17 results on '"Fang, Yunying"'
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2. Potentials of emergent plant residue derived biochar to be alternative carbon-based phosphorus fertilizer by Fe(II)/Fe(III) magnetic modification
3. Pyrogenic organic matter decreases while fresh organic matter increases soil heterotrophic respiration through modifying microbial activity in a subtropical forest
4. Soil pH determines microbial utilization strategy for straw-derived hydrophilic and hydrophobic fractions in a Ferralsol
5. Biochar reduces colloidal phosphorus in leachate by regulating phoD- and phoC-harboring microbial communities during drying/rewetting cycles
6. Biochar more than stubble management affected carbon allocation and persistence in soil matrix: a 9-year temperate cropland trial
7. Biochar significantly reduced nutrient-induced positive priming in a subtropical forest soil
8. Mangrove restoration built soil organic carbon stocks over six decades: a chronosequence study
9. Biochars regulate bacterial community and their putative functions in the charosphere: a mesh-bag field study
10. Ameliorating alkaline dispersive subsoils with organic amendments: Are productivity responses due to nutrition or improved soil structure?
11. Intensive management of a bamboo forest significantly enhanced soil nutrient concentrations but decreased soil microbial biomass and enzyme activity: a long-term chronosequence study
12. Contributions of Asian dust to subtropical soils of Southeast China based on Nd isotope
13. Yak dung pat fragmentation decreases yield-scaled growing-season nitrous oxide emissions in an alpine steppe on the Qinghai-Tibetan Plateau
14. Rhizosphere microbiome modulated effects of biochar on ryegrass 15N uptake and rhizodeposited 13C allocation in soil
15. Correction to: Biochars regulate bacterial community and their putative functions in the charosphere: a mesh‑bag field study
16. Effects of crabs on greenhouse gas emissions, soil nutrients, and stoichiometry in a subtropical estuarine wetland
17. Nutrient stoichiometry and labile carbon content of organic amendments control microbial biomass and carbon-use efficiency in a poorly structured sodic-subsoil
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