BlueShift Exits Stealth with $2.1M in Pre-Seed Funding to Enable U.S. Self-Reliance Amid Changing Energy Landscape

BOSTON, March 19, 2025 (GLOBE NEWSWIRE) -- BlueShift, the electrochemical climate tech innovator, today emerged from stealth with the announcement of a successful $2.1 million pre-seed funding round. ConocoPhillips Company, Ridgeline and the Massachusetts Clean Energy Center (MassCEC), with participation from others, have provided funding to enable BlueShift to begin construction of its pilot facility.

Working out of North America's largest climate tech incubator, Greentown Labs, and MIT's The Engine accelerator, BlueShift will direct the bulk of its funding to the first pilot installation of its electrochemical technology in Boston Harbor.

Combining proprietary membrane-free technology from the University of Michigan, Harvard and supported by ARPA-E—along with additive manufacturing elements and existing infrastructure—BlueShift's innovative electrochemical systems process alkaline industrial waste and seawater to isolate critical minerals using infrastructure commonly found at desalination and power plants. As a bonus, BlueShift's low-cost, energy-efficient technologies also extract CO2 directly from seawater as limestone, helping to address the growing environmental issue of ocean acidification.

"BlueShift was founded with the mission of promoting economic resilience by unlocking underutilized resources using advanced technologies," said BlueShift Founder & CEO Deep Patel. "And there is perhaps no other class of resources better positioned to benefit from this mission today than that of critical minerals and rare earth elements (REEs). Given the dramatic scale of environmental degradation, operational inefficiencies, and global trade imbalances plaguing this market, we felt it was imperative to develop a more sustainable, scalable, and geopolitically stable source of these vital resources. The result is a new system that addresses all of these issues while also offering a low-cost, energy-efficient method for ...