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Combined Heat And Power (CHP)

Combined heat and power (CHP) systems are designed to be highly efficient as they capture and utilize the heat that would otherwise be wasted in traditional power plants. CHP systems can be fueled by a variety of sources, including natural gas, biogas, and biomass, and can be used in a variety of applications, including residential, commercial, and industrial.

Using a variety of technologies and fuels, combined heat and power (CHP) are systems that efficiently generate thermal and electrical energy. Losses are reduced thanks to on-site power generation, and heat that would otherwise be lost is used to power facility loads in the form of steam, hot water, or even chilled water for process heating. CHPs can produce district energy, work as microgrids, or create heat and power for industrial use. They can also supply power and thermal energy to numerous end users. In the event of grid failures, CHP can deliver dependable power around the clock and can be used with other distributed energy technologies like solar photovoltaics and energy storage.

CHP is typically more energy efficient than traditional electrical and heating

CHP generate savings on heating and electricity cost.

CHP helps lower a facility's overall greenhouse (GHG) ssons.

Why Choose CHP?

As electric rates continue to climb and utility grids strain to meet demand, Combined Heat and Power (CHP), also called CHP, could be the answer you need to overcome these challenges.

CHP solutions capture heat from generator sets that would have otherwise been wasted and uses that energy for industrial processes such as providing heat for buildings. This allows CHP systems to reach up to 80% efficiency and reduce both the cost and emissions of your facility plant. There may be local tax credits or other incentives which can make your CHP project even more affordable.

As you move forward in your energy transition journey, you can incorporate biogas, biofuels, or hydrogen into your system for further reductions in your site's overall GHG emissions.

Why Are They Good?

1. MORE PROFIT WITH BETTER EFFICIENCY

The fuel efficiency can grow about twice as much when using CHP modules.

2. EASY AND FAST INSTALLATION

The units are carefully modularized so that transportation and installation can be easier and provided faster. Also, the CHPs are pre-designed, so that they can be instantly provided upon request.

Combined Heat & Power Modules

Most of the waste heat is available in the engine exhaust and jacket coolant, while smaller amount can be recovered from the lube oil cooler and the turbocharger’s intercooler and aftercooler (if so equipped). With the use of CHP solutions, wastes are recovered and reuse. Hence, providing an economical saving while moving towards lesser emission and greener environmental.

The key benefit of CHP generation

The key benefit of CHP generation is that much of the heat which would otherwise be wasted from power only generation is recovered for additional uses, thereby reducing overall fuel consumption and atmospheric emissions of greenhouse and polluting gases. Renewable CHP generation reduces further still the carbon intensity of power generation through the use of carbon neutral, renewable fuels.

CHP systems are highly efficient, making use of the heat which would otherwise be wasted when generating electrical or mechanical power. This allows heat requirements to be met that would otherwise require additional fuel to be burnt.

For many organisations, CHP is the measure that offers the most significant single opportunity to reduce energy costs and to improve environmental performance with existing users of CHP typically saving around 20% of their energy costs.

What are the advantages of CHP?

Support for residential and light industrial energy consumers

Micro CHP can reduce consumer fuel bills and protect against rising energy costs

Balancing renewable energy around the world

Micro CHP can support renewable energy development by helping to meet the challenges of modern electricity grids

Decarbonising heat

By cutting current and future carbon emissions, micro-CHP supports a global move towards the decarbonising of heat and electricity supply

Providing energy security

Micro combined heat and power systems provide high-efficiency energy that improves power grid stability and saves primary energy

Fostering economic growth

Viewed as a next-generation product for the heating industry, micro CHP will create jobs and build economic value

Arrange a FREE feasibility study

Contact us for a free, no-obligation feasibility study of your businesses energy demand.

Project consulting

Combined heat and power (CHP) solutions

Biomass combined heat and power system

Wide source of raw materials, high energy efficiency, can adjust the proportion of energy production according to customer energy demand

System low energy consumption, high energy efficiency, low failure rate, only one person on duty, the system covers a small area, simple operation, low NOX emissions, low fly ash, less exhaust consumables consumption, low flue gas treatment costs.

Ingredients

Biomass feedstock type

Our biomass gasification technology has been tested on over 80 organic materials, ensuring high efficiency and sustainability.

  • Nut shell
  • Rice husk
  • Wood chips
  • Coffee bean shells
  • Biomass pellets
  • Coconut Shell
  • Redwood pellets
  • Biomass Briquettes

Coal combined heat and power system

Abundant and widely available raw material, stable energy output, can provide continuous power generation for long periods, ensuring a reliable energy supply.

High energy density, mature technology, cost-effective, suitable for large-scale power plants, reliable performance, but may require more maintenance, higher emissions, and increased environmental impact compared to cleaner alternatives.

Ingredients

Coal feedstock type

Our coal gasification technology has been tested on various coal types, optimizing performance and reducing emissions.

  • Wood charcoal
  • Straw charcoal
  • Nut shell charcoal
  • Bamboo biochar
  • Anthracite
  • Bituminous coal
  • Brown coal
  • Pulverized coal

Gas combined heat and power system

Cleaner burning fuel with higher energy efficiency, suitable for both base-load and peak-load power generation, with the ability to quickly adjust output based on demand.

Lower emissions of CO2 and other pollutants compared to coal, faster startup times, requires less space for installation, and has lower fuel costs. However, it depends on natural gas availability and infrastructure, which may fluctuate.

Ingredients

Gas feedstock type

Our gasification technology has been tested on nearly 78 gases, ensuring efficient energy conversion with minimal impact.

  • Natural gas
  • Liquefied Natural Gas
  • Liquefied Petroleum Gas
  • Biogas
  • Syngas
  • City gas
  • Hydrogen
  • Associated Petroleum Gas

Combined heat and power (CHP) technical specifications

Parameter name Typical range of values Remark
Generation efficiency 20 - 30% Depends on the technology and scale
Overall energy efficiency 80 - 90% Including electricity and heat
Electric power output Depends on the size of the system Small systems to large industrial systems
Thermal power output Depends on the size of the system Depends on the technology and scale
Operating temperature 150-500°C Steam or hot oil temperature
Operating pressure bar 10 - 100(bar) Steam system
Fuel type Wood chips, crop residues, etc Multiple biomass fuels
Carbon dioxide emission It depends on fuel and technology Biomass emissions are often considered carbon neutral

Immersive VR Walkthrough

Explore the CHP plant with a 360-degree tour of the site:

We cover the entire value chain with CHP:

Planning, construction, operation and maintenance of CHP systems

Packaging of customized units

Financing as part of contracting offers

Nationwide CHP service from a single source

Taking into account energy needs and opportunities

CHP: What it is, what it’s not

CHP systems can only work in conjunction with the utility grid.

CHP can run completely off the power grid, providing heat and power in island mode.

CHP is not an energy source in itself. It is a method for improving the efficiency of in-place energy systems and fuels.

CHP systems are optimized for maximum plant efficiency. By making use of otherwise wasted heat, facilities can gain a wide range of advantages.

CHP is designed for projects needinn 247 vearlong nower.

CHP can also he used seasonally nrovidinn additional power in extreme temperatures.

Top Industries For CHP

CHP Is Used In Over 4,400 Large Buildings And Facilities Nationwide, Including:

Power plants - Coal, natural gas, hydro, nuclear, and renewable energy production.

Institutions-Colleges and universities, hospitals, prisons, and military bases.

Municipal-K-12 schools, district energy systems, and wastewater treatment facilities

Manufacturers-Chemical, refining,ethanol, paper, and food processing.

Commercial buildings-Office buildings, hotels, health clubs, and nursing homes

Residential-Apartment complexes and planned communities.

The Dabonn Advantage

When you choose a Dabonn CHP set, it’s the start of a lasting relationship. We are dedicated to making sure you get the most from your solution with outstanding service and support.

Dabonn Combined Heat And Power (CHP)-The best choice for combined heat and power facilities

Our CHP sets range from 100 to 4,500 kW, and many are designed specifically for CHP applications, giving you maximum return on investment.

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We provide medium and long-term solutions to the problems of biomass waste, transforming waste into energy at no environmental cost and making it economically viable and at the same time compatible with the international environmental regulations and standards

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