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- W4296893348 abstract "This study was to investigate the effects of different aeration rates on phosphorus (P) conversion and bacterial community dynamics in P-enriched composting by 16S rRNA gene sequencing, sequential P fractionation, network analysis and structural equation model (SEM). Results indicated that Olsen P content increased by 138 %, 150 %, 121 % after composting with aeration rate (L kg-1 DM min-1) at 0.2 (AR0.2), 0.4 (AR0.4) and 0.6 (AR0.6). AR0.4 was more conducive to enhance P solubilization efficacy and available P accumulation. Redundancy analysis indicated Lactobacillus, Spartobacteria and Pseudomonas were key bacteria associated with HCl-Pi especially in AR0.2 and AR0.4. Network analysis showed that increased aeration rate enhanced the connection and function homoplasy among modules and AR0.4 had more orderly community organization for key bacteria to solubilize P in directly and indirectly biotic way. SEM suggested indirectly biotic P-solubilization had more contribution than directly biotic way mainly by phosphate-solubilizing bacteria." @default.
- W4296893348 created "2022-09-24" @default.
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- W4296893348 date "2022-11-01" @default.
- W4296893348 modified "2023-10-16" @default.
- W4296893348 title "Impact of aeration rate on phosphorus conversion and bacterial community dynamics in phosphorus-enriched composting" @default.
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- W4296893348 doi "https://doi.org/10.1016/j.biortech.2022.128016" @default.
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