Optimal farm management with soil, manure, compost, water, crop and forage testing to boost yields and sustainable profitability.
Accurate data on soil, crops, and feed, to enable better sourcing, traceability and sustainability decisions across the entire supply chain.
High-quality data on soil health, nutrients and crop performance to support smarter product development and targeted applications.
Detailed insights into soil quality and nutrient balance to help landscaping professionals and golf courses maintain healthy turf.
Reliable soil, crop and feed analyses with clear interpretation and practical advice to optimise yields, 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 to support finance, carbon and sustainability platforms.
Insights into soil and forage quality to support optimal pasture management, balanced nutrition and equine health.
Precise analyses and clear insights to optimise crop production, improve sustainability and strengthen cooperative advisory services.
Data-driven insights into soil, crop and nutrient conditions to support smarter, more precise and sustainable agricultural machinery.
Reliable soil, crop and nutrient data to support policy development, sustainable land use, infrastructure planning and research.
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The Conservation Index (0–100) indicates the effectiveness of silage preservation, reflecting its shelf life, palatability, and feed value. A score of 80+ means good conservation.
The success or failure of your silage determines its ultimate shelf life, palatability and feed value. It also has a significant impact on the likelihood of harmful fungi or bacteria in your silage.
During silage preservation, lactic acid bacterium is the most important player. This bacterium converts sugars into lactic acid, which lowers the pH. When the pH is low enough, an equilibrium is created and bacterial growth stops. An oxygen-free environment, i.e. an airtight silage, is a necessary condition for the growth of the lactic acid bacteria. If the conditions are not right, other undesirable bacteria, such as butyric acid bacteria, will have a chance to thrive. There is also a risk of overheating. Such undesirable processes often reduce the value of the feed.