Jump to main content
US EPA
United States Environmental Protection Agency
Search
Search
Main menu
Environmental Topics
Laws & Regulations
About EPA
Health & Environmental Research Online (HERO)
Contact Us
Print
Feedback
Export to File
Search:
This record has one attached file:
Add More Files
Attach File(s):
Display Name for File*:
Save
Citation
Tags
HERO ID
2646910
Reference Type
Journal Article
Title
Effect of molecular weight of sodium polyacrylates on the particle size distribution and stability of a TiO2 suspension in aqueous stirred media milling
Author(s)
Ohenoja, K; Saari, J; Illikainen, M; Niinimaki, J
Year
2014
Is Peer Reviewed?
1
Journal
Powder Technology
ISSN:
0032-5910
Volume
262
Page Numbers
188-193
DOI
10.1016/j.powtec.2014.04.079
Web of Science Id
WOS:000338610500023
Abstract
TiO2 pigment particles of around 0.2 mu m are used in a wide range of applications due to their excellent optical properties. The size distribution of these particles should be narrow and in the range 0.2-0.4 mu m in order to obtain optimum scattering. TiO2 particles are usually ground in a wet stirred media mill, and their size distribution depends on the operational parameters of the mill. Grinding success is also highly dependent on control of the particle interactions, which is done by adding stabilization chemicals to the suspension, e.g. polyelectrolytes that have an electrosteric stabilization effect. The influence of the molecular weight and dose of sodium polyacrylates on the size distribution of TiO2 pigment particles and the stability of suspensions are studied here. The aim was to obtain a particle size of 0.3 mu m and as narrow a particle size distribution as possible. It was found that the molecular weight and dose of sodium polyacrylates affected the particle size distribution and stability of TiO2 pigment particles in aqueous stirred media milling. The lowest viscosity values were obtained with the highest sodium polyacrylate molecular weight (M-w = 12,500) at every dose, and the same sodium polyacrylate is also the preferred one in terms of the resulting the particle size distribution at the lowest dose. (C) 2014 Elsevier B.V. All rights reserved.
Keywords
Stabilizing agent; Grinding aid; Polyelectrolyte; Titanium dioxide; Pigment; Ultrafine grinding
Home
Learn about HERO
Using HERO
Search HERO
Projects in HERO
Risk Assessment
Transparency & Integrity