Targeting oxidation sites on boreal acid sulfate soil macropore surfaces mitigates acid and metal release to recipient water streams
Julkaisuvuosi
2023
Tekijät
Högfors-Rönnholm, Eva; Stén, Pekka; Christel, Stephan; Fröjdö, Sören; Lillhonga, Tom; Nowak, Paweł; Österholm, Peter; Dopson, Mark; Engblom, Sten
Abstrakti:
<p>When reduced sulfidic parent sediments are oxidized, they become acid sulfate soils and discharge metal laden acidic solutions that can damage the environment, infrastructure, and human health. Consequently, methods to mitigate the effect of acid sulfate soils are a priority in affected areas. In this study, acid sulfate soil core samples, consisting of a natural network of preferential-flow soil macropores with defined macropore surfaces and inner cores of denser clay, were characterized and subjected to treatments with calcium carbonate and peat suspensions, or combinations thereof. The effects on the geochemistry and microbial communities were examined on both macropore surfaces and in inner cores. Although transport of treatment substances into the inner cores was demonstrated, no substantial effects were found on the geochemistry and microbial community that consisted of bacterial taxa commonly identified in acid mine drainage. In contrast, positive treatment effects were clearly detected on macropore surfaces and the most promising mitigation effects were detected for treatments combining calcium carbonate and peat suspensions. These treatments increased the pH of the macropore surfaces, added an electron donor in the form of peat, and significantly decreased the relative abundance of acidophilic bacterial populations while shifting the microbial community towards species typically growing at circumneutral pH values. These new environmental conditions were favorable for iron reduction that resulted in a positive effect on permeate quality. The study presents novel data regarding the important differences between acid sulfate soil macropore surfaces and inner cores, as well as their diverse biogeochemical characteristics. It further establishes that the major oxidation-reduction processes occur at the macropore surfaces, and that the combination treatment was the most effective at mitigating the negative environmental effects.</p>
Näytä enemmänOrganisaatiot ja tekijät
Vaasan ammattikorkeakoulu
Stén Pekka Matti Pellervo
Julkaisutyyppi
Julkaisumuoto
Artikkeli
Emojulkaisun tyyppi
Lehti
Artikkelin tyyppi
Alkuperäisartikkeli:
Yleisö
TieteellinenVertaisarvioitu
VertaisarvioituOKM:n julkaisutyyppiluokitus
A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessäJulkaisukanavan tiedot
Lehti/Sarja
Kustantaja
Volyymi
158
Artikkelinumero
105779
ISSN
Julkaisufoorumi
Julkaisufoorumitaso
1
Avoin saatavuus
Avoin saatavuus kustantajan palvelussa
Kyllä
Julkaisukanavan avoin saatavuus
Osittain avoin julkaisukanava
Rinnakkaistallennettu
Kyllä
Muut tiedot
Tieteenalat
Geotieteet; Ympäristötiede
Avainsanat
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Kustantajan kansainvälisyys
Kansainvälinen
Kieli
englanti
Kansainvälinen yhteisjulkaisu
Kyllä
Yhteisjulkaisu yrityksen kanssa
Ei
DOI
10.1016/j.apgeochem.2023.105779
Julkaisu kuuluu opetus- ja kulttuuriministeriön tiedonkeruuseen
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