbon coking or poisoning of zeolites at an unprecedented spatial resolution.
机译:在催化期间沸石孔中碳质沉积物(焦炭)形成催化剂的暂时失活,需要再生步骤,影响产量,并导致催化效率的部分永久性损失。然而,迄今为止,焦炭分子分布对于在单个颗粒水平下以高空间分辨率与大量催化剂颗粒的大量催化剂颗粒进行研究非常具有挑战性。为了解决这一挑战,我们通过C k边缘X射线吸收光谱(XAS),(13)C交叉偏振 - 魔法角旋转核磁共振(CP)来研究乙醇转化处理后HZSM-5催化剂中的焦炭分子。 -MAS NMR)光谱学和原子探测断层扫描(APT)。 XAS和NMR突出了焦炭分子的芳族特征。允许在单个颗粒水平下从表面到体积批量,允许位于花费HZSM-5催化剂的孔内的烃分子的空间分布的成像。 (27)Al NMR结果和APT结果表明焦炭分子与Al富含HHZSM-5催化剂颗粒内的富含Al富集的区域的关联。通过基于水平设定的APT场蒸发模型还验证了实验结果。这些结果提供了一种新方法来研究由于碳酸烃或沸石中毒以前所未有的空间分辨率而导致的催化失活。

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