Phosphorus promotion and poisoning in zeolite-based materials: synthesis, characterisation and catalysis

Hendrik E. van der Bij, Bert M. Weckhuysen*

*Corresponding author for this work

Research output: Contribution to journalLiterature reviewpeer-review

Abstract

Phosphorus and microporous aluminosilicates, better known as zeolites, have a unique but poorly understood relationship. For example, phosphatation of the industrially important zeolite H-ZSM-5 is a well-known, relatively inexpensive and seemingly straightforward post-synthetic modification applied by the chemical industry not only to alter its hydrothermal stability and acidity, but also to increase its selectivity towards light olefins in hydrocarbon catalysis. On the other hand, phosphorus poisoning of zeolite-based catalysts, which are used for removing nitrogen oxides from exhaust fuels, poses a problem for their use in diesel engine catalysts. Despite the wide impact of phosphorus-zeolite chemistry, the exact physicochemical processes that take place require a more profound understanding. This review article provides the reader with a comprehensive and state-of-the-art overview of the academic literature, from the first reports in the late 1970s until the most recent studies. In the first part an in-depth analysis is undertaken, which will reveal universal physicochemical and structural effects of phosphorus-zeolite chemistry on the framework structure, accessibility, and strength of acid sites. The second part discusses the hydrothermal stability of zeolites and clarifies the promotional role that phosphorus plays. The third part of the review paper links the structural and physicochemical effects of phosphorus on zeolite materials with their catalytic performance in a variety of catalytic processes, including alkylation of aromatics, catalytic cracking, methanol-to-hydrocarbon processing, dehydration of bioalcohol, and ammonia selective catalytic reduction (SCR) of NOx. Based on these insights, we discuss potential applications and important directions for further research.

Original languageEnglish
Pages (from-to)7406-7428
Number of pages23
JournalChemical Society Reviews
Volume44
Issue number20
DOIs
Publication statusPublished - 2015

Keywords

  • SOLID-STATE NMR
  • CONTAINING ZSM-5 ZEOLITES
  • MODIFIED HZSM-5 CATALYSTS
  • SHAPE-SELECTIVE REACTIONS
  • PRODUCE LIGHT OLEFINS
  • SURFACE-ACTIVE SITES
  • HIGH-SILICA HZSM-5
  • P-MODIFIED ZSM-5
  • HYDROTHERMAL STABILITY
  • H-ZSM-5 ZEOLITES

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