Author
Listed:
- Zengrang Xu
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
- Shengkui Cheng
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
- Lin Zhen
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
- Ying Pan
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
- Xianzhou Zhang
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
- Junxi Wu
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
- Xiuping Zou
(Institute of Policy and Management, Chinese Academy of Sciences)
- G. C. Dhruba Bijaya
(Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences)
Abstract
Alpine grassland of Tibet is a frangible ecosystem in terms of carbon (C) emission. Yak dung is an important resident energy with about 80 % of yak dung combusted for energy in the north Tibetan plateau. This paper investigated the impact of dung combustion on the C cycle of the alpine grassland ecosystem in north Tibet, China. During the growing season of 2011, from a field survey and household questionnaires, the main impacts of dung collection for fuel on the C cycle of the ecosystem were identified. (1) The C sequestration and storage capacity, including the dung-derived C stored in soil and C captured by vegetation, decreased. The net primary production decreased remarkably because of the reduction of dung returned to soil. (2) In a given period, more C was emitted to the atmosphere in the dung combustion situation than that in the dung returned to soil situation. (3) The energy grazing alpine meadow ecosystem changed into a net C source, and the net biome production of the ecosystem dropped to −15.18 g C/m2 year in the dung combustion situation, 42.95 g C/m2 year less than that in the dung returned situation. To reduce the CO2 emission derived from dung use, the proportion of dung combustion should be reduced and alternative renewable energy such as solar, wind, or hydro energy should be advocated, which is suitable for, and accessible to, the north Tibetan plateau.
Suggested Citation
Zengrang Xu & Shengkui Cheng & Lin Zhen & Ying Pan & Xianzhou Zhang & Junxi Wu & Xiuping Zou & G. C. Dhruba Bijaya, 2013.
"Impacts of Dung Combustion on the Carbon Cycle of Alpine Grassland of the North Tibetan Plateau,"
Environmental Management, Springer, vol. 52(2), pages 441-449, August.
Handle:
RePEc:spr:envman:v:52:y:2013:i:2:d:10.1007_s00267-013-0107-8
DOI: 10.1007/s00267-013-0107-8
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