Completed Food & Agriculture Plants, Animals & Ecology

TRIP-Transformative Reduced input Potatoes

In plain English

AI plain-English summary

Potato farming strips soil of organic matter and pumps out greenhouse gases—TRIP aims to replace that system with a regenerative method that cuts chemical inputs and energy use. The problem is stark. Conventional potato production relies on intensive tillage, heavy doses of fertilisers and pesticides, and refrigerated storage to stop sprouting. This degrades soil, contaminates water, and emits CO₂ and N₂O. TRIP tackles all of these simultaneously. Over 36 months, the project will test reduced or no-tillage using farm waste as mulch, develop novel plant nutrition approaches, and deploy potato cultivars bred for natural long dormancy—eliminating the need for energy-hungry cold storage. Integrated pest management will replace routine chemical spraying. If successful, the impact is twofold. First, farmers could lower input costs while building soil organic matter and sequestering carbon—directly contributing to Net Zero targets. Second, the system would reduce nitrogen fertiliser use, fuel for machinery, and cooling energy, which together dominate the potato carbon footprint. The project will produce data on productivity and emissions for each cultivation method, plus a breeding strategy, reported at demonstrations and conferences. This is applied research with a clear practical endpoint: a cost-competitive, low-carbon potato supply chain.

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Potato growing uses intensive soil cultivation and very large inputs of inorganic nutrients, herbicides, fungicides and insecticides. Large amounts of energy are also used in cooled store to prevent post-production sprouting prior to consumer use. This result in continuous degradation of farm soil organic matter, and large emissions of CO2 and N2O, two major greenhouse gases. TRIP-Transformative Reduced input in potatoes, is a 36 months research program, will develop a regenerative method to address all of the above problems, and provide cost-competitive solutions to potato farmers. TRIP- is based on reduced/no-tillage using farm waste as mulch, innovative plant nutrition approaches, and use of novel low-input potato cultivars having natural long dormancy, and integrated pest management approaches. It will increase soil organic matter, lower needs of chemical inputs (fertilizer, pesticides), reducing also the associated contamination of water, with positive effects on wildlife and bioversity. TRIP- will also contribute to Net Zero. It will demonstrate that using regenerative methods for potato growing will both reduce the GHG emissions and build soil organic matter and its sequestration of carbon. It will provide substantial saving in nitrogen fertilisers, fuel for machinery and for cooled storage used in potato production (major components of the potato production carbon footprint), which will also contribute to Net Zero. TRIP 3-year project outputs will include data on productivity and GHG emissions for combination of cultivation methods and a breeding strategy. Outputs will be reported at demonstration and conferences.

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Related Research

Grants with similar aims, by meaning.

Potato LITE – Low Intensity Tillage Enhancements for Sustaining Potato Production in Future Regenerative Agricultural Systems
TUBERSCAN-VENTURE: Delivering a commercially-viable, non-destructive, data driven pipeline to quantify root crops during growth to realise maximum marketable yield and help reduce waste, contributing to net zero emissions
16AGRITECHCAT5: Strategies to reduce waste due to greening in potato tubers
A holistic non-destructive data driven demonstrator to quantify potato crops during growth to realise maximum marketable yield and help reduce waste, contributing to net zero emissions - TUBERSCAN-DEMO
The effects of conventional tillage operations vs. innovative alternatives on soil health and crop yields in potato production

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