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Application and Development Trend of Flue Gas Desulfurization (FGD) Process: A Review
Contributor(s): Jamil, Irfan (Author), Jamil, Rehan (Author), Ming, Li (Author)
ISBN: 3656601399     ISBN-13: 9783656601395
Publisher: Grin Publishing
OUR PRICE:   $7.65  
Product Type: Paperback
Published: March 2014
* Not available - Not in print at this time *
Additional Information
BISAC Categories:
- Technology & Engineering | Industrial Technology
Physical Information: 0.04" H x 7" W x 10" (0.12 lbs) 20 pages
 
Descriptions, Reviews, Etc.
Publisher Description:
Research Paper (undergraduate) from the year 2013 in the subject Engineering - Chemical Engineering, grade: Master, course: Engineering, language: English, abstract: In 1927, the limestone desulfurization process was first applied in the Barthes and Bansside Power Plants (total 120MW) beside the Thames River in UK to protect high-rise building in London. Up to now, over 10 desulfurization processes have been launched and applied. Based on the desulfurizing agent being used, there include calcium process (limestone/lime), ammonia process, magnesium process, sodium process, alkali alumina process, copper oxide/zinc process, active carbon process, ammonium dihydrogen phosphate process, etc. The calcium process is commercially available and widely used in the world, i.e. more than 90%. Flue gas desulfurization processes, survey made by the coal research institute under the International Energy Agency shows that the wet-process desulfurization accounts for 85% of total installed capacity of flue gas desulfurization units across the world. The wet-process desulfurization is mainly applied in countries, like Japan (98%), USA (92%), Germany (90%), etc. The limestone-gypsum wet desulfurization process, the most mature technology, the most applications, the most reliable operation in the world, may have rate of desulfurization of more than 90%. Currently, the flue gas desulfurization technology used at thermal power plants at home and abroad tends to be higher rate of desulfurization, bigger installed capacity, more advanced technology, lower investment, less land acquisition, lower operation cost, higher level of automation, more excellent reliability, etc. This paper briefs current situations and trends of flue gas desulfurization technology also append short descript of different type of FDG and their category.