The Mechanism of Arsenic Release in Contaminated Paddy Soil with Added Biochar: The Role of Dissolved Organic Matter, Fe, and Bacteria. [PDF]
Fan J, Liao M, Duan T, Hu Y, Sun J.
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Classification of <i>Nostoc</i>-like cyanobacteria isolated from paddy soil into <i>Aliinostoc</i>, <i>Aulosira</i>, and <i>Desmonostoc</i>. [PDF]
Pham HTL +7 more
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Unveiling six novel bacterial strains for fipronil and thiobencarb biodegradation: efficacy, metabolic pathways, and bioaugmentation potential in paddy soil. [PDF]
Faridy N +4 more
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Nitrous oxide is the main product during nitrate reduction by a novel lithoautotrophic iron(II)-oxidizing culture from an organic-rich paddy soil. [PDF]
Grimm H +7 more
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Ferrihydrite-mediated methanotrophic nitrogen fixation in paddy soil under hypoxia. [PDF]
Yu L +8 more
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Niche differentiation and biogeography of Bathyarchaeia in paddy soil ecosystems: a case study in eastern China. [PDF]
Yi X +7 more
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Biodiversity of network modules drives ecosystem functioning in biochar-amended paddy soil. [PDF]
Xiao Y +5 more
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Influences of the Integrated Rice-Crayfish Farming System with Different Stocking Densities on the Paddy Soil Microbiomes. [PDF]
Hou Y, Jia R, Sun W, Li B, Zhu J.
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Unveiling the driving role of pH on community stability and function during lignocellulose degradation in paddy soil. [PDF]
Wang Y +6 more
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Tartrate fermentation with H2 production by a new member of Sporomusaceae enriched from rice paddy soil. [PDF]
Pereira-Mora L +3 more
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