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Drying or anaerobic digestion of fish sludge: Nitrogen fertilisation effects and logistics.


ABSTRACT: Application of fish sludge as fertiliser to agricultural land can contribute to closing nutrient cycles in fish farming. The effect of different treatment technologies on the nitrogen fertilisation effects of fish sludge was studied by a bioassay with barley (Hordeum vulgare), an incubation and a field experiment. Dried fish sludge resulted in relative agronomic efficiency of 50-80% compared with mineral fertiliser. The anaerobic digestate based on fish sludge (20 vol%) and dairy manure did not increase nitrogen uptake in barley. Increasing the ratio of fish sludge in the digestate increased the fertilisation effect, but requires optimisation of the biogas process. A simple logistics analysis conducted for a case hatchery showed that on-site drying and co-digestion of fish sludge in a central biogas plant can be regarded as equal in terms of costs. Norway can become an exporter of fish sludge-based recycling fertilisers if current regulations are modified to facilitate nutrient recycling.

SUBMITTER: Brod E 

PROVIDER: S-EPMC5639799 | biostudies-other | 2017 Dec

REPOSITORIES: biostudies-other

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Drying or anaerobic digestion of fish sludge: Nitrogen fertilisation effects and logistics.

Brod Eva E   Oppen Johan J   Kristoffersen Annbjørg Øverli AØ   Haraldsen Trond Knapp TK   Krogstad Tore T  

Ambio 20170607 8


Application of fish sludge as fertiliser to agricultural land can contribute to closing nutrient cycles in fish farming. The effect of different treatment technologies on the nitrogen fertilisation effects of fish sludge was studied by a bioassay with barley (Hordeum vulgare), an incubation and a field experiment. Dried fish sludge resulted in relative agronomic efficiency of 50-80% compared with mineral fertiliser. The anaerobic digestate based on fish sludge (20 vol%) and dairy manure did not  ...[more]

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