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岩溶土壤系统对空气CO2的吸收及其对陆地系统碳汇的意义——以桂林丫吉村岩溶试验场的野外观测和模拟实验为例

SINK EFFECT OF KARST SOIL SYSTEM ON ATMOSPHERIC CO2: EVIDENCE FROM FIELD OBSERVATION AND SIMULATION EXPERIMENT

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【作者】 潘根兴曹建华何师意滕永忠徐胜友

【Author】 PAN Gen xing 1, CAO Jian hua 1,2 , HE Shi yi 2, TENG Yong zhong 1, Xu Sheng you 2(1 College of Resource and Environment Science, Nanjing Agricultural University, Nanjing 210095, China; 2 Key Laboratory of Karst Dynamics, Ministry o

【机构】 南京农业大学资源环境科学学院!南京210095,南京农业大学资源环境科学学院!南京210095国土资源部岩溶动力学开放实验室,桂林541004,国土资源部岩溶动力学开放实验室!桂林541004,南京农业大学资源环境科学学院!南京210095,国土资源部岩溶动力学开放实验室!桂林541004

【摘要】 以桂林丫吉村岩溶实验场为例 ,对湿润亚热带岩溶土壤系统进行了土壤植被系统CO2 浓度变化、土壤有机质分解的CO2 产生等野外观测以及实验室土壤灰岩土柱系统模拟实验。实验表明在土壤地球化学条件的控制下 ,岩溶土壤系统存在着对空气CO2 的显著吸收效应 ,其值可达 2 2~ 130 g/ (m2 ·a) ,并以此为依据估算了中国岩溶土壤系统对大气的碳汇约为 4× 10 13g/a。因而揭示了岩溶土壤系统可能是十分重要的陆地碳汇 ,在讨论全球碳汇饱和问题中必须重视这一碳汇的变化。

【Abstract】 The authors have made field observations of depth distribution of soil air CO 2 concentration and the dynamics with seasons in Yaji Karst Experiment Site, Guilin for years. Simulated soil rock system experiment was conducted to investigate the CO 2 sink in by soil. The field mono peak of depth distribution of soil air CO 2 concentration demonstrated that soil air CO 2 was consumed in deep soil. The air CO 2 absorption intensity of the bared rock is 9.70 g/(m 2·a), whereas that of the soil ranges from 22g/(m 2·a) to 131 g/(m 2·a). Based on these data, the total sink for air CO 2 by the karst soil system in China is estimated to be 4×10 13 g/a. It is suggested that attention should be given to the role of karst soil system in consuming atmospheric and its dynamic evolution when the problem of global terrestrial CO 2 sink is addressed.

【基金】 国家自然学科基金资助项目! (4 92 72 141;49972 0 87)及重点资助项目 (4 96 32 10 0 )
  • 【文献出处】 地学前缘 ,Earth Science Frontiers , 编辑部邮箱 ,2000年04期
  • 【被引频次】69
  • 【下载频次】734
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