Organizer
AZoM
AZoM
AZoM is the leading online publication for the Materials Science community. AZoM aims to disseminate accessible scientific information and provide industry insights to those who can make a difference. Professionals, researchers, and informed readers can access a wealth of open-access content from thought leaders worldwide.
Tags
RAMAN
LinkedIn Logo

Why Faster Analytics are Critical for Process Control in Oil & Gas

We, 20.5.2026 16:00 CEST
Learn why faster analytical technologies such as process Raman spectroscopy are becoming essential for real-time process control in the evolving oil & gas and power generation industries.
Go to the webinar
Thermo Fisher Scientific: Real-Time Process Insights for Oil, Gas, & Future Fuels with Raman Spectroscopy
Thermo Fisher Scientific: Real-Time Process Insights for Oil, Gas, & Future Fuels with Raman Spectroscopy

Real-Time Process Insights for Oil, Gas, & Future Fuels with Raman Spectroscopy

A 5-Part Webinar Series

As the energy sector shifts toward more complex and dynamic processes, real-time analytics are essential for maintaining control, efficiency, and product quality. This 5-part webinar series explores how process Raman spectroscopy and integrated measurement solutions enable fast, in-line analysis across oil & gas, power generation, and emerging energy applications.

What we'll cover:

Each session highlights practical approaches to improving process visibility, reducing analytical delays, and supporting faster decision-making for:

  • Natural gas
  • Refined fuels
  • Hydrogen
  • Sustainable aviation fuels
  • Carbon capture
  • Power generation
  • Emerging energy applications
This Series is Ideal For:

Process, operations, and instrumentation professionals across oil & gas, power generation, and emerging energy sectors, including engineers, plant and refinery managers, and technical specialists involved in process optimization and analytical measurement.

Join the Webinars To:
  • Understand how real-time, in-line analytics improve process control and efficiency
  • Learn how process Raman simplifies and accelerates gas and liquid analysis
  • Explore alternatives to traditional methods such as gas chromatography
  • See how integrated measurement solutions enhance operational visibility
  • Gain insight into applications across conventional and next-generation energy systems

Webinar 1: Why Faster Analytics are Critical for Process Control in Oil & Gas

Join us for this 30-minute webinar, covering the current oil & gas and power generation landscape.

During this time, we will also discuss why faster analytical tools - like process Raman spectroscopy - are becoming essential in enabling real-time gas turbine process control.

Finally, we will share how these technologies can help you make quicker, more informed decisions in a shifting energy landscape.

Speaker: Janam Pandya (Product Manager - Measurement Control and Sample Identification, Thermo Fisher Scientific)

AZoM
LinkedIn Logo
 

Related content

Analysis of copper alloys with the ARL X900 XRF Spectrometer

Applications
| 2026 | Thermo Fisher Scientific
Instrumentation
X-ray
Manufacturer
Thermo Fisher Scientific
Industries
Materials Testing

Measurement of Fixed Carbon, Volatile Matter, and Ash of Biocoke

Applications
| 2026 | Shimadzu
Instrumentation
Thermal Analysis
Manufacturer
Shimadzu
Industries
Energy & Chemicals

Detection of Phenol Leakage into Wastewater Using TOC Measurement

Applications
| 2026 | Shimadzu
Instrumentation
TOC
Manufacturer
Shimadzu
Industries
Environmental

Routine Analysis of Rare Earth Elements in Basalt using ICP-MS

Applications
| 2026 | Agilent Technologies
Instrumentation
ICP/MS
Manufacturer
Agilent Technologies
Industries
Materials Testing

Analysis of rare earth elements in clay using XRF and XRD

Applications
| 2026 | Thermo Fisher Scientific
Instrumentation
XRD
Manufacturer
Thermo Fisher Scientific
Industries
Materials Testing
Other projects
GCMS
LCMS
Follow us
FacebookLinkedInYouTube
More information
WebinarsAbout usContact usTerms of use
LabRulez s.r.o. All rights reserved. Content available under a CC BY-SA 4.0 Attribution-ShareAlike