
Founded 2017
Industry
Electricity
Megan O'Connor
CEO
Articles
- Nth Cycle wants to revolutionize metals processing for recyclers and mine operators
- Nth Cycle Closes $44 Million in Series B and Non-Dilutive Financing to Scale Clean Critical Metal Refining Technology
- Electro-Extraction and the Future of E-Waste with Megan O'Connor, CEO and Co-founder of Nth Cycle - Battery + Storage Podcast
- Nth Cycle Begins Commercial Operations of its Electro-Extraction Critical Mineral Collector
- Study: Nth Cycle's Critical Mineral Refining and Recycling Technology Verifies 92% Reduction in Refining Emissions
- This US company says it can process mineral components for EV makers ‘in months’
- Here’s why this small battery recycling tech firm just got a $2M DOE grant
- Nth Cycle Introduces Premium Domestic MHP Product
- ‘Under the radar’ clean tech that could strike gold
- BloombergNEF Announces 12 Climate Innovators as the Winners of the 2023 BNEF Pioneers Award
- Nth Cycle raising $50M for battery metals refining
- Nth Cycle raises first capital on way to $50M round
- Nth Cycle Closes $44 Million in Series B and Non-Dilutive Financing to Scale Clean Critical Metal Refining Technology
- Healey set to take big swing to build the clean tech economy in Massachusetts
- The climate case for a career in mining
- EV charging technology and circular battery life jumpstart the EV revolution
- Nth Cycle Receives $7.2M 48C Tax Credit Allocation from U.S. Department of Energy for Groundbreaking Critical Metal Refining Facility in Fairfield, OH
- Applied AI and Cutting-edge Technology Start-ups Dominate this Year’s 100 New Members of the World Economic Forum’s Technology Pioneers Community
- Environment solution: New metals refinery for nickel and cobalt opens in Ohio
About the company
Nth Cycle is a metal processing technology company. It works with battery recyclers and miners to recover production-grade critical minerals from separated e-waste, low-grade ore, and mine tailings. The company’s electro-extraction technology—an alternative to hydrometallurgy and pyrometallurgy—enables customizable, clean and consistent recovery of the critical minerals for the energy transition.