GCMS
Další informace
WebinářeO násKontaktujte násPodmínky užití
LabRulez s.r.o. Všechna práva vyhrazena. Obsah dostupný pod licencí CC BY-SA 4.0 Uveďte původ-Zachovejte licenci.
Pořadatel
Separation Science
Separation Science
Separation Science je přední online zdroj metod, aplikací, řešení problémů a školení v chromatografii a hmotnostní spektrometrii.
Tagy
GC
LinkedIn Logo

Catalytic Ammonia Cracking: Reaction Monitoring from Zero to >99.99% Conversion using the Agilent 990 Micro GC

ZÁZNAM | Proběhlo Po, 18.11.2024
Získejte lepší představu o hodnotě, kterou může mikro-GC přinést do projektů katalytického výzkumu, včetně laboratorního výzkumu a vývoje i pilotních projektů.
Přejít na webinář
Separation Science: Catalytic Ammonia Cracking: Reaction Monitoring from Zero to >99.99% Conversion using the Agilent 990 Micro GC
Separation Science: Catalytic Ammonia Cracking: Reaction Monitoring from Zero to >99.99% Conversion using the Agilent 990 Micro GC

Ammonia (NH3) has significant potential as a clean energy source. Made of hydrogen and nitrogen, NH3 itself can be burned as a carbon-free fuel. It also provides a convenient way to transport and store clean hydrogen, facilitating the global journey to Net Zero. Ammonia may play an essential role in the decarbonization of hard-to-abate sectors, such as shipping, power generation, and heavy-duty transportation, which will accelerate the global journey to Net Zero and sustain future generations.

With ammonia-based, emission-free, high energy-density power solutions constantly improving, there is a clear need for monitoring reactants and contaminants. These measurement devices should be able to measure required components (NH3, H2, N2, and H2O) over a wide concentration range, have short cycle times, be inert towards reactants, and, if possible, be able to monitor multiple reactor systems or lines.

This webinar describes how the Agilent 990 Micro GC is used to quantitatively measure NH3, H2, N2, and H2O simultaneously in various ammonia-based sample streams, providing a robust analytical solution that can handle a broad range of conditions up to 100% ammonia, without compromising performance.

By attending this webinar, you will learn about:

  • The role of ammonia in decarbonizing today’s energy markets
  • A review of key analytical performance parameters for ammonia detection
  • The Agilent 990 Micro GC and how to set it up for analysis of various ammonia-related sample streams

Why should you attend?

To gain a better understanding of the value micro-GC can bring to catalytic research projects including both laboratory R&D as well as piloting.

Who should attend?

Laboratory technicians, researchers, and scientists wishing to learn more about how the Agilent Micro GC can be a great solution for catalytic reaction monitoring.

What you need to know:

Date: 19 & 20 November, 2024

Start times: 

  • Broadcast #1: 19 November - 7:00 PST (Los Angeles) / 9:00 CST (Chicago) / 10:00 EST (New York) / 15:00 GMT (London) / 16:00 CET (Paris/Berlin)
  • Broadcast #2: 19 November - 11:00 PST (Los Angeles) / 13:00 CST (Chicago) / 14:00 EST (New York)
  • Broadcast #3: 20 November - 8:30 IST (New Delhi) / 11:00 SGT (Singapore) / 11:00 CST (Shanghai) / 12:00 JST (Tokyo) / 14:00 AEDT (Sydney) / 16:00 NZDT (Auckland)

Duration: Approximately 60 minutes

Presenter: Dr. Tomas Ricciardulli (Catalyst Scientist, Amogy, Inc.)

Tomas Ricciardulli is a Catalyst Scientist at Amogy, a technology startup located in Brooklyn, New York, which develops systems for the conversion of ammonia to power. His work focuses on the production and purification of hydrogen gas from liquid anhydrous ammonia. Tomas has a background in heterogeneous catalysis, a multidisciplinary field that, among other techniques, extensively uses gas chromatography for product and reactant analysis. After earning a Bachelor of Science degree in Chemical Engineering from Cornell University in 2017, Tomas defended his Chemical Engineering Ph.D. thesis in 2022 at the University of Illinois, Urbana-Champaign where he used an Agilent 7890 GC to study the active site requirements for the H2O2 synthesis reaction.

Presenter: Rob de Jong (Product Manager - Micro GC, Agilent)

Rob de Jong is Product Manager for micro GC at Agilent. He has a background in analytical chemistry science. After getting a BSc degree in Hogeschool Utrecht / University of Applied Sciences, he has been working in the field of mainly gas chromatography for over 30 years, holding different positions in sales, R&D, application development, project and product management. After being involved in the initial development of the 4900 PRO as R&D chemist in the early 2000s, he has reconnected with the micro GC product as Product Manager at Agilent.

Separation Science
LinkedIn Logo
 

Mohlo by Vás zajímat

Analysis of Aroma Components in Apples Using the Smart Aroma Database

Aplikace
| 2026 | Shimadzu
Instrumentace
GC/MSD, GC/SQ, HeadSpace
Výrobce
Shimadzu
Zaměření
Potraviny a zemědělství

Analysis of Acetaldehyde and Limonene in Recycled PET Using an HS-GCMS System (Carrier Gas: H2)

Aplikace
| 2026 | Shimadzu
Instrumentace
GC/MSD, GC/SQ, HeadSpace
Výrobce
Shimadzu
Zaměření
Průmysl a chemie

What Causes GC Capillary Column Performance Degradation, and How Can I Prevent It?

Technické články
| 2026 | Agilent Technologies
Instrumentace
Spotřební materiál, GC kolony
Výrobce
Agilent Technologies
Zaměření
Ostatní

Aromatic Component Analysis of Gasoline According to ASTM D5580 Using the Brevis GC- 2050 Gas Chromatograph

Aplikace
| 2025 | Shimadzu
Instrumentace
GC
Výrobce
Shimadzu
Zaměření
Průmysl a chemie

Micro GC Analysis of Permanent Gas Impurities in PEM Fuel Cell-Grade Hydrogen

Aplikace
| 2025 | Agilent Technologies
Instrumentace
GC
Výrobce
Agilent Technologies
Zaměření
Průmysl a chemie
Další projekty
LCMS
ICPMS
Sledujte nás
Další informace
WebinářeO násKontaktujte násPodmínky užití
LabRulez s.r.o. Všechna práva vyhrazena. Obsah dostupný pod licencí CC BY-SA 4.0 Uveďte původ-Zachovejte licenci.