KimaCell® HEMC MH10M hydroxyethyl methyl cellulose can effectively improve the work performance: the mortar has better workability, better anti-sagging performance, no adhesion with construction tools and higher cost. Pulp performance, etc. These properties make the mortar easier to level and cure. The water retention of methyl cellulose ether can adjust the opening time and coagulation process of the mortar system, thereby adjusting the operating time of the system; methyl cellulose ether has the ability to gradually release water over a long period of time, which can effectively To ensure the bonding of the product to the substrate.
Chemical name | Hydroxyethyl Methyl Cellulose |
Synonym | Cellulose ether, 2-hydroxyethyl methyl cellulose, Cellulose, 2-hydroxyethyl methyl ether, Methyl hydroxyethyl cellulose, HEMC, MHEC |
CAS number | 9032-42-2 |
Brand | KimaCell |
Product Grade | HEMC MH10M |
Solubility | Water Soluble Cellulose ether |
Physical form | White to off-white cellulose powder |
Moisture | Max.6% |
PH | 4.0-8.0 |
Viscosity Brookfield 2% solution | 8000-12000mPa.s |
Viscosity NDJ 2% solution | 8000-12000mPa.s |
Ash content | Max5.0% |
Mesh size | 99% pass 100mesh |
HS code | 39123900 |
KimaCell® HEMC MH10M Cellulose ether are suitable for improving the properties of various building materials such as: plastering mortars, masonry mortars, gypsum and lime, gypsum systems, cement and cement, lime systems, tile adhesives, wall putty, tile adhesives and Caulking paste, dispersion adhesive system, self-leveling floor materials, etc. Hydroxyethyl Methyl cellulose ether products have different characteristics according to their etherification method, degree of etherification, viscosity of aqueous solution, physical properties such as particle fineness, solubility characteristics and modification methods. To get the best use effect, it is necessary to choose the correct brand of cellulose ether for different application fields, and the selected brand of methyl cellulose ether must be compatible with the mortar system used.