| Literature DB >> 22847186 |
Joseph Shekiro1, Erik M Kuhn, Michael J Selig, Nicholas J Nagle, Stephen R Decker, Richard T Elander.
Abstract
Enzymatic conversion of oligomeric xylose and insoluble xylan remaining after effective pretreatment offers significant potential to improve xylan-to-xylose yields while minimizing yields of degredation products and fermentation inhibitors. In this work, a commercial enzyme cocktail is demonstrated to convert up to 70 % of xylo-oligomers found in dilute acid-pretreated hydrolyzate liquor at varying levels of dilution when supplemented with accessory enzymes targeting common side chains. Commercial enzyme cocktails are also shown to convert roughly 80 % of insoluble xylan remaining after effective high-solids, dilute acid pretreatment.Entities:
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Year: 2012 PMID: 22847186 PMCID: PMC3458197 DOI: 10.1007/s12010-012-9786-5
Source DB: PubMed Journal: Appl Biochem Biotechnol ISSN: 0273-2289 Impact factor: 2.926
Compositional analysis of native milled corn stover and 2 % acid impregnated biomass
| Component | Initial corn stover (%) | Acid-impregnated biomass (%) |
|---|---|---|
| Glucan | 34.0 ± 0.8 | 39.3 ± 0.8 |
| Xylan | 22.0 ± 0.6 | 24.7 ± 0.6 |
| Galactan | 1.6 ± 0.1 | 1.5 ± 0.3 |
| Arabinan | 3.1 ± 0.1 | 3.0 ± 0.4 |
| Sucrose | 4.0 ± 0.4 | 0 |
| Lignin | 12.4 ± 0.1 | 18.0 ± 0.3 |
| Acetyl | 2.9 ± 0.1 | 2.8 ± 0.3 |
| Ash | 7.1 ± 1.0 | 3.9 ± 0.9 |
| Protein | 1.6 ± 0.2 | ND |
| Extractives | 8.3 ± 0.4 | 0 |
| Total | 96.87 ± 0.67 | 93.13 ± 0.84 |
Standard deviations are based on triplicate analysis
ND none detected
Fig. 1Overhead view of the 200 kg/day horizontal continuous pretreatment reactor
Fig. 2Elevation view of the multipurpose flash tank and batch reactor vessel. Paddles direct material towards reactor center, where discharge port is located. Reactor paddles are equipped with Teflon-lined sweepers to minimize accumulation of material on reactor walls
Compositional data from pooled 200 kg/day horizontal pretreatment reactor runs
| Solids Composition | Ash | Protein | Lignin | Glucan | Xylan | Galactan | Arabinan | Fructan | Acetate |
|---|---|---|---|---|---|---|---|---|---|
| Component (% | 5.9 | 0.0 | 27.7 | 61.4 | 4.1 | 0.7 | 1.1 | 0.0 | 1.1 |
| Raw liquor data | Cellobiose | Glucose | Xylose | Fructose | Arabinose | Galactose | Acetic acid | HMF | Furfural |
| Monomeric sugars (g/L) | 1.1 | 15.2 | 89.1 | 1.0 | 11.4 | 5.9 | 15.1 | 0.5 | 3.4 |
| Oligomeric sugars (g/L) | – | 2.3 | 9.3 | 1.7 | 0.3 | 0.5 | – | – | – |
| Total sugars (g/L) | – | 17.5 | 98.4 | 2.7 | 11.7 | 6.4 | – | – | – |
Analysis of total sugars derived from 4 % acid hydrolysis with sugar recovery standards and subsequent monomeric sugar analysis
HMF hydroxymethylfurfural
Yield of monomeric sugars achieved during the enzymatic hydrolysis of washed dilute acid-pretreated corn stover using Novozymes Cellic CTec2
| Slurry solids loading (%) | Cellulose to glucose yield (%) | Xylan to xylose enzymatic hydrolysis yield (%) |
|---|---|---|
| 15.0 | 96.0 | 85.9 |
| 20.0 | 94.5 | 81.4 |
| 25.0 | 88.5 | 82.8 |
Enzymatic conversion of xylo-oligomers to monomeric xylose using Multifect Xylanase at a loading of 20 mg protein per gram of xylo-oligomer
| Dilution factor | Initial xylose concentration (g/L) | Corresponding equivalent solids (%) | Conversion (%) |
|---|---|---|---|
| 1.3 | 68.46 | 23 | 2.3 |
| 10.0 | 8.90 | 3 | 44.3 |
| 50.0 | 1.78 | 1 | 43.1 |
Background xylose concentrations of over 8.90 g/L have inhibitory effects on enzyme activity
Fig. 3Supplementation of Multifect Xylanase with debranching enzymes targeting known side-chains significantly improve enzymatic conversion of process-generated xylo-oligomers. Little to no conversion was observed with endoxylanase and beta-xylosidase only
Fig. 4Dilution by 11.7X over a period of 24 h achieved nearly 70 % conversion of xylo-oligomers to monomeric xylose. Addition of additional enzymes at the final dilution stage found no significant conversion improvements over samples where enzymes were added only initially
Yield of monomeric sugars from xylo-oligomers contained in fermentation broth upon subsequent residual xylo-oligomer enzymatic hydrolysis using xylanase and accessory enzyme cocktails
| Initial slurry solids loading ( | Treatment | Pre-dilution xylose concentration (g/L) | Xylose yield from xylo-oligomers (%) |
|---|---|---|---|
| 15.0 | 1:2 dilution with enzyme mix | 4.2 | 9.6 |
| 1:20 dilution with enzyme mix | 4.9 | 29.9 | |
| 17.5 | 1:2 dilution with enzyme mix | 6.6 | 0.0 |
| 1:20 dilution with enzyme mix | 8.3 | 38.1 | |
| 20.0 | 1:2 dilution with enzyme mix | 18.3 | 0.0 |
| 1:20 dilution with enzyme mix | 22.2 | 59.1 |