Potential Synergies and Challenges in Refining Cellulosic Biomass to Fuels, Chemicals, and Power
- 1 January 2003
- journal article
- Published by Wiley in Biotechnology Progress
- Vol. 19 (2) , 254-262
- https://doi.org/10.1021/bp025654l
Abstract
Lignocellulosic biomass such as agricultural and forestry residues and dedicated crops provides a low‐cost and uniquely sustainable resource for production of many organic fuels and chemicals that can reduce greenhouse gas emissions, enhance energy security, improve the economy, dispose of problematic solid wastes, and improve air quality. A technoeconomic analysis of biologically processing lignocellulosics to ethanol is adapted to project the cost of making sugar intermediates for producing a range of such products, and sugar costs are predicted to drop with plant size as a result of economies of scale that outweigh increased biomass transport costs for facilities processing less than about 10,000 dry tons per day. Criteria are then reviewed for identifying promising chemicals in addition to fuel ethanol to make from these low cost cellulosic sugars. It is found that the large market for ethanol makes it possible to achieve economies of scale that reduce sugar costs, and coproducing chemicals promises greater profit margins or lower production costs for a given return on investment. Additionally, power can be sold at low prices without a significant impact on the selling price of sugars. However, manufacture of multiple products introduces additional technical, marketing, risk, scale‐up, and other challenges that must be considered in refining of lignocellulosics.Keywords
This publication has 14 references indexed in Scilit:
- BIOMASSETHANOL: Technical Progress, Opportunities, and Commercial ChallengesAnnual Review of Energy and the Environment, 1999
- Biocommodity EngineeringBiotechnology Progress, 1999
- Process Design and Costing of Bioethanol Technology: A Tool for Determining the Status and Direction of Research and DevelopmentBiotechnology Progress, 1999
- Alternative fuels from biomass and their impact on carbon dioxide accumulationApplied Biochemistry and Biotechnology, 1994
- Methodology for evaluating the economics of biologically producing chemicals and materials from alternative feedstocksApplied Biochemistry and Biotechnology, 1994
- Technology for Electricity and Fuels from BiomassAnnual Review of Energy and the Environment, 1993
- Biotechnology for production of fuels, chemicals, and materials from biomassApplied Biochemistry and Biotechnology, 1993
- Preliminary estimate of the cost of ethanol production for ssf technologyApplied Biochemistry and Biotechnology, 1992
- Fuel Ethanol from Cellulosic BiomassScience, 1991
- The Business of BiomassBiotechnology Progress, 1985