Exploration for Next-Generation Agriculture
Adhering to the vision of "Empowering Science, Enhancing Future", the Institute continuously invests in rhizosphere micro-ecology, bio-based materials, and precision nutrient management.

Five Frontier Exploration Directions
The following directions are currently in early lab exploration and will be updated as research progresses.
Rhizosphere Micro-Ecological Regulation
Building on 2.0 Microflora Activation Technology, we explore precision regulation of rhizosphere microbial communities to enhance nutrient conversion efficiency.
Microbial Metabolites & Microbial Formulations
Exploring the isolation and utilization of active substances produced by beneficial microbial metabolism (such as organic acids, peptides, and extracellular enzymes), as well as the feasibility of functional microbial preparations like nitrogen-fixing and phosphate-solubilizing bacteria as independent product lines, complementing Microflora Activation Technology.
Bio-Based Coating Materials
Exploring degradable bio-based materials to substitute traditional coatings, balancing release performance and eco-friendliness.
Precision Nutrient Management
Combining soil and crop growth data to explore precision fertilization logic matching nutrient demand rhythm.
Digital Field Testing
Exploring digital field data collection combined with China Center Laboratory testing to shorten verification cycles.
R&D Roadmap
The following roadmap is formulated with reference to the overall evolution direction of the global Nutrient Enhancement industry, illustrating the Institute's medium-to-long term R&D pace. Specific progress speed will be dynamically adjusted based on laboratory verification and field trial results.
Phase One
Pilot Verification of Bio-Based Coating Materials
The EU Fertilizer Products Regulation (EU 2019/1009) sets increasingly strict biodegradability requirements for traditional coating materials, which is a common challenge for the global controlled-release fertilizer industry. The Institute is advancing pilot-scale substitution testing of degradable bio-based materials for traditional coating materials, balancing controlled-release performance with environmental compliance.
Rhizosphere Microecology Field Scale Verification
Building on 2.0 Microbial Activation Technology, we expand the field verification scale of beneficial bacteria such as Bacillus velezensis and Bacillus licheniformis, accumulating adaptation data across diverse crop and soil types.
Phase Two
Precision Nutrient Management System Integration
Combining soil moisture and crop growth data accumulated from digital field testing, we explore precision fertilization logic that matches nutrient release rhythms on demand, responding to the global agricultural trend toward variable rate technology (VRT) and digital management.
Natural Bio-Derived Nitrification Inhibition Mechanism Study
Referring to global agricultural research on Biological Nitrification Inhibition (BNI) mechanisms—where certain plant root exudates naturally inhibit soil nitrifying bacterial activity—we explore natural nitrification-inhibiting active substances as a complementary pathway to synthetic nitrification inhibitors.
Microbial Metabolites & Microbial Products Commercialization
Responding to growth trends in the global biologicals market, we explore isolation and purification processes for beneficial microbial metabolites, as well as fermentation stability and field efficacy verification for functional microbial preparations like nitrogen-fixing and phosphate-solubilizing bacteria, building technical reserves for independent product lines.
Phase Three
Microflora, Microbial Formulations, Stabilized Nitrogen, Biostimulant Synergy
Integrating rhizosphere microflora activation, microbial formulations, nitrogen stabilization, and physiological activation pathways, we explore synergistic enhancement systems after compounding, driving upgrades from single enhancement substances to systematic solutions.
Novel Enhancement Carrier Technology Exploration
Exploring the application potential of novel carrier technologies such as nanoscale and porous materials in enhancement substance delivery efficiency and controlled-release precision, which is one of the frontier research directions in global Nutrient Enhancement.
The roadmap above serves as directional research planning and does not constitute specific product or timeline commitments. To learn about the latest progress in any specific direction, feel free to contact us.
Contact →Participate in Co-Creation: Explore Next-Generation Nutrient Enhancement Technology with Us

If your team has scientific research background in soil microecology, bio-based materials, or precision agriculture, we welcome you to discuss joint R&D or field verification partnerships with Synergie Research Institute, Germany (Synergie GmbH) to jointly promote next-generation Nutrient Enhancement technologies from laboratory to industrialization.
Contact →R&D strength at our German headquarters in Münster, backed by global service points and scientific demonstration bases across major agricultural climatic zones. Whether you are a fertilizer manufacturer, an agricultural distributor, or an agronomic research institution, we partner with you to turn nutrient enhancement science into sustainable market leadership.
Fertilizer Manufacturers
Formulate high-efficiency compound, urea, and specialty lines with U-FORCE, N-FORCE, and DUAL-FORCE active concentrates. Engineered for seamless line integration with zero capital equipment retrofitting.
- FormulationActive Concentrates
- IntegrationDirect Inline Dosing
- Capital OutlayZero Equipment Retrofit
Distributors & Ag Retailers
Build high-margin, differentiated brand portfolios backed by multi-season field trial data dossiers, regional territory exclusivity, and comprehensive agronomist training materials.
- PortfolioHigh-Margin Differentiated
- ValidationMulti-Season Trial Dossiers
- ProtectionRegional Exclusivity
Research & Agronomy Institutes
Co-develop international comparative field trial plots, academic trial data exchange, and next-generation low-carbon nutrient research across key global soil zones.
- NetworkGlobal Climatic Plots
- FocusCarbon Reduction & NUE
- CooperationJoint Academic Exchange