text.skipToContent text.skipToNavigation

Malvern Panalytical LiT/LiBr 99.0/1.0 Pu 1kg C-0600-63

Malvern Panalytical -- Item TECPIM000074370
Please add to cart & request for quote to see the price
Reserve Now    

Malvern Panalytical LiT/LiBr 99.0/1.0 Pu is a 1 kg pack of Claisse lithium tetraborate flux containing an integrated lithium bromide non‑wetting agent for sample fusion and bead preparation. It is formulated for preparing homogeneous glass beads for elemental analysis by XRF, ICP and AA and for routine fusion workflows where reduced adherence and consistent melt behavior are required. The product is supplied in bead form for reliable handling and dosing.

Key Features:

  • Composition: LiT/LiBr 99.0/1.0
  • Net weight: 1 kg
  • Form: fused beads (dust‑free; particle distribution controlled, 100% < 500 µm)
  • Purity/grade: Pure (Pu)
  • Integrated non‑wetting agent: lithium bromide (LiBr) to reduce glass adherence
  • Primary applications: sample fusion for XRF, ICP and AA elemental analysis
  • Part code: C-0600-63

Advantages:

  • Prevents crystallization and reduces incidence of glass adhering to platinumware during fusion
  • Minimizes cracking and improves melt homogeneity to support accurate elemental analysis
  • Bead form and controlled particle size deliver consistent weighing, reduced dust and reproducible fusion behavior
  • Integrated non‑wetting agent removes the need to add separate wetting additives, saving preparation time

Product Details

Overview
Model
Product Type Spare Parts
Part Number C-0600-63
Brand Malvern Panalytical
Gross Dimensions (WxDxH cm)
Net Dimensions (WxDxH cm)
Gross Weight (kg)
Net Weight (kg)
Specifications
More options are available. Please contact us for more information.
Document
More options are available. Please contact us for more information.
Videos

Malvern Panalytical

Malvern Panalytical instruments blend cutting-edge engineering with the latest advancements in data analytics and AI. This combination empowers industries and researchers to comprehend the world with unparalleled precision, from biomolecular structures to quantum dots.