EKSPERTO SA BOILER
Since 1983, more than 40 years boiler experience
thermal oil heater

NEWS

  • Advantages Of Tunnel Kiln Waste Heat Recovery Boiler
    1. Wide application range, internal combustion or external combustion type sintered brick tunnel kiln, super internal combustion or low calorific value raw materials can be used;2. The system is highly automated and easy to operate;
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  • Skid mounted quick installed industrial thermal oil boiler
    Introducing our advanced skid-mounted industrial thermal oil boiler, a versatile and essential as
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  • Waste heat boiler
    Waste heat boilers are sophisticated special constructions and serve to increase the energy efficiency of thermal plants – e.g. behind gas turbines or gas engines. The waste heat of industrial processes is made usable by waste heat boilers and utilised e.g. as process steam, for power generation, or as hot water.This form of waste heat utilisation significantly increases the efficiency of the entire plant.
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  • WASTE HEAT RECOVERY SYSTEMS
    Waste heat recovery systems recover the thermal energy from the exhaust gas and convert it into electrical energy, while the residual heat can further be used for ship services (such as hot water and steam). The system can consist of an exhaust gas boiler (or combined with oil fired boiler), a power turbine and/or a steam turbine with alternator. Redesigning the ship layout can efficiently accommodate the boilers on the ship to better fit these systems.Waste heat recovery is well proven onboard ships, but the potential can be variable depending on the size, numbers, usage and efficiency of the engines on board. Furthermore, these measures are usually not relevant for retrofitting, due to large costs and efforts related to redesign, steel work, extra weight, etc.
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  • Heat Recovery In Industry
    Saving energy costs is a central issue in many companies. The energy demand is constantly increasing, and the energy costs are growing exponentially. Therefore, waste heat recovery is becoming increasingly important in industry. With today’s technology, more than 16% of energy costs can be saved.Particularly manufacturing industries such as plastics or metal processing are suffering from sharply rising energy prices. Effective heat recovery makes the company less dependent on energy prices and suddenly rising prices have less impact on production.
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  • HEAT RECOVERY BOILERS
    Boilers of this type generate steam by extracting heat from hot fluid, generally a gas, which is produced as a by-product of a chemical reaction and has no intrinsic value as a chemical, or which is in the form of exhaust from a gas-turbine or internal combustion engine. Heat recovery boilers are also often found in association with high temperature processes such as steel and glass making.It is not uncommon for these boilers to receive additional heat by supplementary firing of other by-products or by burning gas or light oil to raise the boiler inlet gas temperature to a level commensurate with the desired steam conditions.
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  •  WASTE HEAT RECOVERY BOILERS AND ECONOMISERS
    Chemical industries are very important for the national economy as they make a significant contribution to the industrial production of the country. Items for personal hygiene, fertilisers for agriculture, high-speed diesel, petrol for land-based and ATF for air transport, furnace oil, propane for industrial use; paper, plastics, synthetic fibres and LPG for domestic use; explosives for defence and mining, pharmaceuticals for healthcare, etc. are provided by the chemical industries.
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  • Heat Recovery Systems
    With an ever-increasing focus on saving energy, beneficial from both a financial and environmental perspective offers a wide range of Heat Recovery Equipment, from retrofit Exhaust Gas Economisers to standalone Waste Heat Recovery Steam or Heated Fluid Boilers plus bespoke solutions to meet customers’ needs.Virtually all industrial processes require heat and / or generate heat as part of the industrial cycle. Leaving the heat to dissipate into the surrounding environment is wasteful and is often subject to legislation. Recovering and re using that heat makes for a more sustainable process and has financial rewards in addition to complying with any environmental requirements. That’s where Heat Recovery Systems come in; they collect and re-direct ‘waste’ heat, feeding it back into the original process or using it for other purposes.
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  • What are the challenges and benefits of implementing waste heat recovery systems in plant design?
    Waste heat recovery systems (WHRS) are a way to improve the energy efficiency of industrial plants by capturing and reusing the heat that would otherwise be lost in the process. WHRS can reduce fuel consumption, greenhouse gas emissions, and operating costs, while increasing the overall performance and reliability of the plant. In this article, we will explore the challenges and benefits of implementing WHRS in plant design, and provide some practical tips and examples.
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  • Waste heat recovery boiler
    A waste heat recovery boiler (WHRB) is a type of boiler that captures and utilizes waste heat from industrial processes for the generation of steam or power. Industrial processes often produce excess heat that is discharged into the atmosphere, and waste heat recovery systems aim to capture and utilize this heat to improve overall energy efficiency.
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  • 4 industries that can benefit from waste heat recovery systems
    In an age of fluctuating oil costs and increased demands for sustainable practices, waste heat recovery has proven to be a win-win situation for plants and processes in a wide range of industries.Waste heat recovery is the process of collecting heat that would have otherwise dissipated into the air inside or outside of a facility, and using it elsewhere in an area of the plant that requires heat generation. This can reduce operational expenses because it decreases the need to pay for heating.
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  • Waste heat recovery unit 
    A waste heat recovery unit (WHRU) is an energy recovery heat exchanger that transfers heat from process outputs at high temperature to another part of the process for some purpose, usually increased efficiency. The WHRU is a tool involved in cogeneration. Waste heat may be extracted from sources such as hot flue gases from a diesel generator, steam from cooling towers, or even waste water from cooling processes such as in steel cooling.
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