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power plant water Applications

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    Water treatment chemicals for power plants industry

    Today’s power industry is already subject to strict official regulations. These rules will only become more stringent in the future. As a result, environmentally friendly, cost-effective solutions that ensure plant and operational safety are in high demand.

    By Kurita based in Ludwigshafen, GERMANY.

  • Water Treatment for Power Plants

    By Canamidex International Corp. based in Richmond Hill, ONTARIO (CANADA).

  • 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).

  • Automated solutions for the power plant inlet water dredging

    Liquid Waste Technology’s dredging systems are used for power plant cooling water dredge applications. LWT’s dredges are designed to remove the sand, silt and sediment that build up in reception ponds and inlet channels to power plants. Each dredging system is custom built for the inlet water application, including the level of automation, removal rate and dredging depth required for each job.

    By Liquid Waste Technology LLC (LWT LLC) based in New Richmond, WISCONSIN (USA).

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    Advanced water treatment equipments for power plants industry

    We offer a complete line of solutions as follow: Desalination by reverse osmosis, brackish water reverse osmosis, multimedia filters, feed pump & feed pump skids, EDI, pre & post treatment options, membranes, softners, services & maintenance.

    By Advanced Equipment and Services, Inc. (AESINC) based in Coconut Creek, FLORIDA (USA).

  • Wind or solar powered sewage treatment plants

    Use natural air currents for aerobic sewage treatment via venting pipes. Alternatively, they can be solar powered using a very low energy 12 Volt fan. The FILTERPOD requires no electricity for the treatment process. They finally allow modern, high quality sewage treatment for all regions of the world, even for off-grid locations.

    By Water Technology Engineering Ltd. (WTE) based in Bolton, UNITED KINGDOM.

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    pH value and conductivity measurement for power plants

    The pH value and the conductivity have to be determined quasi-continuously at numerous locations in a power plant. The pH value is a key parameter to control the amount of lithium hydroxide that has to be added to the primary circuit of a pressurized water reactor; in water steam circuits, the pH value controls the amount of added amines. The conductivity indicates the amount of dissolved minerals. It is a measure of the water purity and is one of the most important parameters for any chemical control program in a power plant. It is determined at numerous sampling points in the power plant, for example, in the cooling water circuit, in feed and makeup water, at the outlet of the condensate pump, and in the primary circuit of a pressurized water reactor.

    By Metrohm AG based in Herisau, SWITZERLAND.

  • Environmental technology for power plants industry

    Körting condensers, steam jet and water jet vacuum ejectors are established components in steam power plants. There have been innovative developments over the past decades and continously upgraded aggregates to lower energy consumption by optimising heat revovery in power stations.

    By Körting Hannover AG based in Hannover, GERMANY.

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    Cooling water flow measurement in renaturalised channel for power plants

    Application: Trapezoid channel 7 x 1.8 m (w x h). Part filled. Natural bed and bank.

    By NIVUS GmbH based in Eppingen, GERMANY.

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    Traveling Water Screens for Nuclear Power Industry

    Our nuclear plant services includes custom traveling water screen design and installation. We are one of the leading traveling water screen suppliers worldwide. Our screen solutions solve debris removal plant inflow sources to deal with solid contaminating material. Varied screen mesh sizes allow for use in varying conditions and applications.

    By International Water Screens based in Bakersfield, CALIFORNIA (USA).

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    Advanced water purification technologies for power generation sector

    SnowPure has been providing EDI technology to the power plant market since 2002. Power plants around the globe are utilizing our Electropure EDI including locations in the United States, Central America, Europe, the Middle East, and China. With the introduction of our higher-capacity EXL product we are now able to serve a greater share of the power plant market including larger installations.

    By SnowPure Water Technologies based in San Clemente, CALIFORNIA (USA).

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    Applications and Air Pollutants Removed for Marine Power Plants

    Control of ship diesel engine emissions to meet MARPOL requirements for particulate ash and soot, sulfur dioxide and NOx. Special compact inline stack mounted space saving designs. Both open loop arrangements using sea water or closed loop using a range of chemical solutions.  Complete system offerings.

    By Bionomic Industries Inc. based in Mahwah, NEW JERSEY (USA).

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    Traveling Water Screens for Hydroelectric Industry

    Our hydroelectric services includes custom traveling water screen design and installation. We are one of the leading traveling water screen suppliers worldwide. Our screen solutions solve debris removal plant inflow sources to deal with solid contaminating material. Varied screen mesh sizes allow for use in varying conditions and applications.

    By International Water Screens based in Bakersfield, CALIFORNIA (USA).

  • Electrodeionization

    The Fractional Electrodeionization (FEDI) process is an advancement of conventional EDI. The patented dual voltage process allows for a higher flexibility and tolerance to inlet water conditions, thus lowering the risk of scaling, and improving the plant& design economics and reliability. By incorporating a two-stage separation process with different voltages the FEDI process is able to: Achieve a higher hardness tolerance by having distinctly different concentrate chambers with separate reject streams and thus reducing the potential of hardness scaling. Optimize power consumption by using higher electrical current only where required. Ensure the best water quality, continuously consistently by removing a major part of the deionization load in the hardness removal zone, while residual ionic impurities are effectively removed in the silica removal zone;, which stays in a polishing mode.

    By QUA Group LLC based in Canonsburg, PENNSYLVANIA (USA).

  • 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).

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    Analysis of Herbicides in Drinking Water

    Herbicides are used throughout the world to combat the growth of unwanted plant life. These polar compounds are hydrophilic, so they may find their way into drinking water sources. While gas chromatography has historically been the preferred technique for analysis of herbicides in water samples, the use of LC-MS/MS for this application is gaining acceptance. This is due to the power of MS/MS to provide detailed identification of multiple analytes, but also in part due to the variety of HPLC stationary phases that are available. In particular, several HPLC phases are available that provide great retention and peak shapes for polar analytes, such as herbicides, even under mostly aqueous mobile phase conditions. The combination of these factors may possibly eliminate need for time-consuming sample preparation.

    By Sigma-Aldrich Co., LLC based in Bellefonte, PENNSYLVANIA (USA).

  • Water systems for industrial sector

    The Magnation Industrial Next Generation and Big Blue Pump & Irrigation systems, and Rainbolt Well systems are designed to reduce the impact of scaling,and improve water flow and energy efficiency in virtually any industrial application. Guaranteed less salts, less energy use, less chemical use, and reduced maintenance while extending the longevity of pipes. Our non-chemical system is available in a complete range of sizes, from the 2” Diameter System to large-scale applications including well drilling, manufacturing and processing plants, car washes, golf courses, construction, real-estate developments and power plants, to name a few.

    By Magnation Water Technologies - Magnation Corporation based in Oakland, CALIFORNIA (USA).

  • EDI Solutions

    QUA’s FEDI® (Fractional EDI) stacks have superior hardness tolerance compared to the other EDI products on the market. With a dual voltage process this allows for a higher flexibility and tolerance to inlet water conditions, thus lowering the risk of scaling, and improving the plant's design economics and reliability. FEDI stacks are available in three different models which can be applied either for higher hardness tolerance or high water flow rates. MEGA FEDI stacks are ideal for large capacity, high flow systems normally required in heavy industrial projects such as power, petrochemicals, & electronics for high purity water needs. Each stack can handle treated water flow of up to 75 GPM . MEGA FEDI’s unique stackable design minimizes piping, reduces footprint, and makes it simple and easy to install on skids. FEDI-Rx products are specially designed for applications in pharmaceutical, biomedical and laboratory applications where installations require hot water sanitization to meet

    By QUA Group LLC based in Canonsburg, PENNSYLVANIA (USA).

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