UOP 856-07 PDF | Request Standard

UOP 856-07

Particle Size Distribution of Powders by Laser Light Scattering

Standard by UOP

Available Formats:

Availability: Immediate Download

Language: English

License Type: Single User

Updates: Not Included

UOP 856-07

About This Item

Legal Notices*
Newsletter *

UOP 856-07 is a technical laboratory method for Particle Size Distribution of Powders by Laser Light Scattering, helping professionals evaluate how powder particles are distributed across size ranges. For buyers assessing laboratory standards, this method is relevant when particle size data supports product characterization, process consistency, or material comparison. In refinery, petrochemical, or chemical lab settings, it can help analysts and quality teams generate consistent data for powders where particle size may affect handling, performance, or downstream processing. UOP 856-07 is a practical reference for controlled analytical work.

What is UOP 856-07?

This UOP test method defines an analytical approach for measuring particle size distribution in powders using laser light scattering. As a UOP method, it is intended for laboratory use where objective size-distribution data is needed for technical review, specification support, or routine quality assessment. The method title points to an instrumental measurement technique rather than a chemical composition test, making it useful for comparing powder samples in a consistent way. UOP 856-07 is therefore a focused documentation standard for analysts who need reliable particle-size characterization.

Where is UOP 856-07 used?

UOP 856-07 is commonly used in laboratory environments that evaluate powdered materials for petroleum, refining, or chemical applications. It may be relevant to laboratory analysts, analytical chemists, and QA/QC teams that review powder properties as part of product qualification or incoming material checks. Technical reviewers and process engineers may also rely on the resulting data when comparing materials or supporting internal specifications. In practice, the method fits workflows where particle size distribution is an important quality parameter and where standardized reporting supports decision-making.

Why is UOP 856-07 important?

This method matters because particle size distribution can influence how a powder performs in handling, blending, processing, and final use. UOP 856-07 supports clearer laboratory comparison by providing a standardized way to evaluate that distribution by laser light scattering. For organizations that depend on consistent material behavior, the method helps improve analytical clarity, documentation quality, and internal review. It is especially useful when teams need dependable data for product screening, quality verification, or technical assessment without relying on less consistent visual or manual checks.

  • Laser light scattering particle size analysis
  • Powder characterization for laboratory review
  • Support for QA/QC and product comparison
  • Useful for analytical chemistry and technical teams
  • Standardized data for specification support
  • Relevant to petroleum, chemical, and refinery labs
SKU: 51ea4c52cc7a

  • Publisher: UOP

Customers Also Bought

Online Standart App

Need This Standard?

Need This Standard?

Summarize with AI

ChatGPT Perplexity Google AI Claude Grok

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.