Publication:
Adsorption of hydrogen sulfide (H2s) from municipal solid waste by using biochars

cris.author.scopus-author-id 57189071410
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cris.virtual.department Universiti Malaysia Perlis
cris.virtual.department Universiti Malaysia Perlis
cris.virtual.department Universiti Malaysia Perlis
cris.virtual.department Universiti Malaysia Perlis
cris.virtualsource.department 792ec5af-13db-4e28-a57c-d12b7fb78080
cris.virtualsource.department ec49013f-e89a-4095-94ed-30a940ebfacc
cris.virtualsource.department 9dd82b68-7351-4dfb-885a-53bcac028f94
cris.virtualsource.department da0c2c83-c033-4a44-82a3-2ce9580a3e5b
dc.contributor.author Tengku Nuraiti Tengku Izhar
dc.contributor.author Kee G.Z.
dc.contributor.author Farah Naemah Mohd Saad
dc.contributor.author Shayfull Zamree Abd. Rahim
dc.contributor.author Irnis Azura Zakaria
dc.contributor.author Che Besom
dc.contributor.author Ibad M.
dc.contributor.author Syafiuddin A.
dc.date.accessioned 2024-09-30T03:31:16Z
dc.date.available 2024-09-30T03:31:16Z
dc.date.issued 2022-12-15
dc.description.abstract The emission of hydrogen sulfide (H2 S) from municipal solid waste is one of the environmental issues that raised the public’s attention and awareness. Exposure to H2 S that brings a foul smell of rotten eggs will cause headaches, irritation, dizziness, fatigue, and even death if the concentration of H2 S is too high. The study’s goals are to investigate the properties of biochars made from rice hulls, banana peels, and sawdust; to compare the biochars’ physical and chemical properties; and establish the H2 S removal efficiency of the three biochars. Biochars derived from rice hull (RHB-500), banana peel (BPB-550), and sawdust (SDB-500) by pyrolysis were used as the adsorbents. The biochar yield, pH, ash content, surface functional group, and morphology of the biochars produced were investigated. In this study, H2 S was synthesized by mixing food waste and soil in the experimental column. The H2S produced was reduced by the adsorption method. The removal efficiencies of H2 S for each biochar were determined by allowing the synthetic H2 S to flow through the two columns that were packed with sand (act as control) and biochars, respectively. All biochars were alkaline, and BPB-550 had the highest pH, followed by SDB-500 and finally RHB-500. The order for removal efficiency of H2 S (>94%) is BPB-550 > SDB-500 > RHB-500. Overall, the biochars derived from biomass had a strong ability to act as the adsorbents for H2S removal.
dc.identifier.doi 10.33263/BRIAC126.80578069
dc.identifier.scopus 2-s2.0-85121110181
dc.identifier.uri https://hdl.handle.net/20.500.14170/6372
dc.language.iso en
dc.relation.funding Universiti Malaysia Perlis
dc.relation.grantno -9001-00624
dc.relation.ispartof Biointerface Research in Applied Chemistry
dc.relation.ispartofseries Biointerface Research in Applied Chemistry
dc.rights open access
dc.subject Adsorption | Biochars | Environmental protection | Hydrogen sulfide | Municipal waste
dc.title Adsorption of hydrogen sulfide (H2s) from municipal solid waste by using biochars
dc.type Journal
dspace.entity.type Publication
oaire.citation.endPage 8069
oaire.citation.issue 6
oaire.citation.startPage 8057
oaire.citation.volume 12
oairecerif.affiliation.orgunit Universiti Malaysia Perlis
oairecerif.affiliation.orgunit Universiti Malaysia Perlis
oairecerif.affiliation.orgunit Universiti Malaysia Perlis
oairecerif.affiliation.orgunit Universiti Malaysia Perlis
oairecerif.affiliation.orgunit Universiti Malaysia Perlis
oairecerif.affiliation.orgunit E-Idaman Sdn.Bhd. Wisma Idaman
oairecerif.affiliation.orgunit Universitas Nahdlatul Ulama Surabaya
oairecerif.affiliation.orgunit Universitas Nahdlatul Ulama Surabaya
oairecerif.author.affiliation Universiti Malaysia Perlis
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oairecerif.author.affiliation Universiti Malaysia Perlis
oairecerif.author.affiliation Universiti Malaysia Perlis
oairecerif.author.affiliation Universiti Malaysia Perlis
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