Fish Effluent as a Source of Water and Nutrients for Sustainable Urban Agriculture

Author:

Cerozi Brunno S.ORCID,Arlotta Caitlin G.,Richardson Matthew L.ORCID

Abstract

Integrating urban agriculture with aquaculture can reduce the use and cost of water, competition for water, chemical fertilizers, and environmental impact of discharging nutrient-rich agricultural water into fresh and saltwater bodies. In addition, aquaculture in cities can directly benefit human health by providing a local source of lean protein. Despite the potential advantages, few studies have demonstrated the feasibility and production advantages of using aquaculture wastewater to fertigate specialty crops in an urban environment. Therefore, we grew four spring crops (bok choy, tatsoi, radish, turnip) and two fall crops (pole beans, sugar snap peas) in nutrient-rich effluent from fish aquaculture versus well or municipal water to evaluate whether the effluent improved soil fertility and crop production. The fish effluent resulted in changes to the soil through an increase in pH and potassium and to crop production through a 9.1% increase in the number of pole beans (mass of beans also trended toward significance). The soils we used were relatively nutrient-rich prior to the application of the fish effluent, which may be responsible for the limited impact, and differences may be more apparent in acidic and nutrient-poor soils or when fertigation is used over a longer duration.

Funder

a USDA-AMS Specialty Crop Block Grant

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference26 articles.

1. Vertical farming: Skyscraper sustainability?;Sustain. Cities Soc.,2015

2. Being efficient and green by rethinking the urban-rural divide—Combining urban expansion and food production by integrating an ecosystem service perspective into urban planning;Sustain. Cities Soc.,2018

3. Climate change and food systems;Annu. Rev. Environ. Resour.,2012

4. The impact of greenhouse gas emissions in the EU food chain: A quantitative and economic assessment using an environmentally extended input-output approach;J. Clean. Prod.,2017

5. United Nations Department of Economic and Social Affairs, Population Division (2019). World Urbanization Prospects: The 2018 Revision, United Nations. ST/ESA/SER.A/420.

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