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Temperature regulates methane production through the function centralization of microbial community in anaerobic digestion

(2016) BIORESOURCE TECHNOLOGY. 216. p.150-158
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Keywords
Temperature, Anaerobic digestion, Functional diversity, Function centralization, Metatranscriptome, HYDROGENOTROPHIC METHANOGENESIS, PERFORMANCE, STABILITY, BACTERIAL, STATE

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Citation

Please use this url to cite or link to this publication:

MLA
Lin, Qiang et al. “Temperature Regulates Methane Production Through the Function Centralization of Microbial Community in Anaerobic Digestion.” BIORESOURCE TECHNOLOGY 216 (2016): 150–158. Print.
APA
Lin, Q., De Vrieze, J., He, G., Li, X., & Li, J. (2016). Temperature regulates methane production through the function centralization of microbial community in anaerobic digestion. BIORESOURCE TECHNOLOGY, 216, 150–158.
Chicago author-date
Lin, Qiang, Jo De Vrieze, Guihua He, Xiangzhen Li, and Jiabao Li. 2016. “Temperature Regulates Methane Production Through the Function Centralization of Microbial Community in Anaerobic Digestion.” Bioresource Technology 216: 150–158.
Chicago author-date (all authors)
Lin, Qiang, Jo De Vrieze, Guihua He, Xiangzhen Li, and Jiabao Li. 2016. “Temperature Regulates Methane Production Through the Function Centralization of Microbial Community in Anaerobic Digestion.” Bioresource Technology 216: 150–158.
Vancouver
1.
Lin Q, De Vrieze J, He G, Li X, Li J. Temperature regulates methane production through the function centralization of microbial community in anaerobic digestion. BIORESOURCE TECHNOLOGY. 2016;216:150–8.
IEEE
[1]
Q. Lin, J. De Vrieze, G. He, X. Li, and J. Li, “Temperature regulates methane production through the function centralization of microbial community in anaerobic digestion,” BIORESOURCE TECHNOLOGY, vol. 216, pp. 150–158, 2016.
@article{8057460,
  author       = {Lin, Qiang and De Vrieze, Jo and He, Guihua and Li, Xiangzhen and Li, Jiabao},
  issn         = {0960-8524},
  journal      = {BIORESOURCE TECHNOLOGY},
  keywords     = {Temperature,Anaerobic digestion,Functional diversity,Function centralization,Metatranscriptome,HYDROGENOTROPHIC METHANOGENESIS,PERFORMANCE,STABILITY,BACTERIAL,STATE},
  language     = {eng},
  pages        = {150--158},
  title        = {Temperature regulates methane production through the function centralization of microbial community in anaerobic digestion},
  url          = {http://dx.doi.org/10.1016/j.biortech.2016.05.046},
  volume       = {216},
  year         = {2016},
}

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