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A microbial driver of clay mineral weathering and bioavailable Fe source under low-temperature conditions

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dc.contributor.author정재우-
dc.contributor.authorChung, Hyun Young-
dc.contributor.author고영탁-
dc.contributor.author문인경-
dc.contributor.author서연지-
dc.contributor.authorKim, Kitae-
dc.date.accessioned2022-09-20T16:36:43Z-
dc.date.available2022-09-20T16:36:43Z-
dc.date.issued2022-
dc.identifier.urihttps://repository.kopri.re.kr/handle/201206/13863-
dc.description.abstractBiotic and abiotic Fe(III) reduction of clay minerals under low temperature (0 °C and 4 °C, pH 6) was studied to evaluate the effects of bioalteration on soil properties including clay structure and elemental composition. The extent of Fe reduction in bioreduced samples (~3.8 % at 4 °C and ~3.1 % at 0 °C) was lower than abiotic reduction (~7.6 %) using dithionite as a strong reductant. However, variations in the illite crystallinity value of bioreduced samples (°Δ2θ = 0.580?0.625) were greater than those of abiotic reduced samples (°Δ2θ = 0.580?0.601), indicating that modification of crystal structure is unlikely to have occurred in abiotic reduction. Moreover, precipitation of secondary-phase minerals such as vivianite (Fe2+3(PO4)2·8H2O) and nano-sized biogenic silica were shown as evidence of reductive dissolution of Fe-bearing minerals that is observed only in a bioreduced setting. Our observation of a previously undescribed microbe?mineral interaction at low temperature suggests a significant implication for the microbially mediated mineral alteration in Arctic permafrost, deep sea sediments, and glaciated systems resulting in the release of bioavailable Fe with an impact on low-temperature biogeochemical cycles.-
dc.languageEnglish-
dc.subject.classificationKing Sejong Station-
dc.titleA microbial driver of clay mineral weathering and bioavailable Fe source under low-temperature conditions-
dc.title.alternative저온 조건에서 점토 광물의 생지화학적 풍화작용 연구-
dc.typeArticle-
dc.identifier.bibliographicCitation정재우, et al. 2022. "A microbial driver of clay mineral weathering and bioavailable Fe source under low-temperature conditions". <em>FRONTIERS IN MICROBIOLOGY</em>, 13(1): 1-10.-
dc.citation.titleFRONTIERS IN MICROBIOLOGY-
dc.citation.volume13-
dc.citation.number1-
dc.identifier.doi10.3389/fmicb.2022.980078-
dc.citation.startPage1-
dc.citation.endPage10-
dc.description.articleClassificationSCIE-
dc.description.jcrRateJCR 2020:20.588-
dc.subject.keywordice biogeochemistry-
dc.subject.keywordillite-
dc.subject.keywordiron bioavailability-
dc.subject.keywordiron reduction-
dc.subject.keywordmineral weathering-
dc.identifier.localId2022-0163-
Appears in Collections  
2022-2022, Investigation of ice microstructure properties for developing low-temperature purification and environment/energy materials (22-22) / Kim, Kitae (PE22120)
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