Proof of concept testing of an integrated dry injection system for SO2/NOx control
Description
The objective of the subscale test program were designed to provide sorbent and additive selection guidance, and, in so doing, supply answers to the questions posed in the preceding section. The objectives are: Identify the best commercial hydrate sorbent and the best enhanced hydrate sorbent from a list of nine types, based upon S0{sub 2} removal at Ca/S=2. Determine the relative effectiveness of sodium sesquicarbonate versus sodium bicarbonate for S0{sub 2} and NO{sub x} control over the temperature range of 200{degrees}F--400{degrees}F. Identify the best NO{sub 2} suppressing additive among the group of ammonia, urea, and activated carbon.
Physical Description
17 pages
Creation Information
Helfritch, D.J.; Bortz, S.J. (Research-Cottrell, Inc., Somerville, NJ (United States)) & Beittel, R. (Riley Stoker Corp., Worcester, MA (United States)) January 1, 1991.
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- United States. Department of Energy. DOE; USDOE, Washington, DC (United States)
Publisher
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Research-Cottrell, Inc., Somerville, NJ (United States)
Place of Publication: United States
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Description
The objective of the subscale test program were designed to provide sorbent and additive selection guidance, and, in so doing, supply answers to the questions posed in the preceding section. The objectives are: Identify the best commercial hydrate sorbent and the best enhanced hydrate sorbent from a list of nine types, based upon S0{sub 2} removal at Ca/S=2. Determine the relative effectiveness of sodium sesquicarbonate versus sodium bicarbonate for S0{sub 2} and NO{sub x} control over the temperature range of 200{degrees}F--400{degrees}F. Identify the best NO{sub 2} suppressing additive among the group of ammonia, urea, and activated carbon.
Physical Description
17 pages
Notes
OSTI; NTIS; GPO Dep.
Subjects
Keywords
- Activated Carbon
- Adsorbents
- Air Pollution Control
- Alkali Metal Compounds
- Alkaline Earth Metal Compounds
- Amides
- Ammonia
- Calcium Compounds
- Calcium Hydroxides
- Carbon
- Carbon Compounds
- Carbonates
- Carbonic Acid Derivatives
- Chalcogenides
- Chemical Reactions
- Control
- Denitrification
- Desulfurization
- Document Types
- Electrostatic Precipitators
- Elements
- Equipment
- Flue Gas
- Gaseous Wastes
- Heat Exchangers
- Humidifiers
- Hydrates
- Hydrides
- Hydrogen Compounds
- Hydroxides
- Nitrogen Compounds
- Nitrogen Hydrides
- Nitrogen Oxides
- Nonmetals
- Organic Compounds
- Organic Nitrogen Compounds
- Oxides
- Oxygen Compounds
- Parametric Analysis
- Pollution Control
- Pollution Control Equipment
- Progress Report
- Sodium Carbonates
- Sodium Compounds
- Sorbent Injection Processes
- Sorptive Properties
- Sulfur Compounds
- Sulfur Dioxide
- Sulfur Oxides
- Surface Properties
- Urea
- Wastes 010800* -- Coal, Lignite, & Peat-- Waste Management
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- Other: DE92016150
- Report No.: DOE/PC/88890-T7
- Grant Number: AC22-88PC88890
- Digital Object Identifier: https://doi.org/10.2172/5062175
- Office of Scientific & Technical Information Report Number: 5062175
- Archival Resource Key: ark:/67531/metadc1052092
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Creation Date
- January 1, 1991
Added to The UNT Digital Library
- Jan. 22, 2018, 7:23 a.m.
Description Last Updated
- May 8, 2019, 12:21 p.m.
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Helfritch, D.J.; Bortz, S.J. (Research-Cottrell, Inc., Somerville, NJ (United States)) & Beittel, R. (Riley Stoker Corp., Worcester, MA (United States)). Proof of concept testing of an integrated dry injection system for SO2/NOx control, report, January 1, 1991; United States. (https://digital.library.unt.edu/ark:/67531/metadc1052092/: accessed July 16, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT Libraries Government Documents Department.