
Infrastructure & Facilities
FUTUREWISE harnesses the collective power of Israel’s top research institutions to develop, test, and scale next-generation waste-to-fuel technologies. Our consortium operates a network of advanced laboratories, pilot-scale reactors, sensor platforms, and analysis tools that enable deep technical innovation and real-world validation.
Waste to energy Conversion Systems
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Hydrothermal Liquefaction & Carbonization Units (0.4 L/h)
Continuous-flow reactors for processing real organic waste streams using solar or residual heat sources. -
Anaerobic Digestion and Biogas Reforming Facilities
Platforms for hydrogen production via ZnO/Zn redox cycle and syngas optimization. -
Combustion Simulation Systems
Engine testing units to assess biofuel performance, emissions, and material compatibility under standard operating conditions.
Chemical & Physical Analysis Labs
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Fuel Upgrading and Catalyst Evaluation Labs
Facilities for biocrude hydrogenation, distillation, catalytic testing, and compositional analysis. -
Biochar and Ash Testing Units
For calorimetry, TGA-FTIR, elemental analysis, and application testing in soils, cement, and filtration systems. -
Photocatalysis and Water Treatment Facilities
Equipped for hydrogen generation, nutrient recovery, and membrane-based metal removal.
Sustainability, Economic & Health Assessment Tools
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Life Cycle Assessment (LCA) Platforms
OpenLCA software and custom databases to evaluate environmental impacts across the full value chain. -
Techno-Economic & Spatial Modeling
AI-optimized tools for supply chain design, cost analysis, and national waste treatment planning. -
Health Risk Evaluation
Clinical collaboration with Meir Medical Center to assess exposure, emissions, and societal impact.
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Multistage catalytic upgrading of biocrude using NiMo, HZSM-5, and Pt-based catalysts
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Hydrogen production from biogas and wastewater via: Photocatalytic water splitting
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Distillation and blending to meet jet, diesel, and marine fuel specs
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Fuel testing in real environment
