| Literature DB >> 24695485 |
Zilin Song1, Xiaofeng Liu1, Zhiying Yan2, Yuexiang Yuan1, Yinzhang Liao1.
Abstract
Agriculture straw is considered a renewable resource that has the potential to contribute greatly to bioenergy supplies. Chemical pretreatment prior to anaerobic digestion can increase the anaerobic digestibility of agricultureEntities:
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Year: 2014 PMID: 24695485 PMCID: PMC3973592 DOI: 10.1371/journal.pone.0093801
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Effect of acid pretreatment on the chemical composition of corn straw.
| Pretreatment | Concentration | Cellulose % | Hemicellulose % | Lignin % | TC % | C/N |
| H2SO4 | 1% | 47.1±2.5 a | 26.9±1.2 a | 7.5±0.5 a | 37.3±2.0 b | 45.5±2.0 b |
| 2% | 41.3±1.8 b | 22.5±1.8 b | 7.3±0.4 a | 30.6±1.9 c | 38.7±1.6 c | |
| 3% | 38.0±1.6 bc | 16.2±1.2 c | 7.3±0.4 a | 30.3±2.1 c | 37.9±1.1 c | |
| 4% | 36.1±1.6 c | 13.0±0.9 d | 6.7±0.5 a | 25.3±1.5 d | 30.9±3.2 d | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a | |
| HCl | 1% | 46.7±2.2 a | 26.2±1.9 a | 7.9±0.5 a | 37.1±2.0 b | 44.2±1.8 b |
| 2% | 40.4±2.0 b | 22.2±2.0 b | 7.2±0.7 a | 32.4±2.0 c | 39.5±0.9 c | |
| 3% | 38.2±1.6 b | 17.3±1.0 c | 6.4±0.6 a | 29.2±1.9 c | 38.4±2.1 c | |
| 4% | 35.4±0.8 c | 14.5±1.3 d | 6.9±1.0 a | 26.1±1.2 d | 32.6±0.7 d | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a | |
| CH3COOH | 1% | 43.8±1.9 b | 26.8±2.6 a | 7.1±0.9 a | 38.6±2.9 a | 47.7±1.6 ab |
| 2% | 37.4±2.4 c | 21.7±1.1 b | 6.7±0.5 a | 34.8±0.9 b | 46.4±1.9 b | |
| 3% | 34.2±0.9 d | 18.1±1.4 c | 6.8±0.5 a | 29.5±0.9 c | 36.9±2.6 c | |
| 4% | 30.4±1.5 e | 15.1±0.5 d | 6.7±0.7 a | 26.4±1.6 d | 32.2±0.7 d | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a | |
| H2O2 | 1% | 40.5±1.5 b | 25.0±1.4 b | 7.0±0.2 a | 34.4±2.6 b | 44.7±2.3 b |
| 2% | 34.6±2.1 c | 20.8±2.3 c | 6.5±0.3 b | 28.7±0.8 c | 37.3±1.1 c | |
| 3% | 30.8±0.8 d | 14.3±1.2 d | 5.7±0.4 c | 25.1±1.2 d | 30.6±2.4 d | |
| 4% | 22.5±0.6 e | 9.5±0.7 e | 5.1±0.2 d | 20.4±1.3 e | 25.2±2.1 e | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a |
Data are expressed as mean ± deviation of triplicate measurements. TC: Total carbon.
The ANOVA test was conducted to determine the differences between each pretreatment. Values with the same letters in each pretreatment indicate no significant difference at P<0.05.
Effect of alkaline pretreatment on the chemical composition of corn straw.
| Pretreatment | Concentration | Cellulose % | Hemicellulose % | Lignin % | TC % | C/N |
| NaOH | 4% | 48.0±3.9 a | 23.8±1.4 b | 6.7±0.5 a | 39.3±0.8 a | 49.1±1.0 a |
| 6% | 46.1±3.0 a | 20.6±0.9 c | 5.5±0.5 b | 35.4±2.3 b | 46.0±0.8 b | |
| 8% | 46.7±2.2 a | 16.2±0.9 d | 4.6±0.3 c | 33.7±1.6 b | 42.1±2.1 c | |
| 10% | 47.4±2.6 a | 11.3±1.2 e | 4.0±0.2 d | 28.1±1.2 c | 34.7±1.3 d | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a | |
| Ca(OH)2 | 4% | 47.5±1.8 a | 24.6±2.2 b | 6.8±0.2 a | 37.8±1.5 a | 45.0±1.8 b |
| 6% | 46.1±2.4 a | 21.2±1.4 c | 6.0±0.3 b | 32.8±3.1 b | 40.0±2.0 c | |
| 8% | 46.3±1.9 a | 16.4±1.1 d | 5.4±0.2 c | 29.4±2.0 b | 38.7±0.7 c | |
| 10% | 48.0±1.1 a | 12.3±1.2 e | 4.6±0.3 d | 22.6±1.8 c | 28.3±1.9 d | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a | |
| NH3•H2O | 4% | 48.1±1.2 a | 25.7±1.9 a | 7.0±0.6 ab | 39.2±1.9 a | 48.4±2.1 a |
| 6% | 45.4±3.3 a | 22.4±0.8 b | 6.6±0.3 b | 36.6±2.5 b | 48.8±0.4 a | |
| 8% | 45.9±3.0 a | 18.6±1.8 c | 6.2±0.2 c | 33.2±0.9 b | 41.5±1.8 b | |
| 10% | 45.1±2.9 a | 17.8±1.1 c | 5.5±0.2 d | 30.7±1.6 c | 37.4±1.8 b | |
| Untreated | 49.3±1.8 a | 28.8±1.4 a | 7.5±0.4 a | 42.3±2.8 a | 51.4±3.6 a |
Data are expressed as mean ± deviation of triplicate measurements. TC: Total carbon.
The ANOVA test was conducted to determine the differences between each pretreatment. Values with the same letters in each pretreatment indicate no significant difference at P<0.05.
Figure 1Effect of pretreatments on the methane yield of corn straw.
(a) Acid pretreatment; (b) Alkaline pretreatment. Data was expressed at mean ± deviation of triplicate measurements. The ANOVA test was conducted to determine the differences between each pretreatment. Values with the same letters in each pretreatment indicate no significant difference at P<0.05.
Figure 2Effect of pretreatments on the VS consumption of corn straw.
(a) Acid pretreatment; (b) Alkaline pretreatment. Data was expressed at mean ± deviation of triplicate measurements. The ANOVA test was conducted to determine the differences between each pretreatment. Values with the same letters in each pretreatment indicate no significant difference at P<0.05.
Figure 3Change in the pH of pretreated corn straw during digestion.
(a) Acid pretreatment; (b) Alkaline pretreatment. Data was expressed at mean ± deviation of triplicate measurements.
Figure 4Change in the VFA of pretreated corn straw during digestion.
(a) Acid pretreatment; (b) Alkaline pretreatment. Data was expressed at mean ± deviation of triplicate measurements.
Economic performance of the different pretreatments.
| Chemicals | Concentration | Price | Cost b(CNY) | Methane yield (mL CH4 gVS−1) | |
| Acid | H2SO4 | 2% | 21 | 2.57 | 175.6 |
| HCl | 2% | 15 | 4.92 | 163.4 | |
| CH3COOH | 4% | 12.5 | 9.34 | 145.1 | |
| H2O2 | 3% | 6 | 3.6 | 216.7 | |
| Alkaline | NaOH | 8% | 9 | 4.2 | 163.5 |
| Ca(OH)2 | 8% | 9.5 | 4.58 | 206.6 | |
| NH3•H2O | 10% | 9 | 19.28 | 168.3 |
The price was collected from the Sinophram Chemical Reagent Co. Ltd, Beijing China, and the unit of H2SO4, HCl, CH3COOH, H2O2, and NH3.H2O price was per 500 mL, NaOH and Ca(OH)2 was per 500 g. CNY is the abbreviation for Chinese Yuan, and a dollar is equivalent to 6.12 CNY on Oct 1, 2012; Bank of China. b The cost was calculated based on the pretreatment of 1 kg corn straw.