- Title
- Mercury and SO₃ measurements on the fabric filter at the Callide oxy-fuel project during air and oxy-fuel firing transitions
- Creator
- Stanger, Rohan; Belo, Lawrence; Ting, Timothy; Spero, Chris; Wall, Terry
- Relation
- International Journal of Greenhouse Gas Control Vol. 47, Issue April 2016, p. 221-232
- Publisher Link
- http://dx.doi.org/10.1016/j.ijggc.2016.01.049
- Publisher
- Elsevier
- Resource Type
- journal article
- Date
- 2016
- Description
- The Callide Oxy-fuel Project is the world's largest operating oxy-fuel plant. This work details an experimental test campaign at the Callide Oxy-fuel Project monitoring mercury and SO₃ levels exiting the fabric filter during transitions between air and oxy firing conditions. The measurements were taken using two custom built probes; the first allowing combined collection of SO₃ and mercury over short time intervals; the second allowing on-line measurements of Hgtotal and Hg⁰ with SOₓ removal. Total mercury emissions in oxy-firing measured a maximum of 6–7 μg/m³ of which 89% was in oxidised form (Hg2+). The use of low NOₓ burners had an overriding influence on the mercury measurements reducing the total mercury levels to 0.13 and 0.15 μg/m³ (air, oxy respectively) with no Hg2+ being measured. The SO₃ concentrations were also lower than expected, estimated at ∼0.5–0.8 ppm (based on a practical estimate of 1% conversion of SO₂). Overall mercury capture in either operating mode was estimated at 92–93% for the existing burners and 98–99% with the low NOₓ burners used (being 2 of the 4 burners operating). Total SOₓ captured from the flue gas was 16% in oxy-mode and 19% in air firing. These findings suggest that operational conditions have a primary impact on capture of Hg and SOₓ during transitions with a secondary impact of firing mode (i.e. air or oxy).
- Subject
- oxy-fuel combustion; mercury; fabric filter; SOₓ
- Identifier
- http://hdl.handle.net/1959.13/1329238
- Identifier
- uon:26105
- Identifier
- ISSN:1750-5836
- Language
- eng
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