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Supernatant organics from anaerobic digestion after thermal hydrolysis cause direct and/or diffusional activity loss for nitritation and anammox

(2018) WATER RESEARCH. 143. p.270-281
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Biological nutrient removal, Partial nitrification/anammox, Water resources recovery facility, WASTE ACTIVATED-SLUDGE, MAINSTREAM DEAMMONIFICATION, MUNICIPAL SLUDGE, NITROGEN REMOVAL, NITRIFICATION, INHIBITION, SUBSTRATE, CARBON, WATER, SOIL

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Citation

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

Chicago
Zhang, Qi, Siegfried Vlaeminck, Christine DeBarbadillo, Chunyang Su, Ahmed Al-Omari, Bernhard Wett, Thomas Pümpel, et al. 2018. “Supernatant Organics from Anaerobic Digestion After Thermal Hydrolysis Cause Direct And/or Diffusional Activity Loss for Nitritation and Anammox.” Water Research 143: 270–281.
APA
Zhang, Qi, Vlaeminck, S., DeBarbadillo, C., Su, C., Al-Omari, A., Wett, B., Pümpel, T., et al. (2018). Supernatant organics from anaerobic digestion after thermal hydrolysis cause direct and/or diffusional activity loss for nitritation and anammox. WATER RESEARCH, 143, 270–281.
Vancouver
1.
Zhang Q, Vlaeminck S, DeBarbadillo C, Su C, Al-Omari A, Wett B, et al. Supernatant organics from anaerobic digestion after thermal hydrolysis cause direct and/or diffusional activity loss for nitritation and anammox. WATER RESEARCH. 2018;143:270–81.
MLA
Zhang, Qi, Siegfried Vlaeminck, Christine DeBarbadillo, et al. “Supernatant Organics from Anaerobic Digestion After Thermal Hydrolysis Cause Direct And/or Diffusional Activity Loss for Nitritation and Anammox.” WATER RESEARCH 143 (2018): 270–281. Print.
@article{8579693,
  author       = {Zhang, Qi and Vlaeminck, Siegfried and DeBarbadillo, Christine and Su, Chunyang and Al-Omari, Ahmed and Wett, Bernhard and P{\"u}mpel, Thomas and Shaw, Andrew and Chandran, Kartik and Murthy, Sudhir and De Clippeleir, Hayd{\'e}e},
  issn         = {0043-1354},
  journal      = {WATER RESEARCH},
  language     = {eng},
  pages        = {270--281},
  title        = {Supernatant organics from anaerobic digestion after thermal hydrolysis cause direct and/or diffusional activity loss for nitritation and anammox},
  url          = {http://dx.doi.org/10.1016/j.watres.2018.06.037},
  volume       = {143},
  year         = {2018},
}

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