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      氣候變化研究進(jìn)展 ?? 2008, Vol. 4 ?? Issue (004): 202-208.

      ? 研究論文 ? 上一篇    下一篇

      中國濕地土壤碳庫保護與氣候變化問(wèn)題

      張旭輝1,李典友2,潘根興2,李戀卿2,林凡2,許信旺2   

      1. 1. 南京農業(yè)大學(xué)資源與環(huán)境科學(xué)學(xué)院2. 南京農業(yè)大學(xué)資環(huán)學(xué)院
      • 收稿日期:2008-02-19 修回日期:2008-05-13 出版日期:2008-07-31 發(fā)布日期:2008-07-31
      • 通訊作者: 潘根興

      Conservation of Wetland Soil C Stock and Climate Change of China

      Pan Genxing Pan   

      • Received:2008-02-19 Revised:2008-05-13 Online:2008-07-31 Published:2008-07-31
      • Contact: Pan Genxing Pan

      摘要: 中國濕地分布廣, 類(lèi)型豐富, 但存在著(zhù)墾殖率高、碳密度較低、圍墾損失嚴重等問(wèn)題。估計我國濕地土壤碳庫達8~10 Pg, 占全國陸地土壤總有機碳庫的約1/10~1/8, 過(guò)去50 a間的損失可能達1.5 Pg。圍墾和過(guò)度放牧是我國濕地土壤退化和碳庫損失的主要驅動(dòng)因子。目前,濕地土壤碳庫保護面臨嚴峻的挑戰,從應對氣候變化和保護人類(lèi)生存環(huán)境的戰略高度切實(shí)加強濕地資源保護,可以為增強陸地生態(tài)系統碳匯、探尋溫室氣體減排的潛在途徑提供技術(shù)支持。

      關(guān)鍵詞: 濕地, 土壤碳, 陸地碳庫, 減緩氣候變化

      Abstract: Wetland ecosystem is considered as one of the important ecosystems for life and human society sustainability, and also one of the most important terrestrial C stocks on the Earth. Therefore, conservation of wetland soil C stock may play a significant role in mitigation of increasing greenhouse gas in the atmosphere. China has widely-distributed wetlands with diverse types of wetland ecosystems. However, severe challenges such as intense shift to cultivation, low C density and C stock reduction due to cultivation have emerged since the 1950's. It is estimated that China's wetlands have a total C stock in the range of 8-10 Pg, in a proportion of one tenth to one eighth to the state total terrestrial C stock. A reduction of about 1.5 Pg in total C stock was also estimated for the last 50 years. Cultivation and over-grazing have been considered as the dominant forcing factors for this C reduction. Practical measures should be implemented in the near future for conserving wetland soil C stock and further for enhancing the total terrestrial C sink as China is facing a great pressure to mitigate the increasing greenhouse gas emissions.

      Key words: wetland, soil carbon, terrestrial C stock, climate change mitigation

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