Low-cost filter media for removal of hydrogen sulphide from piggery biogas

Article


Skerman, A. G., Heubeck, S., Batstone, D. J. and Tait, S.. 2017. "Low-cost filter media for removal of hydrogen sulphide from piggery biogas." Process Safety and Environmental Protection. 105, pp. 117-126. https://doi.org/10.1016/j.psep.2016.11.001
Article Title

Low-cost filter media for removal of hydrogen sulphide from piggery biogas

ERA Journal ID3920
Article CategoryArticle
AuthorsSkerman, A. G. (Author), Heubeck, S. (Author), Batstone, D. J. (Author) and Tait, S. (Author)
Journal TitleProcess Safety and Environmental Protection
Journal Citation105, pp. 117-126
Number of Pages10
Year2017
PublisherElsevier
Place of PublicationEngland
ISSN0957-5820
1744-3598
Digital Object Identifier (DOI)https://doi.org/10.1016/j.psep.2016.11.001
Web Address (URL)https://www.sciencedirect.com/science/article/abs/pii/S095758201630266X
Abstract

The presence of elevated concentrations of hydrogen sulphide (H2S) in piggery biogas is problematic due to its corrosiveness and toxicity. At small scale, the cost of using iron or carbon-based commercial filter media to remove H2S can act as a barrier to the uptake of on-farm biogas technology. To identify cost-effective, alternative options, this study tested and compared H2S removal by the commercial iron-oxide H2S scavenger (cg5) with the alternative solid media: granulated steel furnace slag (GSFS), red soil, compost, composted beef feedlot manure, granular activated carbon (GAC) and biochar. Experiments measured single-pass H2S removal from a pre-humidified standard gas (2000 ppm H2S in nitrogen) onto solid media contained in a cylindrical plastic column (DN 25 mm, depth 110–147 mm). The commercial medium (cg5) performed considerably better than the other media, achieving sulphur removal of 143 g S/kg medium at breakthrough (>10 ppm outlet H2S). A red soil was the most promising alternative medium (2–12 g S/kg medium at breakthrough). The crystalline structure of the iron-oxide minerals appeared to strongly influence the H2S removal capacity of the red soils, and pressure drop was generally high. Bulking with ground sugarcane mulch (SCM) was effective at reducing pressure drop. Interestingly, H2S removal with red soil improved when the soil was regenerated by exposure to air, followed by reuse in the column. Overall, red soil may be a suitable low-cost option, especially for polishing biogas after initial biological H2S removal.

Keywordsbiogas, hydrogen sulphide, iron-oxide, pig, swine, manure
ANZSRC Field of Research 2020401102. Environmentally sustainable engineering
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Byline AffiliationsDepartment of Agriculture and Fisheries, Queensland
National Institute of Water and Atmospheric Research, New Zealand
University of Queensland
Institution of OriginUniversity of Southern Queensland
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