Biodegradable packaging with cellulose fibrilsCellulose-based materials, like paper and board, are commonly used in packaging. They are light-weig...
I am looking to improve my rheology in difficult ph ranges: where do I look?Controlling rheology in very acidic or alkaline environments can be a tricky challenge. Different pr...
Cellulose fibrils for printed electronicsPrinted electronics suit well for the current mega trends, like internet of things and growing inter...
Microfibrillated cellulose, cellulose fibrils or nanocellulose?Is microfibrillated cellulose (MFC) the same as nanocellulose? What is the difference between micro-...
Dust control with cellulose fibrilsDust originating from abrasion of dry materials can cause a danger to the health and environment. On...
Temperature stability of cellulose fibrilsTypically, when using polymeric rheology modifiers, the viscosity of a formulation decreases with in...
What makes cellulose fibrils a good oxygen barrierCellulose fibrils has shown great potential as an oxygen barrier in packaging. This has led to numer...
Water holding capacity - how cellulose fibrils does itWater holding capacity, or high water retention value, is often mentioned as a key property of cellu...
Biodegradability of cellulose fibrilsPlastic microparticles found in the environment have gotten a lot of attention lately. Many of the p...