Optimal farm management with soil, manure, compost, water, crop and forage testing to boost yields and sustainable profitability.
Accurate soil, crop, and feed data to enable better sourcing, traceability, and sustainable decisions across the supply chain.
High-quality data on soil health, nutrients, and crop performance to enable smarter product development, targeted use, and innovation.
Detailed insights into soil quality and nutrient balance to help professionals maintain healthy turf and manage green spaces sustainably.
For reliable soil, crop, and feed analyses, clear data insights, and practical advice to improve yield, sustainability, and profitability.
Supporting of seed producers with science-driven solutions that enhance breeding, production, and quality assurance.
Verified data on soil health, crop performance, and nutrient flows supporting finance, carbon, and sustainability platforms.
Insights into soil and forage quality to help horse keepers manage pastures, balance nutrition, and support horse health.
Support with precise analyses and clear insights to optimise crop production, improve sustainability, and strengthen advisory services.
Data-driven insights into soil, crop, and nutrient conditions to develop smarter, precise machinery for better efficiency and performance.
Reliable data on soil, crops, and nutrients supporting policy, sustainable land use, infrastructure planning, and research.
View in a different locale / language
The energy value indicates the energy a horse can derive from a product.
Digestibility as a Basis
The energy value of horse feed is calculated based on the digestibility of the organic matter in the product. However, different countries use various parameters to express this energy value.
Gross Energy (GE)
Gross energy represents the total amount of energy contained in the feed.
Digestible Energy (DE)
Not all feed is fully digested by the horse. Energy lost in the feces is subtracted from GE, leaving digestible energy (DE).
Metabolisable Energy (ME)
Besides fecal losses, energy is also lost through urine. When both fecal and urinary losses are subtracted, we get metabolisable energy (ME).
Net Energy (NE)
During digestion and fermentation, heat is produced, which is another form of energy loss. After subtracting fecal, urinary, and heat losses, the remaining value is net energy (NE).
Feed evaluation systems
The table below shows examples of feed evaluation systems and energy values used in Europe.
| Country | Energy system | Energy value |
| Netherlands | NE | EWpa |
| Belgium | NE | EWpa |
| England | DE | MJ |
| Germany | ME | MJ |
| France | NE | EWpa or UFC |
| Denmark | DE | MJ |
| Sweden | ME | MJ |