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gas turbine Applications

  • Integrated real-time gas analysis solution for combustion efficiency sector

    CIC Photonics has made its mark with several R&D institutes where research is underway to determine the optimum thermodynamic performance of new turbine engine designs combined with new diesel fuel formulations. This sophisticated IRGAS technology has included not only a basic FTIR gas analyzer but also analyzers for H2, O2, THC, and a powder meter all integrated into a comprehensive IRGAS Solution.

    By CIC Photonics, Inc. based in Albuquerque, NEW MEXICO (USA).

  • Premium

    Measurement solution for carbon fibre manufacture

    Carbon fibre is a unique material and is found in many high-tech industries such as sports car manufacture, wind turbine blade construction and sports equipment. The production of carbon fibre from acrylic fibre involves the baking of the fibre in ovens, which gives emissions of gas species including Hydrogen Cyanide (HCN). Protea’s range of gas analysers can provide a solution for the periodic or continuous measurement of gases from carbon fibre production in order to give reportable emissions values as required by legislation.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

  • Organic Rankine Cycle for Electricity from Heat Recovery

    Turboden ORC can produce electricity by recovering heat from industrial processes, reciprocating engines and gas turbines. The power of Turboden units generally ranges between 200 kW and 15 MW electric.

    By Turboden srl based in Brescia, ITALY.

  • Low emissions auxiliary boilers to coal or otherwise fired power plants

    Whether providing high-efficiency, low emissions auxiliary boilers to coal or otherwise fired power plants across the United States, or heat recovery steam generators to natural gas fired turbine plants you will find Superior Boilers serving the needs of power generation customers for years to come.

    By Superior Boiler Works, Inc. based in Hutchinson, KANSAS (USA).

  • Power Industry

    Our activities are closely interconnected with the energy industry. The precision casting foundry casts rotor and stator blades for gas turbines followed by precision grinding by the Industry Division. Furthermore, we also perform machining of shafts, complete blade attachment as well as subsequent assembly of steam and gas expansion turbines. PBS ENERGO, our affiliate company, focuses on the design and manufacture of steam and gas expansion turbines, including the delivery of complete plant systems. Our colleagues in První brněnská strojírna, a.s. specialise in the manufacture of boilers for various types of power plants. From design up to complex deliveries. Our products are subjected to extensive quality testing. Quality Management System according to ISO 9001 is fully implemented in our production process.

    By PBS Velká Bíteš, a.s. based in Velká Bíteš, CZECH REPUBLIC.

  • Power Generation

    Combustion turbines A gas turbine, also called a combustion turbine, is a type of internal combustion engine. It has an upstream rotating compressor coupled to a downstream turbine, and a combustion chamber in-between. The basic operation of the gas turbine is similar to that of the steam power plant except that air is used instead of water. The turbine shaft energy is used to drive the compressor and other devices such as an electric generator that may be coupled to the shaft. The energy that is not used for shaft work comes out in the exhaust gases, so these have either a high temperature or a high velocity. A catalyst is often used to treat these exhaust gases to comply with emissions regulations. EmeraChem has installed OEM and after-market catalyst in over 240 applications

    By EmeraChem based in Knoxville, TENNESSEE (USA).

  • Aerospace

    Our Auxiliary Power Unit (PEJ/APU) and Environmental Control Systems (ECS) are used by aeroplane and helicopter manufacturers all over the world. The successful products of the company also include the range of Main Power Units – turbine, turboprop and turboshaft engines for small manned and unmanned airplanes and helicopters. We provide also subdeliveries for the aerospace industry, for example electroplating, precision casting of guide wheels and blades of gas combustion turbines for aircraft engines, or precision machining. The testing laboratory, where final products are tested, is an important part of the aerospace programme. The production process is controlled by the quality system according to AS 9100, ISO 14 001 and ISO 9001.

    By PBS Velká Bíteš, a.s. based in Velká Bíteš, CZECH REPUBLIC.

  • Industrial water Nickel & Cobalt purification

    Cobalt is a brittle, hard transition metal with magnetic properties similar to iron. It is mainly used as an alloy with iron, nickel or other metals to produce corrosion and wear resistant products for high temperature applications (such as jet engines, gas turbines, etc.). Cobalt is normally produced as a by-product of nickel or copper mining. The purity requirements for Cobalt do not allow nickel to exceed a concentration 0.1%. Earlier, the nickel was removed by lime precipitations, but as the market specifications became more stringent, ion exchange technologies have been applied.

    By PuriTech Ltd based in Herentals, BELGIUM.

  • Water treatment for power plants

    The process of electricity generation from fossil fuels such as coal, oil and natural gas is water-intensive. Between 40-50% of all water abstracted and used in developed countries is used in the generation of electricity. Thus, a reliable, abundant and predictable source of raw water supply to a power plant is a critical factor in site selection. Water supplies are required to provide various process waters for the following essential main purposes such as make-up water, cooling water for steam turbine condensers, and auxiliary plant cooling water.

    The primary application of modern water treatment technology is to maintain the integrity and performance of the power plant. Critical plant applications have water purity or conditioning requirements that must be adhered to for safe, reliable and efficient power generation.

    Experience has shown that integration of water technology treatments with power plant design can be very important in reducing operational problems and component failures 

    At power plant worldwide there are increasing limitations on water availability and environmental restrictions on discharges. This is expected to promote measures for water conservation and to have an increasing influence on water treatment decisions. At power plant, the recycling of internal wastewater streams can extend from the recovery of individual high-quality waste streams, which can be reused either directly or after only limited treatment, through to the development of fully integrated water/wastewater treatment systems for zero liquid discharge. However, the application of reuse schemes requires site-specific assessment, as not all waters may be viable options for recovery.

    By De Nora Water Technologies based in Colmar, PENNSYLVANIA (USA).

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