UOP 1022-18
Determination of Trace Carbonyl Sulfide and Hydrogen Sulfide in Polymer Grade Ethylene and Propylene by Gas Chromatography Mass Spectrometry
Available Formats:
Availability: Immediate Download
Language: English
License Type: Single User
Updates: Not Included
About This Item
UOP 1022-18 is a laboratory determination method for measuring trace carbonyl sulfide and hydrogen sulfide in polymer grade ethylene and propylene by gas chromatography mass spectrometry. It is designed for buyers who need a standardized reference for assessing very low-level sulfur contaminants in light olefin streams, where small variations can affect product quality and downstream use. For refinery and petrochemical laboratories, this kind of method supports consistent analysis, technical review, and quality verification when evaluating polymer grade feedstocks and comparing sample results across runs or sites.
What does UOP 1022-18 measure?
UOP 1022-18 focuses on the determination of trace carbonyl sulfide and hydrogen sulfide in polymer grade ethylene and propylene. As a UOP determination method, it is centered on measurement rather than process operation, giving laboratories a defined analytical basis for identifying these sulfur species at very low levels. The title indicates the use of gas chromatography mass spectrometry, which makes the method especially relevant for precise laboratory analysis and trace contaminant evaluation. This helps teams work with a repeatable framework for characterizing polymer-grade olefin samples.
Where is UOP 1022-18 used?
This method is commonly used in petrochemical and refinery laboratory environments where polymer grade ethylene and propylene are tested for trace sulfur impurities. Laboratory analysts, analytical chemists, and QA/QC personnel may use UOP 1022-18 to support product verification, incoming sample checks, and technical documentation. It is also relevant for product quality specialists and process teams that rely on consistent analytical data when comparing batches or reviewing material suitability. In practice, it fits workflows that require careful evaluation of light olefin purity.
Why is UOP 1022-18 important?
UOP 1022-18 matters because trace carbonyl sulfide and hydrogen sulfide can influence quality decisions even when present at very low levels. A clear determination method helps laboratories maintain consistency, improve comparison between samples, and support reliable quality control records. For organizations handling polymer grade ethylene and propylene, the method provides practical analytical support for routine testing, specification review, and documentation. That makes it useful for teams that need dependable trace sulfur results for internal decision-making and technical oversight.
- Trace sulfur determination for polymer grade olefins
- Gas chromatography mass spectrometry based analysis
- Ethylene and propylene sample evaluation
- Supports refinery and petrochemical QA/QC
- Useful for laboratory consistency and product review
- Publisher: UOP
Need This Standard?
Request a personalized quote today to receive the latest edition in PDF or other available formats.
Need This Standard?
Request a personalized quote today to receive the latest edition in PDF or other available formats.
Summarize with AI
Get quick summaries using your favorite AI engine.
Online Standart Disclaimer
OnlineStandart.com is an authorized reseller of international standards through partnerships with authorized distributors. We do not own the copyrights or trademarks of the standards we sell, including but not limited to those of API, ASHRAE, BSI, SAE, ASTM, IEEE, IEC, ASME, ISO, and others.
All product names, logos, and brands are property of their respective owners. All company, product, and service names used on this website are for identification purposes only. Use of these names, trademarks, and brands does not imply endorsement.
The content provided on this website is for informational purposes only and is intended to promote our reselling services. OnlineStandart.com is not affiliated with or endorsed by any of the standard organizations unless explicitly stated.




