The smarter way to build AI infrastructure.
Strategically positioned in energy-rich regions.

An Ohio project scales without breaking the grid.
100 MW grid connection plus 800 MW of behind-the-meter generation, phased to match tenant demand. Natural-gas turbines paired with future renewable integration deliver firm, dispatchable power without waiting on grid upgrades.
Power Infrastructure
100 MW grid connection plus 400 MW of behind-the-meter generation, phased to match tenant demand. Natural-gas turbines paired with future renewable integration deliver firm, dispatchable power without waiting on grid upgrades.
Heat Recovery
Waste heat from power generation and data-center cooling is captured and routed directly into adjacent greenhouses, turning a thermal liability into a productive agricultural input year-round.
Food Production
On-campus greenhouses use recovered heat and food-grade CO₂ to grow fresh produce even in cold months. The result: local food for schools, hospitals, and grocers—plus year-round jobs for growers and technicians.
Water Systems
Rain-ready roofs and cooling-condensation capture store water on site for reuse. Collected water first supports equipment cooling, then irrigates greenhouse crops—shrinking municipal withdrawals and boosting resilience.
Development Pipeline

A Blueprint for Gigawatt-Scale AI Infrastructure
Ohio's Appalachian energy corridor
Site Overview
Positioned in Ohio’s Appalachian energy corridor—home to major natural gas infrastructure and high-capacity transmission lines that enable fast, cost-effective interconnection at gigawatt scale.
Power Capacity
2–3 GW of firm power generation across thousands of acres, designed for phased build-out. Behind-the-meter architecture keeps energy costs predictable for large compute tenants.
Horizon
In early-stage exploration. A project at this scale represents a long-range opportunity requiring phased planning, permitting, and infrastructure coordination—a vision of what Ohio’s energy resources make possible.

Project Everberry
ARC Funded; Circular model, natural gas, cogeneration, integration to local food hubs, education, agritourism.
R&D Focus
A dedicated research and development facility for controlled-environment agriculture. Testing advanced growing protocols, nutrient delivery systems, and energy-integration strategies.
Growing Systems
High-tech greenhouse bays equipped with precision climate control, CO₂ enrichment, and hydroponic systems. Optimized to validate crop yields under real-world waste-heat conditions.
Innovation
Serves as EnergiAcres’ proving ground for new technology before campus-scale deployment. Lessons learned here directly inform greenhouse design at our North Central Ohio campus and future sites.