coal-fired power industry Applications

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Electrostatic Precipitator

by MEVADHASHMA     based in Coimbatore, INDIA

An electrostatic precipitator (ESP), or electrostatic air cleaner is a particulate collection device that removes particles from a flowing gas (such as air) using the force of an induced electrostatic charge. Electrostatic precipitators are highly efficient filtration devices that minimally impede the flow of gases through the device, and can easily remove fine particulate matter such as dust and smoke from the air stream.[1] In contrast to wet scrubbers which apply energy directly to the flowing fluid medium, an ESP applies energy only to the particulate matter being collected and therefore is very efficient in its consumption of energy (in the form of electricity).

Knockers, Vibrators and Rappers for Dust Collectors

by Cleveland Vibrator Company     based in Cleveland, OHIO (USA)

The Cleveland Vibrator Company offers a wide range of pneumatic, piston-driven, industrial vibrators, knockers, impactors and rappers to dislodge collected dust from precipitator wires and plates or baghouse filter bags as well as keep dust free flowing in collection bins and hoppers.

Coal pulverizing for the coal industry

by Columbia Steel Casting Co., Inc.     based in Portland, OREGON (USA)

Columbia Steel has established itself as a manufacturer of quality replacement parts for coal pulverizers and ash crushers used in power plants.

Continuous Gravimetric Feeding for the Power Industry

by Schenck Process Germany     based in Sandnes, NORWAY

Bulk material handling in coal-fired power plants and all associated sectors of industry is big business. The work is highly sought after, fiercely bargained for and stable – in terms of future-proofing. The market-leading solutions for weighing, feeding and automating in the field come from Schenck Process whose products are amongst the most reliable in the industry. The well-engineered IC Power product range includes everything from components to complete systems for bulk material handling at all process stages in the power plant industry.

Secundary air flow measurement for power generation industry

by Kurz Instruments, Inc.     based in Monterey, CALIFORNIA (USA)

Secondary Air Flow Overview: The need for accurate, repeatable & reliable combustion air measurements in power generation plants is critical to efficient operation and safety throughout the entire facility and processes. Accurate secondary air flow measurement to the burners is critical for maintaining the proper air to fuel ratio, result­ing in more complete and stable combustion, better performance and lower emissions. Coal-fired power plant applications pose a number of challenges to obtaining these critical flow measurements including large ducts, limited metering runs, poor velocity and temperature profiles, vibration and high temperatures.

Solutions for mercury removal emissions from flue gas streams

by Calgon Carbon Corporation     based in Pittsburgh, PENNSYLVANIA (USA)

For the removal of mercury emissions from flue gas streams, Calgon Carbon`s specialty PAC products are proven industry performers. These industries include: Coal-fired electric power plants, Cement, Boilers.

HCl Monitoring in Air

by Unisearch Associates Inc.     based in Concord, ONTARIO (CANADA)

Hydrogen chloride (HCl) is a colorless, sometimes slightly yellow, gas. It is an undesired environmental component that may be damaging to workers and the surroundings. Exposure limits have thus been established by industries to make sure that the workers operate in a safe environment. HCl monitoring is especially required for incinerators, coal-fired power plants, aluminum recycling and cement plants. Unisearch offers a reliable and easy-to-use HCl analyzer – the TDLAS-based LasIR system. Studies have shown that TDLAS equipment provides data that is more accurate than conventional gas monitoring equipment. When calibrated for HCl monitoring, TDLAS is able to detect this gas among other gases present in the area and provide continuous updates with regards to the changes in its concentration.

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