Response of Artificial Grassland Carbon Stock to Management in Mountain Region of Southern Ningxia, China
【摘要】:Grassland is a major carbon sink in the terrestrial ecosystem. The dynamics of grassland carbon stock profoundly influence the global carbon cycle. In the published literatures so far, however, there are limited studies on the long-term dynamics and influential factors of grassland carbon stock, including soil organic carbon. In this study, spatial-temporal substitution method was applied to explore the characteristics of Medicago sativa L.(alfalfa) grassland biomass carbon and soil organic carbon density(SOCD) in a loess hilly region with different growing years and management patterns. The results demonstrated that alfalfa was the mono-dominant community during the cutting period(viz. 0–10 year). Community succession began after the abandonment of alfalfa grassland and then the important value of alfalfa in the community declined. The artificial alfalfa community abandoned for 30 years was replaced by the S. bungeana community. Accordingly, the biomass carbon density of the clipped alfalfa showed a significant increase over the time during 0–10 year. During 0–30 year, the SOCD from 0–100 cm of the soil layer of all 5 management patterns increased over time with a range between 5.300 ± 0.981 kg/m2 and 12.578 ± 0.863 kg/m2. The sloping croplands had the lowest SOCD at 5.300 ± 0.981 kg/m2 which was quite different from the abandoned grasslands growing for 30 years which exhibited the highest SOCD with 12.578 ± 0.863 kg/m2. The ecosystem carbon density of the grassland clipped for 2 years increased 0.1 kg/m2 compared with the sloping cropland, while that of the grassland clipped for 10 years substantially increased to 10.30 ± 1.26 kg/m2. Moreover, the ecosystem carbon density for abandoned grassland became 12.62 ± 0.50 kg/m2 at 30 years. The carbon density of the grassland undisturbed for 10 years was similar to that of the sloping cropland and the grassland clipped for 2 years. Different management patterns imposed great different effects on the accumulation of biomass carbon on artificial grasslands, whereas the ecosystem carbon density of the grassland showed a slight increase from the clipping to abandonment of grassland in general.
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| 1 |
邱英;干友民;王钦;费凌;王岩春;;川西北放牧草地退化分类评价指标体系初探[J];湖北农业科学;2007年05期 |
| 2 |
;Response of CH_4 emission of paddy fields to land management practices at a microcosmic cultivation scale in China[J];Journal of Environmental Sciences;2005年04期 |
| 3 |
WOOD Yvonne;;Organic carbon stratification and size distribution of three typical paddy soils from Taihu Lake region,China[J];Journal of Environmental Sciences;2008年04期 |
| 4 |
;Land-use induced changes in topsoil organic carbon stock of paddy fields using MODIS and TM/ETM analysis:A case study of Wujiang County,China[J];Journal of Environmental Sciences;2008年07期 |
| 5 |
郑乐平,欧阳自远,张晓岚,王世杰,黎廷宇,万国江,曾世文;黔中岩溶地区草地土壤CO_2的稳定碳同位素组成[J];环境科学;2000年05期 |
| 6 |
王跃思,纪宝明,黄耀,胡玉琼,王艳芬;农垦与放牧对内蒙古草原N_2O、CO_2排放和CH_4吸收的影响[J];环境科学;2001年06期 |
| 7 |
苏永中,赵哈林;持续放牧和围封对科尔沁退化沙地草地碳截存的影响[J];环境科学;2003年04期 |
| 8 |
闫玉春;唐海萍;常瑞英;刘亮;;长期开垦与放牧对内蒙古典型草原地下碳截存的影响[J];环境科学;2008年05期 |
| 9 |
冯跃华,张杨珠;土壤有机磷分级研究进展[J];湖南农业大学学报(自然科学版);2002年03期 |
| 10 |
;Changes in soil organic carbon of terrestrial ecosystems in China:A mini-review[J];Science China(Life Sciences);2010年07期 |
|