— SUSTAINABILITY

Engineering a cleaner future,
one decision at a time.

Long-life LFP (lithium iron phosphate) chemistry — a safe and long-life battery chemistry — durable design and localized production, supported by second-life and recycling facility investment across the battery's lifecycle.

6,000+
Cycle life (LFP)
LFP
Safe, durable battery chemistry
recycling
Second-life & recycling facility investment
second-life
Lifecycle integration
LIFECYCLE

From raw material to recycling,
circular engineering.

  1. 01

    Sourcing

    LiFePO4 (LFP) cells selected for safety and long service life, with documented traceability.

  2. 02

    Manufacturing

    Localized production under an ISO 14001 environmental management system, with smart, automated quality control.

  3. 03

    Operation

    Long-life LFP cells rated for 6,000+ cycles, with real-time monitoring and protection from a battery management system (BMS) that keeps the battery running safely.

  4. 04

    Second-Life

    Batteries with reduced utility capacity are reused in residential and stationary backup applications.

  5. 05

    Recycling

    Raw materials recovered and returned to the value chain through REAP's planned battery cell second-life and recycling facility (Phase 3 — 5 GWh/yr).

APPROACH

Sustainability on four pillars.

Carbon Footprint

Localized, end-to-end production shortens supply chains and supports a lower-footprint battery lifecycle.

Lifecycle Management

End-of-life batteries are assessed for second-life reuse before recycling.

Circular Economy

Not passive retirement, but active re-evaluation. 5-step return from cell level to raw material.

Certification

ISO 14001, IEC 62619, UN 38.3, UL 9540A — global environment + safety standards.

CERTIFICATES

Independent verification.

ISO 9001
Quality Management System
ISO 14001
Environmental Management System
IEC 62619
Industrial battery safety
UN 38.3
Lithium battery transport safety
UL 9540A
BESS safety standard
UL 1973
Batteries for stationary applications