The Department of Chemical Engineering will work towards a sustainable society while the research is based on resource-efficient techniques for sustainable development.

AdvanceBio Systems principal Dale Monceaux said that the SuPR2G is designed for research, development and demonstration of technologies related to the production of fuels and chemicals from a range of renewable substrates.

"Lund’s decision was heavily influenced by the SuPR2G continuous pretreatment reactor’s unique design and process capabilities which allow researchers to work with high-solidslignocellulosic feedstocks across a wide range of temperatures, pressures and pH’s," Monceaux added.

"By supplying technology to Lund’s internationally recognized biomass research program, we continue to support the development of technologies that increase the global production of renewable fuels from biomass as well as to increase the availability of bio-based chemicals," Monceaux continued.

"One major advantage of the stand-alone systems is that with single point connections to instrument air, power and water, the units are ready to operate without on-site assembly or construction."