Advanced Li-ion Battery Recycling

Building India’s next circular battery recovery platform with precision, speed, and cleaner industrial intent.

ECOBORO PVT. LTD is establishing a lithium battery recycling facility at TSIIC, Patancheru, Telangana, designed around safe handling, structured recovery, environmental protection, and long-term material security.

Battery Recovery Circular Economy Clean-Tech Materials
Illustration of a lithium battery inside circular recovery arrows and clean energy motifs.
Plant Location TSIIC, Patancheru

Telangana State industrial zone positioned for scalable battery recycling operations.

Annual Output 2 metric tons

Recovered battery materials planned across lithium, cobalt, nickel, manganese, copper, and aluminum.

24 Planned team members across production, engineering, quality, admin, and sales.
2200 sqm Total plot area planned for production block, roads, parking, and greenery.
11 months Target implementation schedule from planning and approvals to commissioning.
8 KL/day Water requirement with 5 KL for process and 3 KL for domestic usage.

Industrial recycling infrastructure shaped for a premium clean-tech future.

ECOBORO is structured as a private limited company focused on lithium battery recycling as a sustainable manufacturing activity, with a model built around recovery, compliance, and future-ready industrial relevance.

Vision illustration showing circular battery recovery, clean energy, and forward industrial growth.

Creating a circular economy for critical battery materials.

The company vision is to become a leader in sustainable lithium battery recycling by efficiently recovering and reusing critical materials, reducing dependence on raw material extraction, and supporting the global shift toward renewable energy and electric mobility.

Growing battery demand requires safe and local recycling capacity.

Rising battery waste from EVs, consumer electronics, and renewable energy storage creates urgent need for compliant recovery infrastructure. ECOBORO’s facility is intended to reduce hazardous disposal risks and strengthen domestic supply resilience.

Circular economy, B2B partnerships, and compliance-led growth.

The proposed model combines recovery and resale of recycled materials, partnerships with EV and battery manufacturers, and alignment with EPR and government-backed sustainability frameworks.

Illustration showing collect, process, recover, and comply stages in the ECOBORO recycling workflow.

We collect, discharge, dismantle, process, recover, and return value back to industry.

ECOBORO’s operating model is built around direct action on battery waste streams. The company is planning a structured system that receives end-of-life and QC-failed lithium batteries, neutralizes handling risk, separates material fractions, refines high-value outputs, and channels recovered materials back into the supply chain.

Collect Battery sourcing from multiple channels including industrial and commercial streams.
Process Mechanical shredding and hydrometallurgical treatment for efficient material recovery.
Recover Lithium, cobalt, nickel, manganese, copper, and aluminum outputs for reuse.
Comply Safety, waste management, and environmental discipline aligned with industrial norms.
Illustration showing recovered lithium, cobalt, manganese, copper, and aluminum materials.

Critical battery materials with industrial reuse potential.

  • Lithium carbonate for new battery and chemical applications
  • Cobalt carbonate for cathode and specialty industrial use
  • Manganese for battery chemistry and metallurgical applications
  • Copper and aluminum from foils, tabs, conductors, and casings

Reducing waste risk while recovering strategic materials.

  • Lowering landfill and open-disposal pressure from battery waste
  • Reducing contamination and fire hazards from improper handling
  • Supporting circular economy goals with domestic recovery capacity
  • Helping reduce long-term dependence on fresh raw material extraction

A cleaner path from spent batteries to recovered materials.

The technical flow covers battery collection and sorting, discharge and dismantling, shredding and crushing, chemical treatment through hydrometallurgy, material separation and purification, refining, drying, and responsible waste disposal.

Illustrated process network showing collection, dismantling, processing, refining, and return to supply chain.
01

Collection and Sorting

Receipt of used and QC-failed lithium batteries from multiple sources with controlled sorting and traceability.

02

Discharge and Dismantling

Safe discharge, dismantling, and pre-processing designed to reduce handling risks before mechanical treatment.

03

Shredding and Hydrometallurgy

Mechanical shredding, crushing, and hydrometallurgical treatment support separation, leaching, and purification.

04

Recovery and Refining

Recovery of lithium carbonate, cobalt carbonate, manganese, copper, and aluminum for circular re-entry into industry.

Core equipment planned for the facility.

  • Battery discharge system and dismantling station
  • Shredders, crushers, magnetic and eddy current separators
  • Hydrometallurgical leaching reactors and filtration tanks
  • Evaporation, crystallization, and effluent treatment systems

Infrastructure aligned for industrial operations.

  • Power requirement: 75 HP
  • Generator backup: 75 HP
  • Steam requirement: 500 kg/hr
  • Greenery allocation: 400 sqm within the site plan

Built for handling-sensitive industrial processing.

The proposed setup emphasizes traceability, safe storage, controlled discharge, process-specific chemical usage, pollution control systems, laboratory support, and effluent management to maintain a reliable and compliant operation.

Our project connects waste management, resource recovery, and clean-energy infrastructure.

As EV adoption and energy storage scale up, battery recycling becomes a strategic industrial service. ECOBORO is designed to act not only as a recycler, but as a recovery partner that helps convert waste into usable economic value.

Cleaner Disposal Safer handling for hazardous and end-of-life battery streams.
Material Security Recovery of finite critical minerals with future industrial importance.
Industrial Re-entry Recovered outputs can re-enter manufacturing and battery ecosystems.
Domestic Resilience Supports a stronger local supply chain for India’s clean-tech transition.

Capital and operating structure built for scale-up.

The report estimates project CAPEX at approximately Rs 3.70 crore, with major allocations toward land and infrastructure, shredding systems, hydrometallurgical processing, pollution control, laboratory equipment, approvals, and pilot setup.

Monthly operations planned around stable processing throughput.

Proposed OPEX includes battery sourcing, chemicals and reagents, energy, water and waste management, manpower, logistics, maintenance, insurance, environmental upkeep, and marketing, with monthly expenditure estimated at about Rs 57.90 lakh.

From planning to validation in an 11-month execution window.

Key phases include layout finalization, civil construction, permissions, utility and process equipment procurement, electrical installation, equipment commissioning, validation, and commercial readiness.

Let’s build a smarter battery recycling ecosystem.

Reach out to discuss partnerships, project opportunities, recycling operations, or company information for ECOBORO PVT. LTD.

Registered Office
H. No 7-66/1/271, Road No. 08, Sai Ram Nagar Colony, Patancheru, Sangareddy, Hyderabad - 502319.

Directors
K Surya Chandra Rao
G Janardhan

Company Details
PAN: AAICE2999P
CIN: U32909TS2024PTC187799

Auditors: DRTCR & CO., Khairtabad, Hyderabad. Promoters are noted in the report as having more than 8 years of experience.

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