Nutrient Runoff Loss Model

Nutrient Runoff Loss Model MCP Connector for Claude

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Simulates nitrogen and phosphorus loss from agricultural fields due to runoff.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools to model nutrient transport from agricultural fields into water bodies. It distinguishes between dissolved and particulate phases for both Nitrogen and Phosphorus, accounting for soil nutrient levels, application rates, and weather conditions. Users can use calculate_nutrient_loss to determine specific mass losses, predict_edge_of_field_loading to estimate total field impact, and compare_management_strategies to evaluate different fertilizer application scenarios. The model also includes get_incorporation_risk_factor to assess how delays in soil incorporation increase nutrient vulnerability to rainfall.

nutrient-lossnitrogenphosphorusrunoff-modelingagronomy

4 tools expose this connector's capabilities to your AI agent.

calculate_nutrient_loss

Calculates the mass of specific nutrient losses based on current field conditions and weather

get_incorporation_risk_factor

Determines the multiplier applied to nutrient loss based on how long nutrients sit on the soil surface

compare_management_strategies

Compares two different application or timing scenarios to determine which results in lower nutrient loss

predict_edge_of_field_loading

Predicts the total nutrient mass reaching the field boundary for a specific scenario

See how to talk to your AI agent using Nutrient Runoff Loss Model.

Calculate the nutrient loss for a field with 50 units of soil nitrogen, 20 units of soil phosphorus, an application rate of 30 N and 10 P, a 2-day incorporation delay, 15 mm/hr rainfall, and a 3% slope.

The calculated losses are: Dissolved N: 12.4, Particulate N: 5.2, Dissolved P: 3.1, Particulate P: 1.8. Total N loss is 17.6 and total P loss is 4.9.

What is the risk factor for a 5-day delay in soil incorporation?

The risk factor for a 5-day delay is 1.45.

Predict the edge-of-field loading for a scenario with 40 soil N, 15 soil P, 25 N application, 5 P application, 0 delay, 10 mm/hr rainfall, and 2% slope.

The predicted edge-of-field loading is 8.5 units of Nitrogen and 2.2 units of Phosphorus.

A longer delay between fertilizer application and soil incorporation increases the risk of nutrient loss. You can use `get_incorporation_risk_factor` to calculate this specific multiplier.

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