Agroecology Knowledge Hub

Recycling: more recycling means agricultural production with lower economic and environmental costs

Waste is a human concept – it does not exist in natural ecosystems. By imitating natural ecosystems, agroecological practices support biological processes that drive the recycling of nutrients, biomass and water within production systems, thereby increasing resource-use efficiency and minimizing waste and pollution.

Recycling can take place at both farm-scale and within landscapes, through diversification and building of synergies between different components and activities. For example, agroforestry systems that include deep rooting trees can capture nutrients lost beyond the roots of annual crops. Crop–livestock systems promote recycling of organic materials by using manure for composting or directly as fertilizer, and crop residues and by-products as livestock feed. Nutrient cycling accounts for 51 percent of the economic value of all non-provisioning ecosystem services, and integrating livestock plays a large role in this. Similarly, in rice–fish systems, aquatic animals help to fertilize the rice crop and reduce pests, reducing the need for external fertilizer or pesticide inputs.

Recycling delivers multiple benefits by closing cycles and reducing waste that translates into lower dependency on external resources, increasing the autonomy of producers and reducing their vulnerability to market and climate shocks. Recycling organic materials and by-products offers great potential for agroecological innovations.

Database

Diverse, severe, and location-specific impacts on agricultural production are anticipated with climate change. The last IPCC report indicates that the rise of CO2 and associated “greenhouse” gases could lead to a 1.4 to 5.8 °C increase in global surface temperatures, with subsequent consequences on precipitation frequency and amounts. Temperature and...
Journal article
2015
The mission of the Network of European Networks (NofN) is to connect, strengthen and support existing networks and organisations to improve collaboration and dialogue across sectors working for the transformation of food systems. It is meant to be bottom-up, people-led and transdisciplinary in orientation, and to embrace all agroecological principles. It may...
Event
2023
This chapter first discusses the potential of trees to modify the soil and its impact on soil biota. The exploration of the linkages between the biological activity of soil organisms in agroforestry systems and their impact on soil-based ecosystem services and soil health follows next. Then recent advances in soil...
Book
2012
Roland Bunch’s work with indigenous Mayan farmers in the highlands of Guatemala in the 1970s enabled the Campesino a Campesino (farmer-to-farmer) movement to sweep through Mexico, Central America and Cuba in the 1980s and 1990s. Cover crops were a central component of the movement’s success. In this personal letter, Roland...
Policy brief/paper
2016
The training courses cover the following topics: Agroecology and the planetary food, energy, economic and social crises Principles and concepts of agroecology: The scientific basis The ecological role of biodiversity in agroecosystems Biodiversity and insect pest management Soil ecology and management Ecological basis of disease and weed management Agroecological basis...
Manual
2015