Toward carbon neutrality and circular economy: an innovative combination of enhanced biogas production and nutrient recovery from sludge dewatering liquor at a municipal wastewater treatment plant in Germany
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Kleyboecker, Anne
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Kompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, GermanyKompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
Kleyboecker, Anne
[1
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Kraus, Fabian
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Kompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, GermanyKompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
Kraus, Fabian
[1
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Meyer, Stefanie
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Stadtentwasserung Braunschweig GmbH, Taubenstr 7, D-38106 Braunschweig, GermanyKompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
Meyer, Stefanie
[2
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Heinze, Janina
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Abwasserverband Braunschweig, Celler Str 22, D-38176 Wendeburg, GermanyKompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
Heinze, Janina
[3
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Gromadecki, Franziska
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Abwasserverband Braunschweig, Celler Str 22, D-38176 Wendeburg, GermanyKompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
Gromadecki, Franziska
[3
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Remy, Christian
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Kompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, GermanyKompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
Remy, Christian
[1
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[1] Kompetenzzentrum Wasser Berlin gGmbH, Grunewaldstr 61-62, D-10825 Berlin, Germany
An innovative circular economy (CE) system was implemented at the wastewater treatment plant (WWTP) in Brunswick. The performance of the CE system was evaluated for 4 years: the thermal pressure hydrolysis enhanced the methane production by 18% and increased the digestate dewaterability by 14%. Refractory COD formed in thermal hydrolysis and increased the COD concentration in the WWTP effluent by 4 mg L-1 while still complying with the legal threshold. Struvite production reached high phosphorus recovery rates of >80% with a Mg:P molar ratio >= 0.8. Nitrogen was successfully recovered as ammonium sulfate with high recovery rates of 85-97%. The chemical analyses of secondary fertilizers showed a low pollutant content, posing low risks to soil and groundwater ecosystems. The total carbon footprint of the WWTP decreased due to enhanced biogas production, the recovery of renewable fertilizers and a further reduction of nitrous oxide emissions. Using green energy will be crucial to reach carbon neutrality for the entire WWTP.