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Highlight IDTitleStrategic Program Area(s)YearStation
Photo of Molecular model of cobalt salcomine with an oxygen attached. Tom Elder, U.S. Department of Agriculture Forest Service.
ID: 1047
Catalytic Pulping of Wood

The kraft pulping process has been around for more than 100 years. It is cost effective and efficient but provides a low fiber yield and a compl ...

Principal Investigator : Alan W. Rudie

Resource Management and Use2016FPL
Photo of FPL-2017-117
ID: 1289
Enabling cellulose nanomaterial commercialization

Cellulose nanomaterials are a high-value product that can be made from low-value wood.

Principal Investigator : Alan W. Rudie

Water, Air, and Soil
Resource Management and Use
Photo of TEM micrograph of electrospun polymethyl methacrylate fibers containing 17 weight percent cellulose nano-crystals/Alan Rudie, Forest Service
ID: 283
High Performance nano-Cellulose Composites

Cellulose nano-crystals (CNC) and cellulose nano-fibrils (CNF) provide strength properties equivalent to Kevlar and can be used in optically cle ...

Principal Investigator : Alan W. Rudie

Resource Management and Use2011FPL
Photo of FPL's Rick Reiner (right) toured USDA Under Secretary Sherman (left) through the nanocellulose facility, explaining its capabilities and the promise this new material offers to a wide variety of industries. Steve Schmieding, Forest Service
ID: 14
New Cellulose Nanomaterials Pilot Plant Keeps Up With Market Demand

Materials are being supplied to three government agencies and six partner universities to accelerate the development of advanced cellulose-reinf ...

Principal Investigator : Alan W. Rudie

Resource Management and Use2012FPL
Photo of
ID: 175
Scale-up of cellulose nano material production

There is considerable research internationally on cellulose nano-materials as reinforcement fibers for high strength composites. A persistent pr ...

Principal Investigator : Alan W. Rudie

Resource Management and Use2010FPL