DocumentCode
570602
Title
Overcoming technological, commercial, organizational and social uncertainties of innovation: The case of forest biomass as a replacement of petroleum-based feed stocks
Author
Hall, Jeremy ; Matos, Stelvia ; Martin, Michael ; Bachor, Vern
Author_Institution
Beedie Sch. of Bus., Simon Fraser Univ., Vancouver, BC, Canada
fYear
2012
fDate
July 29 2012-Aug. 2 2012
Firstpage
249
Lastpage
258
Abstract
The replacement of petroleum-based feed stocks with more environmentally sound alternatives has gained widespread interest in a number of industries. Sustainably managed, forest biomass can be a key driver in this transition by providing a source of biofuels, chemical feedstocks and lignin-based polymers. New genomic and metagenomic approaches can identify novel enzymes that will allow for example the degradation of lignocellulose and the discovery and development of biocatalysts for improving production efficiencies and reducing environmental impacts such as carbon emissions. However, in addition to these technical hurdles that must be overcome, the transition to more environmentally sound biomass-based industrial systems will depend on legitimization processes to overcome commercial, organizational and social uncertainties, and will affect various industrial sectors differently. This paper presents preliminary insights from the Genome Canada funded project `Harnessing Microbial Diversity for Sustainable use of Forest Biomass Resources´, which explores such genomic and metagenomic approaches for improved biomass efficiencies. As part of the study, we examine commercialization processes, public policy issues and secondary stakeholder concerns of this technology to better understand how such technologies may be successfully diffused. We discuss the implications for industry sectors and other stakeholders affected by the development of this technology.
Keywords
biofuel; biotechnology; environmental factors; enzymes; genomics; petroleum; polymers; renewable materials; sustainable development; biocatalyst; biofuel; biomass-based industrial system; carbon emission; chemical feedstock; commercial uncertainty; commercialization process; environmental impact; enzyme; forest biomass; lignin-based polymer; lignocellulose; metagenomic approach; organizational uncertainty; petroleum-based feed stock; public policy; social uncertainty; technological uncertainty; Bioinformatics; Biomass; Genomics; Logic gates; Organizations; Technological innovation; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Technology Management for Emerging Technologies (PICMET), 2012 Proceedings of PICMET '12:
Conference_Location
Vancouver, BC
Print_ISBN
978-1-4673-2853-1
Type
conf
Filename
6304045
Link To Document