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共沉淀Cu/Zn/Zr甲醇催化剂前驱体中的相变过程——悬浮老化形成超快成核的见解

Phase Transformation Processes in Coprecipitated Cu/Zn/Zr Methanol Catalyst Precursors-Insights into Suspension Aging Form Ultrafast Nucleation.

作者信息

Warmuth Lucas, Zevaco Thomas A, Guse David, Zimmermann Michael, Kind Matthias, Pitter Stephan

机构信息

Institute of Catalysis Research and Technology (IKFT), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344, Eggenstein-Leopoldshafen, Germany.

Institute of Thermal Process Engineering (TVT), Karlsruhe Institute of Technology (KIT), Kaiserstraße 12, 76131, Karlsruhe, Germany.

出版信息

Chempluschem. 2025 Sep;90(9):e202500284. doi: 10.1002/cplu.202500284. Epub 2025 Jul 9.

Abstract

Catalyst precursors for methanol synthesis prepared by coprecipitation, such as Cu/Zn-based hydroxycarbonates, are generally formed within two steps. The initial precipitation phase (nucleation) leads to a suspension from which, in a subsequent aging phase, the final solid precursor is formed, thus providing the structural and morphological features required for later use in catalysis. Combing ultrafast continuous nucleation with sampling from batch-wise aging opens up the possibility to follow the evolution and transitions of solid phases during suspension aging. The temporal progression of the existence of the different phases in a Cu/ZnO/ZrO-based system is investigated by scanning electron microscopy, X-ray diffraction, and inductive coupled plasma optical emission spectroscopy . According to the findings of this study, the intermediate recrystallization reveals to be a yet unknown two-step process. The presence of an amorphous transient zinc depot of NaZn(CO) × 3 HO greatly influences the formation of the relevant zincian malachite catalyst precursor [(Cu,Zn)(OH)CO], which is partly in contrast to reports on Cu/ZnO/AlO systems. Finally, a general mechanism including the relevant transformations during suspension aging in Cu/ZnO/ZrO systems is proposed, relying on a general thermodynamic approach, explaining the transient and final species.

摘要

通过共沉淀法制备的用于甲醇合成的催化剂前驱体,如铜锌基羟基碳酸盐,通常分两步形成。初始沉淀阶段(成核)会形成一种悬浮液,在随后的老化阶段,最终的固体前驱体从中形成,从而提供后续催化应用所需的结构和形态特征。将超快连续成核与分批老化取样相结合,为跟踪悬浮液老化过程中固相的演变和转变提供了可能性。通过扫描电子显微镜、X射线衍射和电感耦合等离子体发射光谱法研究了基于Cu/ZnO/ZrO体系中不同相存在的时间进程。根据本研究的结果,中间再结晶是一个尚未知晓的两步过程。无定形瞬态锌储库NaZn(CO)·3H₂O的存在极大地影响了相关锌孔雀石催化剂前驱体[(Cu,Zn)(OH)₂CO₃]的形成,这与关于Cu/ZnO/Al₂O₃体系的报道部分相反。最后,基于一般热力学方法,提出了一种包括Cu/ZnO/ZrO体系悬浮液老化过程中相关转变的通用机制,解释了瞬态和最终物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e999/12435107/23a7a01039ed/CPLU-90-e202500284-g007.jpg

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