Abstract
Chemical and physical heterogeneity in biomass feedstocks such as agricultural or forestry residues is due to substantial differences in plant tissue types. These differences can contribute significant challenges to handling, preprocessing, and conversion in biorefining processes. An understanding of this chemical and physical heterogeneity can be used to inform fractionation technologies that could facilitate more streamlined processing and potentially be employed to yield multiple co-product streams for a single feedstock. In this chapter, the motivation and scope of biomass fractionation is first outlined. Physical and chemical properties of biomass feedstocks, along with their distribution and diversity within plants, are next discussed with respect to how these differences can be exploited in a fractionation process. A summary of some of the key physical principles that allow for fractionation is next covered along with how these physical principles are exploited in equipment designs. Examples from the literature are briefly discussed that highlight how these approaches can be employed to achieve processing objectives. Several case studies on physical fractionation of corn stover and forestry residues are presented that illustrate how integrated fractionation processes could be employed. Finally, prospects and potential economic drivers for adoption of biomass fractionation technologies are discussed.
| Original language | English |
|---|---|
| Title of host publication | Handbook of Biorefinery Research and Technology |
| Subtitle of host publication | Biomass Logistics to Saccharification |
| Publisher | Springer Netherlands |
| Pages | 231-260 |
| Number of pages | 30 |
| ISBN (Electronic) | 9789400763081 |
| ISBN (Print) | 9789400763074 |
| DOIs | |
| State | Published - Oct 23 2024 |
Keywords
- Biomass chemical properties
- Biomass physical properties
- Biomass quality
- Biomass variability
- Comminution
- Fractionation
INL Publication Number
- INL/MIS-23-75866
- 166156
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