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The impacts of climate change and human activities on biogeochemical cycles on the <scp>Q</scp>inghai‐<scp>T</scp>ibetan <scp>P</scp>lateau

Global Change Biology · 2013 · Vol. 19(10) · pp. 2940–2955
Huai ChenQiuan ZhuChanghui PengNing WuYanfen WangXiuqing FangYongheng GaoDan ZhuGang YangJianqing TianXiaoming KangShilong PiaoHua OuyangWenhua XiangZhi‐Bin LuoHong JiangXingzhang SongYao ZhangGuirui YuXinquan ZhaoPeng GongTandong YaoJianghua Wu

Abstract

With a pace of about twice the observed rate of global warming, the temperature on the Qinghai-Tibetan Plateau (Earth's 'third pole') has increased by 0.2 °C per decade over the past 50 years, which results in significant permafrost thawing and glacier retreat. Our review suggested that warming enhanced net primary production and soil respiration, decreased methane (CH(4)) emissions from wetlands and increased CH(4) consumption of meadows, but might increase CH(4) emissions from lakes. Warming-induced permafrost thawing and glaciers melting would also result in substantial emission of old carbon dioxide (CO(2)) and CH(4). Nitrous oxide (N(2)O) emission was not stimulated by warming itself, but might be slightly enhanced by wetting. However, there are many uncertainties in such biogeochemical cycles under climate change. Human activities (e.g. grazing, land cover changes) further modified the biogeochemical cycles and amplified such uncertainties on the plateau. If the projected warming and wetting continues, the future biogeochemical cycles will be more complicated. So facing research in this field is an ongoing challenge of integrating field observations with process-based ecosystem models to predict the impacts of future climate change and human activities at various temporal and spatial scales. To reduce the uncertainties and to improve the precision of the predictions of the impacts of climate change and human activities on biogeochemical cycles, efforts should focus on conducting more field observation studies, integrating data within improved models, and developing new knowledge about coupling among carbon, nitrogen, and phosphorus biogeochemical cycles as well as about the role of microbes in these cycles.

Climate change and permafrostCryospheric studies and observationsGeology and Paleoclimatology ResearchBiogeochemical cycleEnvironmental sciencePermafrostClimate changeGlobal warmingGreenhouse gasGlacierEcosystemAtmospheric sciencesCarbon cycle

MeSH terms

AgricultureAnimalsChinaHumansPlantsEcosystemTibetClimate Change
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References
A safe operating space for humanity
Nature · 2009 · 12,565 citations
Human Domination of Earth's Ecosystems
Science · 1997 · 8,834 citations
Review of climate and cryospheric change in the Tibetan Plateau
Environmental Research Letters · 2010 · 1,148 citations
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