Uravu Labs | Water-Positive Cooling & AWG Technology

Uravu Labs | Water-Positive Cooling & AWG Technology

Sustainable Development Goals

SDG 12 – Responsible Consumption and Production, SDG 13 – Climate Action, SDG 6 – Clean Water and Sanitation

Company Overview

Uravu Labs is a Bengaluru-based deep-tech company that develops atmospheric water generation (AWG) technology, producing potable water from ambient air moisture using renewable energy and waste heat instead of grid electricity.

The company was incorporated in October 2019 by Swapnil Shrivastav, Venkatesh RY, Govinda Balaji, and Pardeep Garg, with its origins tracing to research the founders conducted as engineering students at the National Institute of Technology, Calicut. Its core process uses a liquid desiccant, rather than conventional refrigerant-based condensation, to absorb moisture from air before releasing it as vapor through heating and recovering it as condensed drinking water.

Uravu’s early commercial product, bottled water sold under the “FromAir” and “Water from Air” trademarks, has been supplied to hospitality, food and beverage clients in India. The company has since expanded its technology into a platform called Clausius, which applies the same desiccant-based moisture capture to industrial and data center cooling, using waste heat from servers or processes to simultaneously cool facilities and produce water as a byproduct.

Headquartered in Bangalore, Karnataka, Uravu Labs operates primarily in the Indian market, with disclosed commercial and pilot engagements spanning the hospitality, food and beverage, pharmaceutical, and data center sectors. The company has raised capital across multiple funding rounds since 2021 and has been recognized by several international innovation and climate-tech programs.

Why These SDGs Matter

SDG 6 is directly relevant because Uravu’s core technology produces potable water from atmospheric moisture, offering an alternative water source in regions facing groundwater depletion and water stress. SDG 12 applies because the company’s model reduces dependence on single-use plastic bottles and repurposes waste heat that would otherwise be discarded, aligning with more responsible resource use in production and consumption cycles. SDG 13 is relevant because the water generation and cooling processes are powered by renewable energy or reclaimed waste heat rather than grid electricity tied to fossil fuel generation, positioning the technology as a lower-carbon alternative to conventional water sourcing and industrial cooling methods.

Products & Services
  • Atmospheric water generators using liquid desiccant technology
  • Clausius water-positive cooling platform for data centers
  • Industrial cooling systems for pharmaceutical and chemical facilities
  • Bottled drinking water under the “FromAir” brand
  • On-site water generation systems for hospitality and food service
  • Franchise-based decentralized water production model
  • Net-zero water systems for architecture and building projects
  • System sizing and TCO configuration tool for data center clients
Business Challenges Solved
  • Groundwater depletion from conventional water sourcing in water-stressed regions
  • High water consumption in data center and industrial cooling
  • Water supply risk for hospitality and food and beverage operations
  • Dependence on single-use plastic water bottles
  • Trade-off between energy use and water use in facility cooling
  • Reliance on centralized municipal or trucked water infrastructure

Approach & Methodology

Uravu Labs’ technology is built around a liquid desiccant cycle rather than conventional refrigerant-based condensation used in most atmospheric water generators. The process operates in three stages. First, a proprietary liquid salt solution absorbs moisture from ambient air, a step that functions even in relatively low-humidity conditions. Second, the moisture-laden solution is heated, using solar thermal energy, biomass, or reclaimed waste heat from industrial and data center processes, to release the absorbed moisture as vapor. Third, the vapor is condensed into purified, mineral-rich water.

This decoupling of moisture absorption from the heat source is the basis for the company’s Clausius platform, which applies the same underlying chemistry to facility cooling. Waste heat from servers, chillers, or industrial processes regenerates the desiccant, allowing a single thermal cycle to deliver both cooling and water output rather than treating them as separate, resource-competing functions.

The company offers a web-based configuration tool that allows data center operators, OEMs, and engineering consultants to size a Clausius system based on climate conditions, IT load, and return temperatures, generating projected water output and payback estimates. Deployment scale ranges from small residential-capacity units to systems designed for megawatt-scale industrial and data center facilities.

Market Position

Uravu Labs occupies a niche position within the broader atmospheric water generation market, differentiated by its liquid desiccant approach rather than the more common refrigerant-based condensation method used by competitors. Its primary customers have shifted over time, from hospitality, food and beverage brands purchasing bottled “FromAir” water, toward data center operators, OEMs, engineering consultants, and industrial facility owners seeking combined cooling and water solutions through its Clausius platform. This repositioning places the company within the emerging “water-positive cooling” category, addressing rising water consumption concerns tied to AI-driven data center growth. The company’s technology has been referenced in international press covering data center water use and sustainable cooling.

Procurement Considerations
  • Confirm site-specific humidity and climate conditions suit the desiccant absorption process
  • Verify availability of sufficient waste heat (35 to 60 degrees Celsius) to drive the Clausius cycle
  • Assess required water output volume against facility scale and system capacity
  • Evaluate integration requirements with existing HVAC or industrial cooling infrastructure
  • Confirm desiccant maintenance and replenishment schedules and associated costs
  • Request site-specific performance data (PUE, WUE, payback period) rather than relying on general marketing figures
  • Clarify service, warranty, and support terms for deployed systems
  • Compare total cost of ownership against conventional water sourcing and cooling methods
Funding, Recognition & Ecosystem
  • Pre-seed funding round led by Speciale Invest, 2021
  • Seed funding of 2.3 million USD in March 2023 from JITO Angel Network, Anicut Capital, Speciale Invest, Rocketship.vc, and other investors
  • Pre-Series A funding of approximately 1.2 million USD in July 2025, led by Enrission India Capital with participation from Inflection Point Ventures and Firstport Capital
  • Participant in Marico Innovation Foundation’s Scale-Up accelerator program since January 2023
  • Recognition cited by the company from UNIDO, Hub71, Imagine H2O, and Third Derivative
  • Coverage in international press including Bloomberg, BBC, and IEEE Spectrum
Natnavi Analysis

Uravu Labs represents an example of a deep-tech water company adapting its core technology to a new and higher-value market as circumstances shifted. Its original product, bottled water produced from atmospheric moisture for hospitality and beverage clients, addressed a real but narrow commercial niche in India’s water-stressed urban centers. The company’s more recent pivot toward water-positive cooling for data centers responds to a growing and well-documented tension between AI infrastructure growth and water consumption, a problem increasingly visible to regulators and communities in water-stressed regions.

The company’s liquid desiccant approach is a genuine technical differentiator from refrigerant-based atmospheric water generation, and its ability to pair water production with waste heat recovery gives it a plausible efficiency argument over conventional cooling methods. Multiple funding rounds since 2021, sustained accelerator involvement, and international press coverage suggest the technology has attracted credible external validation.

At the same time, publicly available information on large-scale, independently verified deployment performance for the Clausius platform, as opposed to pilot-stage or announced capability, is limited. Procurement teams evaluating the company should treat efficiency and output figures as indicative until confirmed against a specific deployment.

Sources & References
Founded: 2019
Company Stage: Growth-Stage Company
Headquarters
Bangalore, Karnataka, India
Geographic Presence
Uravu Labs is headquartered and primarily operational in Bengaluru, India, with commercial deployments concentrated across Indian cities including Bangalore. The company has supplied hospitality and food and beverage clients domestically and has publicly discussed early-stage international pilot activity, including a planned pilot project in Japan. Its current data center and industrial cooling offering targets facility operators across water-stressed regions more broadly.
Solution Type
Manufacturer, Technology Provider
Sustainability Outcomes
Carbon Reduction, Energy Efficiency, Resource Efficiency, Water Conservation
Industries Served
Agriculture & Food, Construction & Real Estate, Healthcare & Pharmaceuticals, Hospitality & Tourism, IT & Digital Infrastructure, Manufacturing
Last Reviewed: August 1, 2026

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