2013-01-31

ENGINEERING



Dust Collection and Pollution Control System Engineering

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BCE's engineering staff is highly experienced and provides a variety of services for a wide range of industries. We specialize in engineering, manufacturing, and installing dust collectors, thermal oxidizers, baghouses, and an array of other advanced pollution control formats.
Local and global attention towards pollution and nuisance control in many industrial applications has been increasing over time, making control of released particulates an important issue for any business or entity.

This calls for the proper design, installation, and maintenance of dust collection equipment, whether toxic or not, because particulate containment is a must to provide a healthy and clean environment.

We are experienced developers of complete turnkey dust collection systems and we are ready to design a system for you!

If you have any questions about our services or capabilities, please contact us via phone, e-mail, or user our online form.

























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2013-01-30

Dust Collector - Pollution Control Equipment by BCE

Dust Collector - Pollution Control Equipment by BCE



Welcome to the BCE Store!

Dust Collector Replacement Parts and Filter Bags for ALL MODELS and Specialty / Custom Items Now Available ON LINE =




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2013-01-29



Structural Steel

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BCE designs, fabricates and installs structural steel for a variety of uses and industries. Our welders are certified and product top quality work. We can take a structural steel project from conception to completion providing any level of support required. We have licensed experienced structural engineers and draftsmen ready to work on your project.
  
 BCE Electrical Engineering

 BCE Electrical Engineering

BCE Electrical Engineering
















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2013-01-28

Electrostatic Precipitators



Electrostatic Precipitators

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BCE electrostatic precipitators (ESP) are air pollution control devices which remove particulates from the air by using a high-voltage electric current to impart a negative electrical charge to the dust, which is then attracted to, and deposited on, positively charged plates in the unit.  BCE has engineered and installed electrostatic precipitators for a variety of installations and performs maintenance on existing ESPs.
The plates of ESP are cleaned by periodic or continuous rapping. Dust falls into the hopper(s) and is removed by a pneumatic conveying system. ESP's are primarily used to remove fly ash in coal-fired power plants, but can be used to remove dust from any application, and have also found use in the cement, chemical and paper industries. Depending on the application, precipitators are designed for efficiencies between 90% and 99.9%. Increasing the power input generally increases the efficiency. Particles over 1 micron can be collected with high efficiency, particularly when dust resistivity is low. Efficiency drops off rapidly for extreme submicron particles due to Brownian motion, or random collisions of particulates with air molecules.
Dust resistivity is a major factor in collection efficiency. The higher the resistivity, the more difficult it is for a particle to transfer its electrical charge. When a switch to low sulfur coal was made, it was discovered that many ESP's no longer met emissions standards to the high resistivity of low sulfur coal. This resulted in larger units to achieve the required efficiency. To reduce resistivity, conditioning agents have been added to flue gases. Sulfur trioxide has been used successfully with basic dusts such as fly ash and ammonia works well with acidic dusts.
Where a high efficiency can be achieved, an ESP is an attractive alternative to a fabric dust collector. Some advantages are:
  • Operating temperatures up to 800°F
  • No compressed air required
  • Infrequent maintenance (no bags to replace)
  • Lower pressure drop, therefore less power required to convey air
BCE will be happy to analyze your application with you to see whether an electrostatic precipitator in lieu of a baghouse may be advantageous.


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2013-01-25

Wet Scrubbers



Wet Scrubbers

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A wet scrubber is an air cleaning device where a dust-laden air stream is brought into contact with a scrubbing liquid (generally water) and the fine particulates are captured by the liquid droplets and, hence, removed from the air. Dirty water exits the device, but the cleaned air will still retain a fine mist. Therefore, it is necessary for a wet scrubber to have a second stage, called a mist eliminator, to remove these fine droplets. Wet scrubbers can also be used to absorb noxious constituents from the gas, but the design criteria for gas absorption can be quite different from that for particulate removal.
BCE Low energy scrubbers are used to collect particles greater than 5 microns. An example of this type is a spray tower. This is a cylindrical vessel fitted with rows of water pipes to spray down on rising inlet air. To prevent droplets from being entrained with the rising air stream, the droplet size must be relatively large (500-1000 microns) compared to high-energy scrubbers and the air velocity must be low (1-4 ft/sec). The larger droplets reduce efficiency and the low air velocity makes this type scrubber larger than others at the same air volume. Other types of low-energy scrubbers are orifice scrubbers and dynamic wet precipitators.
BCE High-energy wet scrubbers are used to collect submicron particles. Two common designs of high-energy wet scrubbers are the venturi scrubber and the packed tower, both designed to provide effective contact of water droplets with the dust-laden inlet air.
The BCE Venturi Scrubber, as the name implies, contains a converging section, throat and diverging section. Dust-laden air enters at the top of the converging section and the scrubbing liquid is injected either at the entrance of the converging section or at the throat. As a result of the area reduction from the venturi entrance to the throat, the air reaches a high velocity where it strips the water from the scrubber wall, forming countless numbers of very small droplets, which capture the particles in the venturi throat. The mist eliminator of a BCE Venturi Scrubber is usually a cyclonic separator directly coupled to the scrubber.
The packed tower consists of a single cylindrical vessel where the inlet air and water contact each other countercurrently in a packed bed and the mist eliminator is in the top of the vessel to remove the fine droplets before the cleaned air exits through the top outlet. Packed beds are commonly used in a variety of applications where a large area of contact is necessary to promote intimate contact between gas and liquid phases.
The following are some advantages and uses of BCE Wet Scrubbers:
  • Can handle high-temperature gas streams
  • Low initial cost
  • Small space to install
  • Separates explosive solids from gas streams
  • Reduces temperature of exhaust stream
  • Capable of high collection efficiency


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2013-01-24

Thermal Oxidizers



Thermal Oxidizers

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BCE thermal oxidizers are necessary when the processed air contains small, combustible particulates, these BCE thermal oxidizers may be used as a method of air pollution control. The idea of using a thermal oxidizer is to reduce toxic, explosive, or otherwise dangerous, pollutants to simpler, non-toxic substances by subjecting the pollutants to very high temperatures where the chemical bonds are broken. The decomposed material may then be released safely to the atmosphere.  BCE prides itself on creating optimum clean air solutions for you and your project.
BCE Dust Collection SystemsBCE thermal oxidizers may be classified as follows:
  • RegenerativeIn a regenerative thermal oxidizer (RTO), energy used in the oxidation process is recovered very efficiently by ceramic heat transfer beds coupled to the oxidation chamber. Thermal efficiency can be around 95% for this type of oxidizer. A disadvantage is the expense of replacing the ceramic media in case of plugging. Also RTO's often run at higher pressure drops than recuperative oxidizers.
     
  • RecuperativeIn a recuperative thermal oxidizer, heat from oxidation is passed through a heat exchanger which in turn heats the inlet air. Energy recovery for this type is roughly 70%. Although the recuperative oxidizer costs less, the energy usage can be about six times that of an RTO, offsetting the savings over the long term.
     
  • CatalyticA catalytic recuperative thermal oxidizer uses a catalyst such as platinum or rhodium to allow decomposition at a much lower temperature, bringing the operating temperature of the unit down from 1400°F to about 650°F. This reduces the fuel usage to about a quarter of the recuperative thermal oxidizer, but is still higher than that for the RTO.
BCE is ready to discuss your application with you. We will provide initial and operating cost estimates for the different types of thermal oxidizers so you can be sure you are getting the right oxidizer for your specific needs.


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2013-01-23

Multiclones



Multiclones

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BCE Multiclones effectively remove large to moderate sized particles from air streams for recovery or disposal by means of centrifugal forces.
Air flows through the cylindrical tubes at high speeds creating centrifugal forces that cause the solid material to cling to the outer surface and continue a downward spiral separating out while clean air exits through the center.  
Multiclones may be used alone or in conjunction with another dust collector or after-filter device. BCE is highly experienced with multiclones, cyclones, and many other forms of dust collection and air filtration.
Feel free to contact us by phone, e-mail, or by using the contact form on our website.




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2013-01-22

Cyclone Dust Collectors



Cyclone Dust Collectors

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Centrifugal separators, or cyclones, are the most commonly used types of dust collection equipment. They are simple to manufacture, inexpensive and have no mechanical or pneumatic components and, unlike conventional baghouses, can operate at temperatures over 1000°F. Dust-laden air enters a cyclone tangentially. As the main vortex spirals downward, the coarser particles move to the wall, due to inertia, and are discharged through the hopper. An inner vortex forms in the cone and spirals upward and out of the cyclone, carrying finer particles with it. Cyclones are often used to remove larger particles from the air stream ahead of a baghouse in order to reduce the dust loading.
The major drawback of a cyclone is its low efficiency for respirable particulates (< 5 microns), although efficiency increases markedly at high dust concentrations and for agglomerating dusts. If the material is especially abrasive, the walls are subject to erosion, in which case abrasion-resistant construction, replaceable inlet scroll or a liner may be indicated. It should not be used for sticky dusts.
BCE offers single and multiple types of cyclone dust collectors. Multiple cyclone collectors include dual and quad as well as multiclones, which feature a large number of small cyclones operating in parallel with a common inlet and outlet.
BCE Cyclones















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2013-01-21

Industrial Ventilation



Industrial Ventilation

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2/22 - BCE Commercial Ventilation Systems

Our industrial ventilation systems are designed, fabricated, and installed by our expert engineers and technicians. We work with you to create the optimum solution for your application. Whether it is installing ventilation for industrial processes, laboratories, or commercial kitchens, BCE is your best bet.
BCE is proud to provide our clients with the best technology and services available. We also strive to save you money by completing projects on time and under budget. Take a look at our image galleries to see some examples from a few of our projects.

ENERGY EFFICIENCY
BCE commercial ventilation systems can use heat reclaimed from the air being extracted to heat the incoming clean air. This can reduce the load on the air conditioning system, saving you on energy costs.
INTEGRATION
BCE systems integrate:
  • Ventilation
  • Fire Supression
  • Filtration
  • Air processing
  • Heat Recovery
Let BCE engineers design and install the right solution for your system.  Our engineers have extensive experience with designing according to a variety of codes. We can custom design any system to your requirements in even the most demanding environments, such as those found in the petrochemical industry. Call us and we'll get started in making your project a reality.


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