期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
CHEMICAL WEATHERING PROCESSES AND ATMOSPHERIC CO_2 CONSUMPTION OF HUANGHE RIVER AND CHANGJIANG RIVER BASINS 被引量:15
1
作者 LIJing-ying ZHANGJing 《Chinese Geographical Science》 SCIE CSCD 2005年第1期16-21,共6页
Rock weathering plays an important role in studying the long-term carbon cycles and global climatic change. According to the statistics analysis, the Huanghe (Yellow) River water chemistry was mainly controlled by eva... Rock weathering plays an important role in studying the long-term carbon cycles and global climatic change. According to the statistics analysis, the Huanghe (Yellow) River water chemistry was mainly controlled by evaporite and carbonate weathering, which were responsible for over 90% of total dissolved ions. As compared with the Huanghe River basin, dissolved load of the Changjiang (Yangtze) River was mainly originated from the carbonate dissolution. The chemical weathering rates were estimated to be 39.29t/(km(2).a) and 61.58t/(km(2).a) by deducting the HCO3- derived from atmosphere in the Huanghe River and Changjiang River watersheds, respectively. The CO2 consumption rates by rock weathering were calculated to be 120.84 x 10(3)mol/km(2) and 452.46 x 10(3)mol/km(2) annually in the two basins, respectively. The total CO2 consumption of the two basins amounted to 918.51 x 10(9)mol/a, accounting for 3.83% of the world gross. In contrast to other world watersheds, the stronger evaporite reaction and infirm silicate weathering can explain such feature that CO2 consumption rates were lower than a global average, suggesting that the sequential weathering may be go on in the two Chinese drainage basins. 展开更多
关键词 Huanghe River basin Changjiang River basin chemical weathering rate CO2 consumption
下载PDF
长江中游盆地地质环境系统演变与防洪对策 被引量:23
2
作者 张人权 梁杏 +1 位作者 陈国金 龚树毅 《长江流域资源与环境》 CAS CSSCI CSCD 2000年第1期104-111,共8页
在构造沉降、泥沙淤积及人工围堤的相互作用下,长江中游盆地地质环境系统分割为演变方向不同的两部分:堤外水域成为人工过饱盆地,堤内垸地成为人工饥饿盆地。因此,长江某些区段及洞庭湖洪水位抬升,垸地高程不断降低,洪涝渍害不断加剧。... 在构造沉降、泥沙淤积及人工围堤的相互作用下,长江中游盆地地质环境系统分割为演变方向不同的两部分:堤外水域成为人工过饱盆地,堤内垸地成为人工饥饿盆地。因此,长江某些区段及洞庭湖洪水位抬升,垸地高程不断降低,洪涝渍害不断加剧。在系统分析基础上,初步提出了重建良性循环的人工—自然复合地质环境系统的思路与防洪对策。 展开更多
关键词 长江中游盆地 地质环境系统 水灾 演变 防洪
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部