56 results on '"Duan, Pengpeng"'
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2. Lithology-driven soil properties control of N2O production by ammonia oxidizers in subtropical forest soils
3. Lithologic control of priming effect in subtropical forest
4. Mechanistic insights into mitigating N2O emissions by the nitrification inhibitor dicyandiamide (DCD) in a tropical sandy soil after six years of manure amendment
5. Tuning High- and Low-Temperature Rheological Properties of Warm-Mixing Asphalt Composites by Functionalized Waxes
6. From Trash to Treasure: Turing Waste Polyethylene into Catalytic-Cracked Wax and Carbon Nanotubes for Enhancing Properties of Asphalt Composites
7. Responses of soil nitrogen and carbon mineralization rates to fertilization and crop rotation
8. Effect of warm-mixing wax’s molecular weights on microstructure, rheological and mechanical properties of asphalt composites
9. Addition of cellulose and hemicellulose degrading microorganisms intensified nitrous oxide emission during composting
10. Mechanisms of mitigating nitrous oxide emission during composting by biochar and calcium carbonate addition
11. Mechanisms underlying the responses of microbial carbon and nitrogen use efficiencies to nitrogen addition are mediated by topography in a subtropical forest
12. Topography modulates effects of nitrogen deposition on soil nitrogen transformations by impacting soil properties in a subtropical forest
13. Increased N2O emission due to paddy soil drainage is regulated by carbon and nitrogen availability
14. Study on Properties and Micro-Mechanism of RHB-SBS Composite-Modified Asphalt
15. Catalytic cracking of waste polyethylene into wax-based warm-mix agent for optimizing rheological and mechanical properties of asphalt composites
16. Nitrogen addition effects on soil mineral-associated carbon differ between the valley and slope in a subtropical karst forest
17. Responses of soil respiration to nitrogen addition are mediated by topography in a subtropical karst forest
18. Tuning High- and Low-Temperature Rheological Properties of Asphalt Composites by Functionalized Wax-Based Warm-Mixing Agents
19. Effect of Warm-Mixing Wax's Molecular Weights on Microstructure, Rheological and Mechanical Properties of Asphalt Composites
20. Synergistically mitigating nitric oxide emission by co-applications of biochar and nitrification inhibitor in a tropical agricultural soil
21. Mechanisms underlying the responses of soil N2O production by ammonia oxidizers to nitrogen addition are mediated by topography in a subtropical forest
22. Topography-driven soil properties modulate effects of nitrogen deposition on soil nitrous oxide sources in a subtropical forest
23. PINK1/Parkin-Mediated Mitophagy Plays a Protective Role in Albumin Overload-Induced Renal Tubular Cell Injury
24. Responses of Soil Nitrous Oxide Emission to Nitrogen Addition at Two Topographic Positions of a Subtropical Forest
25. Topography-Dependent Mechanisms Underlying the Impacts of Nitrogen Addition on Soil Methane Uptake in a Subtropical Karst Forest
26. Increased Soil N2o Emission During Drainage is Mitigated by Inputs of Labile Carbon and Amplified by Nitrogen
27. Divergent responses of symbiotic and asymbiotic N2 fixation to seawater additions
28. Residual effects of four-year amendments of organic material on N2O production driven by ammonia-oxidizing archaea and bacteria in a tropical vegetable soil
29. Biochar amendment mitigated N2O emissions from paddy field during the wheat growing season
30. Organic substitutions aggravated microbial nitrogen limitation and decreased nitrogen-cycling gene abundances in a three-year greenhouse vegetable field
31. Mitigation of carbon dioxide by accelerated sequestration from long-term biochar amended paddy soil
32. The effect of long-term biochar amendment on N2O emissions: Experiments with N15-O18 isotopes combined with specific inhibition approaches
33. Spatial-heterogeneous granulation of organic amendments and chemical fertilizer stimulated N2O emissions from agricultural soil: An microcosm study
34. Synergistically Mitigating Nitric Oxide Emission by Co-Applications of Biochar and Nitrification Inhibitor in a Tropical Vegetable Soil
35. The contributions of hydroxylamine and nitrite to NO and N2O production in alkaline and acidic vegetable soils
36. Mechanisms underlying the mitigation of both N2O and NO emissions with field-aged biochar in an Anthrosol
37. Biochar-enriched soil mitigated N2O and NO emissions similarly as fresh biochar for wheat production
38. Responses of N2O production pathways and related functional microbes to temperature across greenhouse vegetable field soils
39. Mechanisms of mitigating nitrous oxide emissions from vegetable soil varied with manure, biochar and nitrification inhibitors
40. Assessing the Response of Tomato Yield, Fruit Composition, Nitrogen Absorption, and Soil Nitrogen Fractions to Different Fertilization Management Strategies in the Greenhouse
41. Pathways and controls of N2O production in greenhouse vegetable production soils
42. Overdose fertilization induced ammonia-oxidizing archaea producing nitrous oxide in intensive vegetable fields
43. Field-aged biochar stimulated N2O production from greenhouse vegetable production soils by nitrification and denitrification
44. Interlaminar fracture toughness, adhesion and mechanical properties of MWCNT–glass fiber fabric composites: Effect of MWCNT aspect ratios
45. Interface enhancement of glass fiber fabric/epoxy composites by modifying fibers with functionalized MWCNTs
46. Thermodynamic responses of ammonia-oxidizing archaea and bacteria explain N2O production from greenhouse vegetable soils
47. Tunable mechanical properties of MWCNT–glass fiber fabric reinforced epoxy composites by controlling MWCNTs dispersing conditions
48. Effect of ultrasonic-assisted impregnation parameters on the preparation and interfacial properties of MWCNT/glass-fiber reinforced composites
49. Properties of MWCNT–glass fiber fabric multiscale composites: mechanical properties, interlaminar adhesion, and thermal conductivity
50. Evaluation and simulation of nitrogen mineralization of paddy soils in Mollisols area of Northeast China under waterlogged incubation
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