Gongwen Luo
Biographic Data
| ID | 9672183 |
|---|---|
| NAME | Gongwen Luo |
| GIVEN NAMES | Gongwen |
| FAMILY NAME | Luo |
| SIGNATURE | LUO G |
| AFFILIATIONS | College of Resources and Environment Hunan Agricultural University Changsha PR China |
| VERIFIED | No |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Straw Returning Amount and Duration Influence Paddy Soil Organic Carbon Sequestration by Regulating Plant‐ and Microbe‐Derived Carbon Accumulation
Straw‐returning‐driven sequestration of soil organic carbon (SOC) is critical for cropland carbon (C) storage and stability. However, the effects of plant‐ and microbe‐derived C accumulation in SOC sequestration remain unclear in rice systems. Herein, this study synthetically explored the response of soil microbial necromass and lignin phenols to straw return and assessed their contributions to SOC under two application amounts and durations. The…
Partial substitution of chemical fertilizers with maize straw
Straw application increases crop yield, but the underlying mechanisms of straw‐substitution for chemical fertilizer on yield is not completely understood. We hypothesized that straw application improves crop yield by improving soil quality. In order to clarify how partial substitution of chemical fertilizers with maize straw affects soil properties and the specific contribution of soil properties to double‐cropping rice yield, we selected a long‐…
No prominent works on this page.
Partial substitution of chemical fertilizers with maize straw
Straw application increases crop yield, but the underlying mechanisms of straw‐substitution for chemical fertilizer on yield is not completely understood. We hypothesized that straw application improves crop yield by improving soil quality. In order to clarify how partial substitution of chemical fertilizers with maize straw affects soil properties and the specific contribution of soil properties to double‐cropping rice yield, we selected a long‐…
Straw Returning Amount and Duration Influence Paddy Soil Organic Carbon Sequestration by Regulating Plant‐ and Microbe‐Derived Carbon Accumulation
Straw‐returning‐driven sequestration of soil organic carbon (SOC) is critical for cropland carbon (C) storage and stability. However, the effects of plant‐ and microbe‐derived C accumulation in SOC sequestration remain unclear in rice systems. Herein, this study synthetically explored the response of soil microbial necromass and lignin phenols to straw return and assessed their contributions to SOC under two application amounts and durations. The…
Agronomy (2 works) · Biology (2 works) · Chemistry (2 works) · Environmental Science (2 works) · Soil carbon (2 works) · Soil Carbon and Nitrogen Dynamics (2 works) · Soil Science (2 works) · Soil water (2 works) · Straw (2 works) · Bioenergy crop production and management (1 works)