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123. Zhang, L., Shen, Z., Fang, W., Gao, G.: Composition of bacterial communities in municipal
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61, 533–616 (1997)
L. Schorr et al.
114. Ward, M.H., deKok, T.M., Levallois, P., Brender, J., Gulis, N.B.T., VanDerslice, J.: Workgroup
report: drinking-water nitrate and health—recent findings and research needs. Environ. Health
Perspect. 113, 1607–1614 (2005). https://doi.org/10.1289/ehp.8043
115. Ward, M., Jones, R., Brender, J., Kok, T., Weyer, P., Nolan, B., Villanueva, C.M., van Breda,
S.G.: Drinking water nitrate and human health: an updated review. IJERPH 15, 1557 (2018).
https://doi.org/10.3390/ijerph15071557
116. Warneke, S., Schipper, L.A., Bruesewitz, D.A., Baisden, W.T.: A comparison of different
approaches for measuring denitrification rates in a nitrate removing bioreactor. Water Res.
45, 4141–4151 (2011). https://doi.org/10.1016/j.watres.2011.05.027
117. Warneke, S., Schipper, L.A., Matiasek, M.G., Scow, K.M., Cameron, S., Bruesewitz, D.A.,
McDonald, I.R.: Nitrate removal, communities of denitrifiers and adverse effects in different
carbon substrates for use in denitrification beds. Water Res. 45, 5463–5475 (2011). https://
doi.org/10.1016/j.watres.2011.08.007
118. Wentzel, M.C., Ekama, G.A., Marais, G.V.R.: Processes and modelling of nitrification denitrification biological excess phosphorus removal systems—a review. Water Sci. Technol. 25,
59–82 (1992). https://doi.org/10.2166/wst.1992.0114
119. Wu, Y., Lu, L., Wang, B., Lin, N., Zhu, J., Cai, Z., Yan, X., Jia, Z.: Long-term field fertilization
significantly alters community structure of ammonia-oxidizing bacteria rather than archaea
in a paddy soil. SSSAJ 75, 1431–1439 (2011). https://doi.org/10.2136/sssaj2010.0434
120. Yang, J., Kim, B., Kim, G.., Jung, G.Y., Seo, S.W.: Synthetic biology for evolutionary engineering: from perturbation of genotype to acquisition of desired phenotype. Biotech. Biofuels
12, S. 113 (2019). https://doi.org/10.1186/s13068-019-1460-5
121. Yao, S., Ni, J., Ma, T., Li, C.: Heterotrophic nitrification and aerobic denitrification at low
temperature by a newly isolated bacterium, Acinetobacter sp. HA2. Bioresour. Technol. 139,
80–86 (2013). https://doi.org/10.1016/j.biortech.2013.03.189
122. Zhang, Y., Angelidaki, I.: Bioelectrode-based approach for enhancing nitrate and nitrite
removal and electricity generation from eutrophic lakes. Water Res. 46, 6445–6453 (2012).
https://doi.org/10.1016/j.watres.2012.09.022
123. Zhang, L., Shen, Z., Fang, W., Gao, G.: Composition of bacterial communities in municipal
wastewater treatment plant. Sci. Total Environ. 689, 1181–1191 (2019). https://doi.org/10.
1016/j.scitotenv.2019.06.432
124. Zhao, J., Wu, J., Li, X., Wang, S., Hu, B., Ding, X.: The denitrification characteristics
and microbial community in the cathode of an MFC with aerobic denitrification at high
temperatures. Front. Microbiol. 8, 9 (2017). https://doi.org/10.3389/fmicb.2017.00009
125. Zhao, H., Zeng, An-Ping (Hg.): Synthetic Biology - Metabolic Engineering. 1st
edition 2018. Cham: Springer International Publishing (Advances in Biochemical Engineering/Biotechnology) (2018).
126. Zumft, W.G.: Cell biology and molecular basis of denitrification. Microbiol. Mol. Biol. Rev.
61, 533–616 (1997)
