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City or hinterland – site potentials for upscaled aquaponics in a Berlin case study

npj Urban Sustainability 2022 8 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 35 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Gösta F. M. Baganz, Gösta F. M. Baganz, Werner Kloas, Axel Timpe, Werner Kloas, Werner Kloas, Werner Kloas, Daniela Baganz, Daniela Baganz, Werner Kloas, Georg Staaks, Werner Kloas, B. Hunger, B. Hunger, Werner Kloas, Frank Lohrberg, Frank Lohrberg Werner Kloas, Frank Lohrberg, Frank Lohrberg

Summary

Researchers analyzed potential locations around Berlin to scale up aquaponics — a combined fish and vegetable farming system — to boost local food self-sufficiency. Their model suggests that about 20% of production could be housed inside the city, with the remaining 80% in surrounding areas, emphasizing the value of circular resource use.

Abstract Sustainably feeding the rapidly growing urban populations requires resource-efficient food production solutions, such as aquaponics. To assess its upscaled fruition in city regions, we applied system analysis to depict determinants of aquaponics at a mesoscale. Using Berlin as a case study, site potentials regarding the production of freshwater fish, tomatoes, and lettuce to achieve self-sufficiency were investigated. We analysed planning documents by text mining and applied geographic information system procedures to evaluate this technology’s spatial efficacy in intra- and peri-urban spaces, considering aspects of economy, sustainability and spatial distribution. In a facility-based approach, we contrasted specific intra- and peri-urban site potentials with their different boundary conditions. A thereupon-based scenario allocates approximately 20% of the production volume in Berlin, 80% in its hinterland, and emphasises the crucial use of circular economy resources in both spaces. Policy recommendations and the transferability of this realistic approach will support the implementation of aquaponics.

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