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Making decarbonization easy and profitable

Turn complex heat decarbonization problems into executable projects.

Engineer, procure and manage your heat decarbonization project with Entropic.

Reduce time spent on project development by 90%

  • Upload your data to our platform via a quick  questionnaire. Instant visualization of your heat use and decarbonization needs.

    < 5min

  • Use our AI-powered engineering module to simulate, compare and review low carbon opportunities. Tailored to your factory unique needs.

  • Select an opportunity and add details. Next automatically create a detailed request for proposals (RFP).

  • Post your RFP to our marketplace connect with top-rated suppliers and receive competitive offers.

  • Collaborate with top/preferred suppliers, integrators and financial partners to design a comprehensive, cost effective project proposal.

  • Seamlessly move from planning to execution with ongoing support from Entropic and performance tracking.

Factory

Assess factory

Start with a quick questionnaire to assess your factory's heat potential and identify key decarbonization opportunities.

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Identify potential in under 5 minutes

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Visualize your energy use and needs

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Spot projects instantly
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Add data to further refine results
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Digital Mapping

Create a digital map of your factory using satellite imagery

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Map heat users and consumers

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Assess viability of project

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Improve cost engineering with precise layout
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Add data to further refine results
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Scoping of solutions

Simulate and scope the best decarbonization solutions for your factory.

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Simulate low carbon technologies

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Star top solutions for detailed analysis

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Add photos and more data for RFP
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Calculate business case and explore financing options
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Marketplace

Easily connect with top suppliers to fast-track your decarbonization projects.

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Automated generation of RFP

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Post RFP to marketplace

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Receive competitive bids
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Support during negotiation process
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Build your project team

Assemble the right team to bring your decarbonization project to life, with access to top suppliers and experts.

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Invite suppliers, engineers, or partners to collaborate.

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Use preferred integrators or let us match you with best-fit experts

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Develop together with partners via our platform
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Finalize project proposal with expert advice from our team.

Features in detail

End-to-end support for your project

Factory with huge waste heat potential

Assess factory

Start with a quick questionnaire to assess your factory's heat potential and identify key decarbonization opportunities.

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Identify potential in under 5 minutes

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Visualize your energy use and needs

check
Spot decarbonization projects instantly
check
Add data to further refine results
digital mapping of factory with 3D satelite imagery

Digital mapping

Create a digital map of your factory using satelite imagery
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Map heat users and consumers
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Assess viability based on space and piping
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Improve cost accuracy with precise layouts.
Entropic platform showcasing all opportunities for energy efficiency, waste heat recovery, industrial decarbonizationn

Scoping of solutions

Simulate and scope the best decarbonization solutions for your factory.
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Simulate all heat decarbonization technologies
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Star top solutions for deeper exploration.
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Add photos and data for comprehensive analysis.
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Calculate the business case and explore financing options.
Entropic marketplace connecting factories with trusted energy technology suppliers.

Marketplace

Easily connect with top suppliers to fast-track your decarbonization projects.
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Generate RFPs based on your starred solution.
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Instantly share RFPs with top-tier suppliers
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Receive competitive bids maximizing value
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Handle everything in one place
Supplier network showcasing industrial heat decarbonization collaboration for a project

Build your project team

Assemble the right team to bring your decarbonization project to life, with access to top suppliers and experts.
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Invite suppliers, engineers, or partners to collaborate.
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Use your preferred suppliers or let us match you with the best-fit experts
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Receive integration quotes from your project team.
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Finalize the project plan with expert guidance from our team.

Plan a demo with one of our solution engineers

Technology suggestions? Please let us know!

ndustrial heat exchanger transferring thermal energy to recover and increase energy efficiency in factory processes.

Heat exchanger

Re-use

A heat exchanger transfers heat between a user and consumer this is the most efficient way to recover heat and increase energy efficiency. There are no temperature limits for heat exchangers.

Industrial heat pump upgrading waste heat between 20-300°C to improve factory energy efficiency.

Heat pump

Power2Heat

A heat pump upgrades your waste heat. It operates between 20-300°C. The COP (coefficient of performance) of up to 10.
(COP = thermal output / electrical input)

Thermal energy storage system capturing waste heat and electricity for optimized energy usage in industrial settings.

Thermal energy storage

Store

Thermal storage uses waste heat or electricity. Waste heat causes supply-demand imbalance, while electricity storage leverages low prices to store heat and high prices to use it.

E-boiler for heating industrial fluids up to 300°C, providing energy flexibility by switching between electricity and gas.

E-boiler

Power2Heat

An E-boiler heats fluids up to 300°C for steam, ideal with a gas boiler. It switches between electricity and gas based on real-time prices, cutting energy costs by up to 60% in our simulations.

Adsorption cooler using industrial waste heat to efficiently generate cooling with minimal electricity consumption.

Adsorption cooling

Cooling

Adsorption cooling uses heat to cycle refrigerants (NH3, LiBr, silica gel) for cooling between -40 and 10°C. It efficiently converts waste heat (>70°C) into cooling with minimal electricity.

Organic Rankine Cycle (ORC) system generating electricity by vaporizing organic fluids in factories operating between 80°C and 300°C.

Organic Rankine Cycle

Heat2Power

The Organic Rankine Cycle (ORC) generates electricity by vaporizing an organic fluid to drive a turbine, operating between 80°C and 300°C. It's ideal for factories needing extra power when electricity is hard or costly to secure.
Carbon capture system separating CO₂ from industrial flue gases using chemical absorption and membrane technology.

Carbon capture

CCUS

CO₂ is separated from flue gases using chemical absorption, adsorption, or membranes. Payback time varies with technology, CO₂ concentration, plant size, and incentives.

Reuse - Store - Power2Heat - Cooling - Heat2Power - CCUS

Technology models

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