News Picture Generic

Haldor Topsoe increases productivity with Chemspeed's automated solutions for oxide synthesis

May 7, 2012

A representative from Haldor Topsoe commented that: "Using Chemspeed's Autoplant we have been able to test a lot of ideas for making new aluminas in a small amount of time." About Haldor Topsoe The Topsoe way In 1940 Dr. Haldor Topsoe founded the company on the belief that only through applied fundamental research would we build and retain our position as second to none in catalysis. This notion still governs the company’s business activities: Research - technology - catalysts The synergy between research and development, process design, engineering, catalyst production and sales form the basis of the continuous optimisation of our catalysts and technologies. Topsoe’s research activities are focused according to feedback from industrial practice. Engineering design parameters are firmly based on in-house knowledge and technology resulting from research and development efforts. Our catalysts and processes are developed in close collaboration between research, engineering, and production, ensuring the creation of catalysts and processes, which meet and exceed clients’ expectations. Advising our clients The Topsoe business model is unique, integrating all aspects from fundamental knowledge to practical implementation to achieve optimum industrial efficiency. This ensures an ideal platform for advising clients and promotes state-of-the-art plants with excellent performance. Working together Topsoe’s commitment to catalysis has created a strong and multi-facetted business with a product portfolio spanning from catalysts to proprietary equipment, process design, engineering and service. We are known for our commitment to catalysis – a commitment we share with our clients. Additional information

Other Recent News

Discover more news articles you might be interested in

Read more about Complementary and Spatially Resolved Operando Spectroscopic Investigation of Pt/Al₂O₃ and Pt/CeO₂ Catalysts during CO/NO Conversion
News Picture 1 1 V2
Oct
14

Complementary and Spatially Resolved Operando Spectroscopic Investigation of Pt/Al₂O₃ and Pt/CeO₂ Catalysts during CO/NO Conversion

The composition of reaction mixtures strongly influences the structural evolution and performance of noble metal-based catalysts. In this work, we compared the effect of the simultaneous presence of CO and NO on the noble metal state and CO oxidation activity of Pt/Al2O3 and Pt/CeO2 catalysts under close-to-stoichiometric conditions using complementary in situ/operando X-ray and infrared spectroscopic techniques.

Read more about Influence of the CeO₂ Morphology and Initial Pd–Pt Interaction Degree on Catalyst Activity and Stability
News Picture 1 1 V2
Oct
7

Influence of the CeO₂ Morphology and Initial Pd–Pt Interaction Degree on Catalyst Activity and Stability

Due to its peculiar properties and strong interaction with noble metals, ceria is widely used as a catalyst support for numerous applications. In this work, morphologically pure and highly crystalline ceria nanocubes and nanorods were prepared to systematically investigate both the impact of the support morphology and Pd–Pt interaction degree on the noble metal-support interplay during CO oxidation.

Read more about High-throughput RAFT Polymerization via Automated Batch, Increment, and Continuous Flow Platforms
News Picture 1 1 V2
Featured
Sep
23

High-throughput RAFT Polymerization via Automated Batch, Increment, and Continuous Flow Platforms

We report an automated strategy to conduct RAFT copolymerizations using a Chemspeed robotic platform capable of executing batch, incremental, and continuous monomer addition workflows under inert conditions. Copolymerizations of oligo(ethylene glycol) acrylate with benzyl acrylate (as a control) and fluorescein o-acrylate were conducted in toluene, THF, and DMF, with reaction progress monitored via ¹H NMR spectroscopy at defined intervals.

© Chemspeed Technologies 2025