| Literature DB >> 30154680 |
Shuo Wang1,2,3, Jianzheng Li4, Guochen Zheng5, Guocheng Du6, Ji Li1,2.
Abstract
Hydrogen-producing acetogens (HPA) have a transitional role in anaerobic wastewater treatment. Thus, bioaugmentation with HPA cultures can enhance the chemical oxygen demand (COD) removal efficiency and CH4 yield of anaerobic wastewater treatment. Cultures with high degradation capacities for propionic acid and butyric acid were obtained through continuous subculture in enrichment medium and were designated as Z08 and Z12. Bioaugmentation with Z08 and Z12 increased CH4 production by glucose removal to 1.58. Bioaugmentation with Z08 and Z12 increased the COD removal rate in molasses wastewater from 71.60% to 85.84%. The specific H2 and CH4 yields from COD removal increased by factors of 1.54 and 1.63, respectively. Results show that bioaugmentation with HPA-dominated cultures can improve CH4 production from COD removal. Furthermore, hydrogen-producing acetogenesis was identified as the rate-limiting step in anaerobic wastewater treatment.Entities:
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Year: 2018 PMID: 30154680 PMCID: PMC6093043 DOI: 10.1155/2018/4634898
Source DB: PubMed Journal: Archaea Impact factor: 3.273
Figure 1Performance of Z08 through propionic acid degradation (a) and methane production (b).
Figure 2Performance of Z12 through butyric acid degradation (a) and methane production (b).
Biogas yields and methane production performance of FH1 to FH4.
| FH1 | FH2 | FH3 | FH4 | |
|---|---|---|---|---|
| Glucose conversion (%) | 96 | 99 | 99 | 99 |
| Biogas yield (mL) | 140 | 198.9 | 205.7 | 259.9 |
| Maximum specific methane production rate (mmol/gMLVSS·d) | 0.89 | 1.27 | 1.56 | 2.26 |
| Rate of methane production from glucose (mol/mol) | 1.32 | 1.60 | 1.79 | 2.32 |
| Enhanced ratio of methane production (%) | — | 125 | 224 | 262 |
Figure 3Biogas yields and component variation of QJ1 (a), QJ2 (b), QJ3 (c), and QJ4 (d).
Figure 4Specific hydrogen and methane production ratio by COD removal.
Figure 5Terminal soluble products through normal molasses conversion of QJ1 (a), QJ2 (b), QJ3 (c), and QJ4 (d).
Correlation of specific dehydrogenase activity and COD removal.
| Related parameters | Measurement time of parameters | |||||
|---|---|---|---|---|---|---|
| 48 h | 96 h | 270 h | 360 h | 500 h | ||
| QJ1 | Specific dehydrogenase activity ( | 12.12 | 6.27 | 3.52 | 3.77 | 5.61 |
| COD removal (%) | 40.90 | 7.87 | 7.08 | 5.51 | 10.24 | |
| Correlation coefficients | 0.9609 | |||||
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| QJ2 | Specific dehydrogenase activity ( | 16.16 | 7.36 | 5.13 | 4.86 | 5.73 |
| COD removal (%) | 45.70 | 13.39 | 3.94 | 5.51 | 11.81 | |
| Correlation coefficients | 0.9924 | |||||
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| QJ3 | Specific dehydrogenase activity ( | 15.15 | 7.79 | 5.13 | 4.55 | 6.45 |
| COD removal (%) | 39.40 | 19.69 | 4.72 | 5.51 | 14.17 | |
| Correlation coefficients | 0.9841 | |||||
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| QJ4 | Specific dehydrogenase activity ( | 22.22 | 9.52 | 6.16 | 5.83 | 7.00 |
| COD removal (%) | 38.60 | 17.32 | 13.39 | 5.51 | 11.02 | |
| Correlation coefficients | 0.9776 | |||||