Operating a pilot-scale nitrification/distillation plant for complete nutrient recovery from urine

Author:

Fumasoli Alexandra1,Etter Bastian1,Sterkele Bettina1,Morgenroth Eberhard12,Udert Kai M.1

Affiliation:

1. Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Dübendorf, Switzerland

2. ETH Zürich, Institute of Environmental Engineering, 8093 Zürich, Switzerland

Abstract

Source-separated urine contains most of the excreted nutrients, which can be recovered by using nitrification to stabilize the urine before concentrating the nutrient solution with distillation. The aim of this study was to test this process combination at pilot scale. The nitrification process was efficient in a moving bed biofilm reactor with maximal rates of 930 mg N L−1 d−1. Rates decreased to 120 mg N L−1 d−1 after switching to more concentrated urine. At high nitrification rates (640 mg N L−1 d−1) and low total ammonia concentrations (1,790 mg NH4-N L−1 in influent) distillation caused the main primary energy demand of 71 W cap−1 (nitrification: 13 W cap−1) assuming a nitrogen production of 8.8 g N cap−1 d−1. Possible process failures include the accumulation of the nitrification intermediate nitrite and the selection of acid-tolerant ammonia-oxidizing bacteria. Especially during reactor start-up, the process must therefore be carefully supervised. The concentrate produced by the nitrification/distillation process is low in heavy metals, but high in nutrients, suggesting a good suitability as an integral fertilizer.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference27 articles.

1. Inhibition of nitrification by ammonia and nitrous acid;Anthonisen;Journal of the Water Pollution Control Federation,1976

2. Plant uptake of phosphorus and nitrogen recycled from synthetic source-separated urine;Bonvin;AMBIO,2015

3. Modeling the low pH limit of Nitrosomonas eutropha in high-strength nitrogen wastewaters;Fumasoli;Water Research,2015

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