2023
DOI: 10.1002/ldr.4563
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Decades of weathering improves coal waste biogeochemical properties by altering dissolved organic matter and microbial communities: A case‐study of a coal waste pile

Abstract: The spatial heterogeneity of vegetation cover in coal waste pile suggests that the geochemical and biological properties of coal waste are spatially heterogeneous, which contributes to vegetation colonization on tailings. However, whether and how altering the organic matter components and microbial community of coal waste via weathering affects biogeochemical characteristics and vegetation establishment mechanisms remain unclear. Thus, we explored the characterization of dissolved organic matter in coal waste … Show more

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Cited by 5 publications
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“…The highly abundant ASV assigned to Ciliophora (Oxytrichidae family) observed at DB-D1 could also be a marker of freshwater or terrestrial input [ 152 ], but the limitation of our metabarcoding genetic assignation, based on generic (V4 18S rDNA) and not group-specific barcodes, does not allow us to certify it and to identify the species. Other taxa could be attributed to terrestrial organisms, such as some Methylomirabilota [ 153 , 154 ], the bacterial strains GAL15 [ 155 ], and RCP2-54 [ 156 ]. Unassigned fungi, bacteria and protists found at DB on Day 1 could also be of soil origin.…”
Section: Discussionmentioning
confidence: 99%
“…The highly abundant ASV assigned to Ciliophora (Oxytrichidae family) observed at DB-D1 could also be a marker of freshwater or terrestrial input [ 152 ], but the limitation of our metabarcoding genetic assignation, based on generic (V4 18S rDNA) and not group-specific barcodes, does not allow us to certify it and to identify the species. Other taxa could be attributed to terrestrial organisms, such as some Methylomirabilota [ 153 , 154 ], the bacterial strains GAL15 [ 155 ], and RCP2-54 [ 156 ]. Unassigned fungi, bacteria and protists found at DB on Day 1 could also be of soil origin.…”
Section: Discussionmentioning
confidence: 99%