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Features and Benefits of KC Cottrell’s Gas Suspension Absorber (GSA) Technology

The lime can be injected either as a slurry, through commercially available two-fluid nozzle atomizers, or as powdered calcium hydroxide. The intense recirculation within the reactor promotes efficient acid gas neutralization, resulting in high removal efficiencies at low lime consumption rates. The nozzles are commercially available and can be changed out on the fly, without impacting scrubbing efficiency. The use of the cyclone to capture and recycle solids from the reactor vessel greatly reduces the demand on the downstream particulate collector. The slim profile of the GSA reactor vessel itself minimizes plan area requirements, which are frequently at a premium in retrofit applications

Revision Date:  3/17/2014

Tags:  KC Green Holdings, KC Cottrell, Cyclone, Circulating Dry Scrubber, Gas Suspension Absorber, Screw Conveyor, Dry FGD, Air Quality, Module


Gas Suspension Absorber Technology for Multi-pollutant Control of Boiler Flue Gas Emissions

A recirculating bed dry scrubber technology capable of efficient acid gas control –SO2, HCl, and H2SO4. •Utilizes lime reagent either as dry hydrate or as lime slurry. •Coupled with ESP or FF for control of PMand PM-10 emissions. •Can incorporate ACI for control of Hg and dioxins/furans. •Emissions of HCl, PM, Hg below MACT requirements.

Revision Date:  3/17/2014

Tags:  KC Green Holdings, KC Cottrell, Circulating Dry Scrubber, Screw Conveyor, Dry FGD, Gas Suspension Absorber, Cyclone, Air Quality, Module


Gas Suspension Absorber / Description

One of the reasons for the high efficiency of the KC Cottrell GSA is that the reactor has been based on gas suspension technology. This means that a very large concentration of fly ash, dust particles and lime builds up inside the reactor. The concentration is normally 50 to 100 times as high as in a conventional reactor. The effect is further enhanced by the fact that lime, fly ash and by-products are recycled about 100 times in the KC Cottrell GSA system. A short erection period is achieved due to a modular design, offering enormous flexibility. Maintenance costs for the KC Cottrell GSA are extremely low compared to more conventional plants. One reason for this is the minimal wear and tear due to few moving parts and a very simple, uncomplicated and stationary nozzle.

Revision Date:  3/17/2014

Tags:  KC Green Holdings, KC Cottrell, Dry FGD, Screw Conveyor, Circulating Dry Scrubber, Cyclone, Gas Suspension Absorber, Module, Air Quality


Dry Scrubbing Webinar - Hot Topic Hour October 23, 2014

The Dry Scrubber Hot Topic Hour Webinar on October 23, 2014 contained valuable decisive classifications as well as little known facts and insights. This positive result was the work of some very experienced and knowledgeable individuals.

Revision Date:  10/23/2014

Tags:  221112 - Fossil Fuel 化石燃料, KC Cottrell, McIlvaine, P. Farber & Associates, LLC, BoldEco Environment, Longking, Dry FGD, Circulating Dry Scrubber, Spray Dryer, Dry Sorbent Injection, Incinerator, Byproduct


Gas Suspension Absorber by Mike Widico and Kevin Cosman, KC Cottrell - Hot Topic Hour October 23, 2014

Mike Widico and Kevin Cosman of KC Cottrell presented a number of positive features about their design. It is compact and even with the cyclone can be fitted into most power plants. Because of the cyclone to capture the calcium sulfate, the downstream precipitator is not contaminated by large quantities of high resistivity dust.

Revision Date:  10/23/2014

Tags:  221112 - Fossil Fuel 化石燃料, KC Cottrell, Dry FGD, Circulating Dry Scrubber, Incinerator


MATS Compliance Choices Webinar - Hot Topic Hour January 29, 2015

Speakers at the Hot Topic Hour provided recent data which shows that improved activated carbon and absorbents will allow plants to meet MATS emission limits with lower amounts of consumables.

Revision Date:  1/29/2015

Tags:  221112 - Fossil Fuel 化石燃料, Lhoist, McIlvaine, Calgon Carbon, KC Cottrell, Activated Carbon, Dry Sorbent Injection, Precipitator, Fabric Filter, MATS, Mercury Removal, HCl, SO2, Particulate