Rongjie Wu
Biographic Data
| ID | 8319956 |
|---|---|
| NAME | Rongjie Wu |
| GIVEN NAMES | Rongjie |
| FAMILY NAME | Wu |
| SIGNATURE | WU R |
| AFFILIATIONS | School of Ecology and Environment Ningxia University Yinchuan China |
| VERIFIED | No |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2024 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Nitrogen Deposition Levels Affect Soil Aggregate Stabilization and Organic Carbon Dynamics by Altering Chemical Composition and Glomalin‐Related Soil Protein in the Desert Steppe of Northwest China
Anthropogenic nitrogen (N) deposition significantly alters soil aggregate (SA) stability and soil organic carbon (SOC) dynamics in grassland ecosystems, though the effects of varying N deposition levels remain inadequately understood. Here we evaluate the effect of varying N addition levels on SA and organic carbon stability. A 6‐year N addition experiment was conducted in a desert steppe, comprising CK (0 g·m −2 ·yr. −1 ), low N (5 and 10 g·m −2…
Effects of nutrient addition on the composition and chemical characteristics of soil dissolved organic matter in a desert steppe in northern China
Dissolved organic matter (DOM) plays a critical role in ecosystem function and productivity, particularly in carbon (C) cycling in grassland ecosystems. However, changes in the structural complexity of DOM in a desert steppe following long‐term treatment with nitrogen (N) and phosphorus (P) remain unclear; this limits our understanding of the nutrient‐related soil C cycle in a desert steppe. In the present study, soil experiments were conducted i…
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Effects of nutrient addition on the composition and chemical characteristics of soil dissolved organic matter in a desert steppe in northern China
Dissolved organic matter (DOM) plays a critical role in ecosystem function and productivity, particularly in carbon (C) cycling in grassland ecosystems. However, changes in the structural complexity of DOM in a desert steppe following long‐term treatment with nitrogen (N) and phosphorus (P) remain unclear; this limits our understanding of the nutrient‐related soil C cycle in a desert steppe. In the present study, soil experiments were conducted i…
Nitrogen Deposition Levels Affect Soil Aggregate Stabilization and Organic Carbon Dynamics by Altering Chemical Composition and Glomalin‐Related Soil Protein in the Desert Steppe of Northwest China
Anthropogenic nitrogen (N) deposition significantly alters soil aggregate (SA) stability and soil organic carbon (SOC) dynamics in grassland ecosystems, though the effects of varying N deposition levels remain inadequately understood. Here we evaluate the effect of varying N addition levels on SA and organic carbon stability. A 6‐year N addition experiment was conducted in a desert steppe, comprising CK (0 g·m −2 ·yr. −1 ), low N (5 and 10 g·m −2…
Biology (2 works) · Chemistry (2 works) · Ecology (2 works) · Environmental Chemistry (2 works) · Peatlands and Wetlands Ecology (2 works) · Soil carbon (2 works) · Soil Carbon and Nitrogen Dynamics (2 works) · Soil water (2 works) · Agronomy (1 works) · Animal science (1 works)