Treatment of reduced sulphur compounds and SO2 by Gas Phase Advanced Oxidation
Autor: | Sigurd Christiansen, Jonas L. Ingemar, Anders Brostrøm Bluhme, Carl Meusinger, Matthew S. Johnson, Anders Feilberg, Christina Andersen |
---|---|
Rok vydání: | 2017 |
Předmět: |
Pollutant
Wet scrubber 010504 meteorology & atmospheric sciences Chemistry General Chemical Engineering Mixing (process engineering) chemistry.chemical_element General Chemistry 010501 environmental sciences Particulates 01 natural sciences Sulfur Redox Industrial and Manufacturing Engineering Volumetric flow rate Atmospheric chemistry Environmental chemistry Environmental Chemistry 0105 earth and related environmental sciences |
Zdroj: | Meusinger, C, Bluhme, A B, L. Ingemar, J, Feilberg, A, Christiansen, S, Andersen, C & Johnson, M S 2017, ' Treatment of reduced sulphur compounds and SO2 by Gas Phase Advanced Oxidation ', Chemical Engineering Journal, vol. 307, pp. 427-434 . https://doi.org/10.1016/j.cej.2016.08.092 |
ISSN: | 1385-8947 |
DOI: | 10.1016/j.cej.2016.08.092 |
Popis: | Reduced sulphur compounds (RSCs) emitted from pig farms are a major problem for agriculture, due to their health and environmental impacts and foul odour. This study investigates the removal of RSCs, including H2S, and their oxidation product SO2 using Gas Phase Advanced Oxidation (GPAO). GPAO is a novel air cleaning technique which utilises accelerated atmospheric chemistry to oxidise pollutants before removing their oxidation products as particles. Removal efficiencies of 24.5% and 3.9% were found for 461 ppb of H2S and 714 ppb of SO2 in a laboratory system (volumetric flow Q = 75 m3/h). A numerical model of the reactor system was developed to explore the basic features of the system; its output was in fair agreement with the experiment. The model verified the role of OH radicals in initiating the oxidation chemistry. All sulphur removed from the gas phase was detected as particulate matter, assuming the observed particles were made of sulphuric acid. In a second set of experiments a range of RSCs at mixing ratios typically found in pig farms were treated using a larger industry-scale system (Q = 600–1200 m3/h) that included a wet scrubber. Removal efficiencies >90% were found for all compounds. The study demonstrates the ability of GPAO to control RSC emissions with a low energy input relative to many currently available techniques. |
Databáze: | OpenAIRE |
Externí odkaz: |