Circulating Fluidized Bed Combustion
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The circulating fluidized bed (CFB) is a type of
Fluidized bed combustion Fluidized bed combustion (FBC) is a combustion technology used to burn solid fuels. In its most basic form, fuel particles are suspended in a hot, bubbling fluidity bed of ash and other particulate materials (sand, limestone etc.) through which ...
that utilizes a recirculating loop for even greater efficiency of combustion. while achieving lower emission of
pollutants A pollutant or novel entity is a substance or energy introduced into the environment that has undesired effects, or adversely affects the usefulness of a resource. These can be both naturally forming (i.e. minerals or extracted compounds like o ...
. Reports suggest that up to 95% of pollutants

Circulating Fluidized Bed Technology'', The Circulating Fluidized Bed Technology, 2010, Innovation and Information for sustainable living
can be absorbed before being emitted into the atmosphere. The technology is limited in scale however, due to its extensive use of
limestone Limestone ( calcium carbonate ) is a type of carbonate sedimentary rock which is the main source of the material lime. It is composed mostly of the minerals calcite and aragonite, which are different crystal forms of . Limestone forms whe ...
, and the fact that it produces waste byproducts.


Introduction

Fluidization Fluidization (or fluidisation) is a process similar to liquefaction whereby a granular material is converted from a static solid-like state to a dynamic fluid-like state. This process occurs when a fluid (liquid or gas) is passed up through the ...
is the phenomenon by which solid particles are transported into a fluid-like state through
suspension Suspension or suspended may refer to: Science and engineering * Suspension (topology), in mathematics * Suspension (dynamical systems), in mathematics * Suspension of a ring, in mathematics * Suspension (chemistry), small solid particles suspend ...
in a gas or liquid. The resultant mixing of gas and solids promotes rapid
heat transfer Heat transfer is a discipline of thermal engineering that concerns the generation, use, conversion, and exchange of thermal energy (heat) between physical systems. Heat transfer is classified into various mechanisms, such as thermal conduction, ...
and
chemical reactions A chemical reaction is a process that leads to the chemical transformation of one set of chemical substances to another. Classically, chemical reactions encompass changes that only involve the positions of electrons in the forming and breaking ...
within the bed. Power plants that use this technology are capable of burning low grade fuels at high efficiency and without the need for expensive fuel preparation. They are also smaller than the equivalent conventional furnace, so may offer significant advantages in terms of cost and flexibility. Circulating fluidized bed is a relatively new technology with the ability to achieve lower emission of pollutants. Extensive research has been conducted on this technology within the past 15 years due to increasing concerns over pollution caused by traditional methods of combusting
coal Coal is a combustible black or brownish-black sedimentary rock, formed as rock strata called coal seams. Coal is mostly carbon with variable amounts of other elements, chiefly hydrogen, sulfur, oxygen, and nitrogen. Coal is formed when dea ...
and its sustainability. The importance of this technology has grown recently because of tightened environmental regulations for pollutant emission. The Mercury and Air Toxic Standards (MATS) enacted in December 2011 in the United States by the
Environmental Protection Agency A biophysical environment is a biotic and abiotic surrounding of an organism or population, and consequently includes the factors that have an influence in their survival, development, and evolution. A biophysical environment can vary in scale f ...
have forced all the countries in
Europe Europe is a large peninsula conventionally considered a continent in its own right because of its great physical size and the weight of its history and traditions. Europe is also considered a Continent#Subcontinents, subcontinent of Eurasia ...
and America to strictly adhere to this policy. This means that emissions such as metals, acid gases,
organic compound In chemistry, organic compounds are generally any chemical compounds that contain carbon-hydrogen or carbon-carbon bonds. Due to carbon's ability to catenate (form chains with other carbon atoms), millions of organic compounds are known. The ...
, flue gas acids and other pollutants from power plants or industrial facilities have to meet the requirements set by EPA and upgrades have to be done for facilities that do not meet the standards. As a result, the demand for circulating fluidized bed technology is predicted to rise. In 1923, Winkler's coal
gasifier Gasification is a process that converts biomass- or fossil fuel-based carbonaceous materials into gases, including as the largest fractions: nitrogen (N2), carbon monoxide (CO), hydrogen (H2), and carbon dioxide (). This is achieved by reactin ...
represented the first significant large-scale industrial application of fluidized bed (Kunii and Levenspiel, 1991). CFB combustion technology continues to grow strongly in large utility power plant applications as CFB boiler technology has grown from small-scale industrial applications to large ultra-supercritical power plants in less than 20 years. Prime examples, both provided by
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SHI FW are the 460 MW supercritical CFB power plant operating since 2009 in Lagisza, Poland, and 2200 MW ultrasupercritical
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(Korea) Green Power Plant successfully running since 2016.


Fluidization regimes and classification

Fluidization is the phenomenon by which solid particles are transported into a fluid like state through suspension in a gas or liquid. In fact, there is a simple and precise way to classify the various fluid-particle beds (Winaya et al., 2003; Souza-Santos, 2004; Basu, 2006). Most of the CFB operating and environmental characteristics are the direct results of the
hydrodynamic In physics and engineering, fluid dynamics is a subdiscipline of fluid mechanics that describes the flow of fluids—liquids and gases. It has several subdisciplines, including ''aerodynamics'' (the study of air and other gases in motion) and ...
behaviour. Numerous researchers have studied the hydrodynamics of CFB (Yang, 1998; Basu, 2006; Rhodes, 2008; Scala, 2013). The fluidization is a function of several parameters such as the particles’ shape, size and density, velocity of the gas, beds' geometries etc. Kunii and Levenspiel (1991), Oka and Dekker (2004), and Souza-Santos (2004) defined the regimes of fluidization as described below: (a) ''Fixed Bed'': When the fluid is passed through the bottom of the bed at a low flow rate, the fluid merely percolates through the void spaces between stationary particles. (b) ''Minimum fluidization'': When the gas
velocity Velocity is the directional speed of an object in motion as an indication of its rate of change in position as observed from a particular frame of reference and as measured by a particular standard of time (e.g. northbound). Velocity is a ...
reaches (''Umf'') minimum fluidization velocity, and all the particles are just suspended by the upward flowing fluid. (c) ''Bubbling Fluid Bed'': When the flow rate increases beyond the minimum fluidization velocity, bed starts bubbling. The gas-solid system shows large instabilities with bubbling and gas channelling with rise in flow rate beyond minimum fluidization. Such a bed is called aggregative, heterogeneous, or bubbling fluidized. (d) ''Turbulent Fluidized Bed'': When the gas flow rate sufficiently increases, the
terminal velocity Terminal velocity is the maximum velocity (speed) attainable by an object as it falls through a fluid (air is the most common example). It occurs when the sum of the drag force (''Fd'') and the buoyancy is equal to the downward force of gravit ...
(''Utr'') of solids is exceeded, the upper surface of the bed disappears,
entrainment Entrainment may refer to: * Air entrainment, the intentional creation of tiny air bubbles in concrete * Brainwave entrainment, the practice of entraining one's brainwaves to a desired frequency * Entrainment (biomusicology), the synchronization o ...
becomes appreciable instead of bubbling, (e) ''Fast Fluidized Bed'': With further increasing in gas velocity, solids are carried out of the bed with the gas making a lean phase fluidized, this regime is used for operating CFB. In the present work, fast fluidized bed is used to operate the CFB where the pressure drop decreases dramatically in this regime. (f) ''Pneumatic Transport'': Beyond the circulating fluidized bed operating regime, there is the
pneumatic Pneumatics (from Greek ‘wind, breath’) is a branch of engineering that makes use of gas or pressurized air. Pneumatic systems used in Industrial sector, industry are commonly powered by compressed air or compressed inert gases. A central ...
transport region, pressure drop increases in this regime. An appreciated contribution by Geldart (1973) classified the particles based on size and density into four groups viz. C, A, B, and D. Group B (of particle size ''dp'' between 40–500 ''μm'' and density of ''ρs''<~1400 kg/m3) is commonly used for CFB. Yang modified Geldart's classification using
Archimedes number In viscous fluid dynamics, the Archimedes number (Ar), is a dimensionless number used to determine the motion of fluids due to density differences, named after the ancient Greek scientist and mathematician Archimedes. It is the ratio of gravitati ...
''Ar,'' under elevated pressure, temperature, and non-dimensional
density Density (volumetric mass density or specific mass) is the substance's mass per unit of volume. The symbol most often used for density is ''ρ'' (the lower case Greek letter rho), although the Latin letter ''D'' can also be used. Mathematical ...
(Yang, 2007). Pressure and Pressure Drop The flow in a CFB is multiphase. The unrecoverable pressure drop along the riser height is a basic value for design; and this results due to solid particles distribution, voidage, gas
viscosity The viscosity of a fluid is a measure of its resistance to deformation at a given rate. For liquids, it corresponds to the informal concept of "thickness": for example, syrup has a higher viscosity than water. Viscosity quantifies the inte ...
, gas velocity, gas
density Density (volumetric mass density or specific mass) is the substance's mass per unit of volume. The symbol most often used for density is ''ρ'' (the lower case Greek letter rho), although the Latin letter ''D'' can also be used. Mathematical ...
, and density of solid.


Basis of technology

During the combustion phase, upwards jets of air will cause the solid fuels to be suspended. This is to ensure the gas and solids will mix together turbulently for better heat transfer and chemical reactions. The fuel will be burnt at a temperature of 1400 °F (760 °C) to 1700 °F(926.7 °C) to prevent
nitrogen oxide Nitrogen oxide may refer to a binary compound of oxygen and nitrogen, or a mixture of such compounds: Charge-neutral *Nitric oxide (NO), nitrogen(II) oxide, or nitrogen monoxide *Nitrogen dioxide (), nitrogen(IV) oxide * Nitrogen trioxide (), or n ...
from forming. While burning, flue gas such as
sulfur dioxide Sulfur dioxide (IUPAC-recommended spelling) or sulphur dioxide (traditional Commonwealth English) is the chemical compound with the formula . It is a toxic gas responsible for the odor of burnt matches. It is released naturally by volcanic activ ...
will be released. At the same time, sulfur-absorbing chemical such as limestone or
dolomite Dolomite may refer to: *Dolomite (mineral), a carbonate mineral *Dolomite (rock), also known as dolostone, a sedimentary carbonate rock *Dolomite, Alabama, United States, an unincorporated community *Dolomite, California, United States, an unincor ...
will be used to mix with the fuel particles in the fluidization phase, which will absorb almost 95% of the sulfur pollutants. Alternatively, the sulfur absorbing chemical and fuel will be recycled to increase the efficiency of producing a higher quality steam as well as lower the emission of pollutants. Therefore, it will be possible to use circulating fluidized bed technology to burn fuel in a much more environmental friendly method as compared to other conventional processes.


Range of applications

Circulating fluidized bed technology can be implemented in many different fields ranging from oil and gas to power stations. This technology is highly sought after due to its numerous benefits. Some of the popular applications of circulating fluidized bed are circulating fluidized bed scrubber and circulating fluidized bed gasification system.


Circulating fluidized bed scrubber

One of the applications of a circulating fluidized bed scrubber is at power stations which utilize a dry sorbent usually Ca(OH)2 to reduce pollutants like HF, HCL, SO2 and SO3 in a flue gas stream. Currently, Basin Electric Power Cooperative are the only company operating the best available circulating fluidized bed scrubbing technology for a coal-fired boiler plant near
Gillette, Wyoming Gillette (, '' jih-LET'') is a city in and the county seat of Campbell County, Wyoming, United States. The town was founded in 1891 as a major railway town on the Chicago, Burlington and Quincy Railroad. The population was estimated at 32,030 a ...
since 2011.''Operating Experience of Circulating Fluidized Bed Scrubbing Technology in Utility Size Power Plants and Refineries'', Bonsel, 2007, Operating Experience of Circulating Fluidized Bed Scrubbing Technology in Utility Size Power Plants and Refineries, pp. 1 – 12— The three major components of the circulating fluidized bed scrubber in power plants are: * Circulating fluidized bed absorber * Fabric filter * Dry lime hydration system. In the circulating fluidized bed scrubber process, flue gas will enter the reactor from the bottom of the vessel. Simultaneously, hydrated lime will be injected into the circulating fluidized bed absorber for reaction to take place to convert SO2 and SO3 from the flue gas to
calcium sulfate Calcium sulfate (or calcium sulphate) is the inorganic compound with the formula CaSO4 and related hydrates. In the form of γ-anhydrite (the anhydrous form), it is used as a desiccant. One particular hydrate is better known as plaster of Pari ...
and
calcium sulfite Calcium sulfite, or calcium sulphite, is a chemical compound, the calcium salt of sulfite with the formula CaSO3·x(H2O). Two crystalline forms are known, the hemihydrate and the tetrahydrate, respectively CaSO3·½(H2O) and CaSO3·4(H2O). All fo ...
. Water will also be injected at the same time to control the operation temperature for maximum absorption capacity. The
flue gas Flue gas is the gas exiting to the atmosphere via a flue, which is a pipe or channel for conveying exhaust gases from a fireplace, oven, furnace, boiler or steam generator. Quite often, the flue gas refers to the combustion exhaust gas produc ...
will then send to the bag house for further filtration. In the bag house, a series of air valves across the filters, will produce
compressed air Compressed air is air kept under a pressure that is greater than atmospheric pressure. Compressed air is an important medium for transfer of energy in industrial processes, and is used for power tools such as air hammers, drills, wrenches, and o ...
bursts to ensure a more efficient solid and dust collection. Lastly, clean flue gas will then be directed to the stack with the minimum pollutants in the flue gas stream. The schematic diagram of the process is shown in Figure 1.


Circulating fluidized bed gasification system

Gasification Gasification is a process that converts biomass- or fossil fuel-based carbonaceous materials into gases, including as the largest fractions: nitrogen (N2), carbon monoxide (CO), hydrogen (H2), and carbon dioxide (). This is achieved by reacting ...
is the process of converting biodegradable waste materials into synthetic gas without combustion. This process is first used at the Gussing power plant in
Austria Austria, , bar, Östareich officially the Republic of Austria, is a country in the southern part of Central Europe, lying in the Eastern Alps. It is a federation of nine states, one of which is the capital, Vienna, the most populous ...
''The Importance of Fluid Bed Gasification Technology'', The Importance of Fluid Bed Gasification Technology. Foster Wheeler North America, pp. 1–9. based on the steam gasification of
biomass Biomass is plant-based material used as a fuel for heat or electricity production. It can be in the form of wood, wood residues, energy crops, agricultural residues, and waste from industry, farms, and households. Some people use the terms bi ...
in the internally circulating fluidized bed. In the gasification process, fuel will be gasified at 850 °C in the presence of steam to produce a
nitrogen Nitrogen is the chemical element with the symbol N and atomic number 7. Nitrogen is a nonmetal and the lightest member of group 15 of the periodic table, often called the pnictogens. It is a common element in the universe, estimated at se ...
-free and clean synthetic gas.
Charcoal Charcoal is a lightweight black carbon residue produced by strongly heating wood (or other animal and plant materials) in minimal oxygen to remove all water and volatile constituents. In the traditional version of this pyrolysis process, cal ...
will be burnt with air in the
combustion chamber A combustion chamber is part of an internal combustion engine in which the fuel/air mix is burned. For steam engines, the term has also been used for an extension of the firebox which is used to allow a more complete combustion process. Interna ...
to provide the heating for the gasification process as it is an
endothermic In thermochemistry, an endothermic process () is any thermodynamic process with an increase in the enthalpy (or internal energy ) of the system.Oxtoby, D. W; Gillis, H.P., Butler, L. J. (2015).''Principle of Modern Chemistry'', Brooks Cole. p. ...
process. Thermal transfer will take place between the gasification and combustion chamber. The illustrated gasification process is presented in Figure 2. The chemical reaction that takes place in the gasification as shown in equation and whereas the reaction in combustion chamber is represent in equation Gasification; C + H2O = CO + H2 C + CO2 = 2CO Combustion; C + O2 = CO2 Dolomite lime or limestone can also be used to increase the
hydrogen Hydrogen is the chemical element with the symbol H and atomic number 1. Hydrogen is the lightest element. At standard conditions hydrogen is a gas of diatomic molecules having the formula . It is colorless, odorless, tasteless, non-toxic, an ...
concentration by absorbing carbon dioxide to increase the combustion process.


Advantages and limitations

Wet flue gas
desulfurization Desulfurization or desulphurisation is a chemical process for the removal of sulfur from a material. This involves either the removal of sulfur from a molecule (''e.g.'' A=S → A:) or the removal of sulfur compounds from a mixture such as oil refin ...
(Wet FGD) has typically been used to capture the pollutants gas. However, this machinery is expensive, hard to maintain and takes a lot of space in power plant. Wet FGD uses lot of water, however only marginal metals like
mercury Mercury commonly refers to: * Mercury (planet), the nearest planet to the Sun * Mercury (element), a metallic chemical element with the symbol Hg * Mercury (mythology), a Roman god Mercury or The Mercury may also refer to: Companies * Merc ...
and acid gases such as HCl, HF, SO2 and SO3 can be captured. The use of CFB's and dry scrubbers in the
Virginia City Hybrid Energy Center The Virginia City Hybrid Energy Center (VCHEC) is a power station located in St. Paul, in Wise County, Virginia. It is operated by Dominion Virginia Power, Dominion Resources Inc.'s electric distribution company in Virginia. The 600 MW plant bega ...
allows it to capture up to 99.6% of the SO2 emitted. The new technology of circulating fluidized bed scrubber (CFBS) was introduced circa 1984. The
turbulator A turbulator is a device that turns a laminar boundary layer into a turbulent boundary layer. Device Turbulent flow can be desired on parts of the surface of an aircraft wing ( airfoil) or in industrial applications such as heat exchangers and ...
wall design will ensure a perfect mixing and the ability to capture various pollutants. The used of alloy metals had been replaced with a carbon steel design, reducing the installation cost. It also comes in a compact size thus the
capital costs Capital costs are fixed, one-time expenses incurred on the purchase of land, buildings, construction, and equipment used in the production of goods or in the rendering of services. In other words, it is the total cost needed to bring a project to a ...
could be reduced. The water usage can also be reduced with the design of plug-free water spray nozzles. The CFBS can undergo a self-cleaning process, reducing the cost of maintenance. The
operating temperature An operating temperature is the allowable temperature range of the local ambient environment at which an electrical or mechanical device operates. The device will operate effectively within a specified temperature range which varies based on the de ...
is lower thus the production of the nitrogen oxides, a contributor to smog, is lower.''Flue Gas Desulfurization Technology Evaluation Dry Lime vs Wet Limestone FGD'', Sargent and Lundy, 2007, Flue Gas Desulfurization Technology Evaluation Dry Lime vs Wet Limestone FGD, pp. 1–57 Despite of all the advantages, the CFBS is limited to 400 MW per unit. The limestone used in the CFBS is expensive and must be kept either in a concrete or steel silo rather than a pile Besides that, this machinery also produces a by-product, for instance CaCl that do not have many uses due to its properties. Another type of CFB is circulating fluidized bed gasification (CFBG), which is preferable to other type of gasifiers. CFBG has a high mass and heat transfer rate as well as high efficient gas-solid contacting. At low operating temperature of CFBG, a longer residence time of solid can be achieved leading to a higher gasification yield.''The Importance of Fluidized Bed Gasification Technology'', Robert Giglio and Mani Seshamani,2011, The Importance of Fluidized Bed Gasification Technology, pp. 1–9 CFBG process is more energy efficient as it is an endothermic process. Only the required heat will be generated to maintain the process at the optimum temperature. Practically, all the heat produced will be utilized throughout all the processes, as it is an adiabatic and isothermal process. Even though, the CFBG process is able to manage huge range of fuels, high gasification yield cannot be achieved for the fuels that are less reactive such as
anthracite Anthracite, also known as hard coal, and black coal, is a hard, compact variety of coal that has a submetallic luster. It has the highest carbon content, the fewest impurities, and the highest energy density of all types of coal and is the hig ...
and
pet coke Petroleum coke, abbreviated coke or petcoke, is a final carbon-rich solid material that derives from oil refining, and is one type of the group of fuels referred to as cokes. Petcoke is the coke that, in particular, derives from a final crackin ...
because of the low operating temperature. The flow is also multiphase complex and every distinct particles need to be scaled-up in a different way''A Review of Fluidized Bed Gasification Technology'', Todd Pugsley and Nader Mahinpey, 2010, A Review of Fluidized Bed Gasification Technology, pp. 1–24.


Available design

Nowadays, several designs have been invented for CFBS for example the CFBS developed by Clyde Bergemann Power Group namely circulating dry scrubbers (CDS). This type of CFBS consists of three distinct feedback control loops which are for temperature, pressure drop and sulphur dioxide emission.
Circulating Dry Scrubber Systems
'', Clyde Bergemann Power Group, 2013, Circulating Dry Scrubber Systems
In order to minimize erosion, its injection was designed to be above the venturi. Not only that, the CDS contains less moving parts compared to other type of CFBS. This design will lead to a lower maintenance cost. Major components of the CDS are shown in Figure 3. Similar to CFBS, there are several designs available with specific specification to fulfill various industrial demands. One of the types is the CFBG, developed by the Phoenix BioEnergy. This type of CFBG combines several technologies and implement the auger gasifier into one design. The large diameter of the
auger Auger may refer to: Engineering * Wood auger, a drill for making holes in wood (or in the ground) ** Auger bit, a drill bit * Auger conveyor, a device for moving material by means of a rotating helical flighting * Auger (platform), the world's f ...
will be placed horizontally on top of the fluidized bed. This configuration will increase the gasification efficiency, which will assist in the heat transfer over the suspended aggregate into the biofuel.''Gasification Innovation'', Phoenix BioEnergy LLC, 2013, Gasification Innovation, pp. 1–12. Full design of this CFBG is shown in Figure 4.


Main process characteristics

The circulating fluidized bed reactors have been widely used in various industrial processes such as gasification and coal combustion. Though the circulating fluidized beds are used widely, the CFD, which can be, describe by non-uniformity flow patterns and a thorough back mixing still possess significant radial gradients in the particle density and a lower solid holdup inside the riser interior compared to the wall of the reactor. These events will then result in low contact efficiency.''Distinctions between Low Density and High Density Circulating Fluidized Beds'', J. Zhu, H.T. Bi, 1995, Distinctions between low density and high density circulating fluidized beds, The Canadian Journal of Chemical Engineering 73, pp. 2108–2116 For the case of catalytic gas-phase reaction process, gas back mixing should be avoided thus the reacted product is the gas phase. Another characteristic of the circulating fluidized bed is, as it required promoting the small contact time of gas and solid
catalyst Catalysis () is the process of increasing the rate of a chemical reaction by adding a substance known as a catalyst (). Catalysts are not consumed in the reaction and remain unchanged after it. If the reaction is rapid and the catalyst recyc ...
and plug flow, a significant high gas velocity in the riser is needed. The significant high gas velocity in the riser is also desired to fulfill the necessity in the catalytic gas-phase reaction.


Design and operation

The circulating fluidized bed involves basically two balancing characteristics of the gas-solid system, which are the design and the operation characteristics. Design: Recirculating loop of particles occurred when entrained particles, which possess a substantial amount of
flux Flux describes any effect that appears to pass or travel (whether it actually moves or not) through a surface or substance. Flux is a concept in applied mathematics and vector calculus which has many applications to physics. For transport ph ...
, are separated efficiently and externally to the reactor from a giant core reactor (riser) from its carrying fluid and will then be circulated back to the bottommost of the riser. The carrying fluid will circulate around this loop only once however the particle will pass through several times before finally leaving the system''Handbook of Fluidization and Fluid Particle System'', J.R. Grace, H. Bi, M., 2003, Circulating Fluidized Beds, Handbook of Fluidization and Fluid Particle System, 2003, pp. 485–544. Operational: The system is usually operated under high particle flux and high superficial gas velocity, which are typically (10–1000 kg/m2s), and (2–12 m/s) respectively. This operational condition is chosen to avoid a distinct interface between the dilute region and the dense bed inside the riser. Thus gas velocities above the bubbling point is chosen for contacting. The standard operating conditions for the circulating fluidized bed can be seen in Table 1 below.


Process characteristics assessments

The circulating fluidized bed (CFB) uses high fluid velocity to provide better gas-solid contact by providing more intense mixing of the fluid so that better quality of product can be obtained. However, the high gas velocities and the recirculation of solids may make the CFB system much more expensive in term of power requirement and investment compared to conventional fluidized bed reactors. CFBs have been widely used in the field of solid catalyzed gas phase reactions in two situations below.''A Study of the Design of Fluidized Bed Reactors For Biomass Gasification'', Latif, 1999, A Study of the Design of Fluidized Bed Reactors For Biomass Gasification, Department of Chemical Engineer, University of London. # Continuous regeneration of catalyst, which deactivates rapidly. The solid is maintained in constant circulation where catalyst is continuously regenerated and return to the reactor. # Heat must be brought in or removed from a reactor. A continuous circulation of solids between vessels can efficiently transport heat from one vessel to another since solids have relatively large heat capacity compared to gases. One important factor of circulating systems is the ability to control the feed circulation rate. The feed circulation rate is controlled by the gas velocity in the bed which determines the flow regime and density of bed. All the circulating systems can be characterized either by the solid circulation rate, kg/s and the transfer ratio of the suspended materials being exchanged between vessels. For circulating fluidized bed in coal combustion, the beds need to use a greater fluidizing speed, so the particles will remain constant in the flue gases, before moving across the combustion chamber and into the cyclone. During combustion, a dense bed is required to mix the fuel even though the solids are dispersed evenly all over the unit. The bigger particles are extracted and returned to combustion chamber for further process, which required relatively longer particle residence time. If the total carbon conversion efficiencies gets over 98% it shows good separation process that leaves simply a minor proportion of unburned char in the residues.'' Circulating Fluidized Bed Combustion (CFBC) at Atmospheric Pressure '', Circulating fluidized bed combustion (CFBC) at atmospheric pressure, 2010. During the whole process, the operating conditions are relatively uniform for the combustor.


Possible design heuristics

In designing a circulating fluidized bed, with constant temperature distribution for either endothermic or
exothermic In thermodynamics, an exothermic process () is a thermodynamic process or reaction that releases energy from the system to its surroundings, usually in the form of heat, but also in a form of light (e.g. a spark, flame, or flash), electricity (e ...
reactions, in order to determine the appropriate design for cooling or heating of the circulating fluidized bed reactors, a good approximation of heat transfer rates are necessary for better control so that the reactor can change its performance for different operating conditions.''World's Largest Circulating Fluidized Bed Boiler Begins Commercial Operation'', Giglio, 2009, World's Largest Circulating Fluidized Bed Boiler Begins Commercial Operation, Business and Technology for the Global Generation Industry, Electric Power For highly exothermic reactor, it is recommended to keep the conversion of material low and recycle any possible cooled
reactants In chemistry, a reagent ( ) or analytical reagent is a substance or compound added to a system to cause a chemical reaction, or test if one occurs. The terms ''reactant'' and ''reagent'' are often used interchangeably, but reactant specifies a ...
. It is also recommended to separate the components in order of decreasing percentage of material in feed. This will help in reducing the cost of maintenance for the next separation process. In many industrial processes that involved small, porous or light particle which have to be fluidized with more
viscous The viscosity of a fluid is a measure of its resistance to deformation at a given rate. For liquids, it corresponds to the informal concept of "thickness": for example, syrup has a higher viscosity than water. Viscosity quantifies the inter ...
fluid in the present of gas, a gas–liquid–solid circulating fluidized bed (GLSCFB) is more preferred compared to conventional system because it can minimize dead zone and increase the contacting efficiency among gas, liquid and solid phases by improving the shear stress between those phases. Gas–liquid–solid circulating fluidized bed also can provide higher gas holdup, produce more uniform bubble size, better interphase contact, and good heat and mass transfer capabilities. The flexibility of using GLSCFB allows the fluidized bed to operate at much more higher liquid velocity than the minimum fluidization velocity which in turn increase the fractional conversion as well as production efficiency per unit cross-sectional area of the bed. Moreover, the deactivated catalyst used in the GLSCFB can be regenerated continuously by using the circulating fluidized bed which in turn reduced the operating cost for replacing the catalyst frequently. As for circulating fluidized bed scrubbers (CFBS), it is more preferred in industry due to its ability to produce higher purity product while avoiding the
corrosion Corrosion is a natural process that converts a refined metal into a more chemically stable oxide. It is the gradual deterioration of materials (usually a metal) by chemical or electrochemical reaction with their environment. Corrosion engine ...
issue. The CFBS also preferred because it requires low installation cost, high capture of metals, low maintenance required, wide fuel sulphur flexibility and fast response to cope with changes in operating condition.''High Efficiency Circulating Fluidized Scrubber'', Rolf Graf, 2011, High Efficiency Circulating Fluidized Scrubber, pp. 1–16. Some modification is necessary at the inlet in order to eliminate loss of solids materials at the bottom of bed during low-load operation. For better quality of product, it is advisable to purify the feed stream if it is difficult to separate between the impurity and the desired product if it is present in large amount. This will enable the fluidized bed to operate at full capacity range in a stable manner. Every CFBS need to have larger boilers that are connected to several cyclones in parallel as to remove the solids for recirculation. CFBS also need to have heat recovery unit as some of the heat from the bottom ash can be recovered as it is more economically feasible in term of lowering the operating cost. Ash coolers are prone to foul the bed while the heat transfer tubes in fluidized bed are prone to erosion can be removed by the use of some fluidizing air.


New development

More new clean technology has to be implemented to maintain the sustainability of the earth. Bigger reactors, with lower pollutants emission, have to be developed to meet the global demand. One of the best clean technologies to be used is the circulating fluidized bed technology .


In-bed heat exchanger

Another major field that is currently being looked into is the further development of in-bed heat exchanger used with circulating fluidized bed technology. With this design, the bed materials fill the in-bed heat exchanger through the open top of the circulating fluidized bed furnace, which enables the control of materials through the in-bed heat exchanger.''Fluid Bed Scrubber'', M. Maryamchik, 2012, Operating Experience and New Developments. Power Generation Group. Ohio, USA By being able to control the materials throughput rate, better control of heat absorption as well as bed temperature in the furnace is achievable. With further development in this field, we will be able to fully utilize the energy required to drive the furnace with minimum energy wastage.


U-beam separator design

The U-beam separator design has been improved for better efficiency, reliability as well as maintainability and it is now in the 4th generation of its design as shown in Figure 6. Improved design has brought numerous benefits to the circulating fluidized bed technology. Some of the benefits are as follows: * High solids collection efficiency * Controlled furnace temperature * Low auxiliary power * Smaller footprint * Minimal refractory use * Low maintenance


References

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External links


CFB Boiler Process Video
Industrial furnaces Fluidization