邓文平, 余新晓, 贾国栋, 李亚军, 刘玉洁. 北京西山鹫峰地区氢氧稳定同位素特征分析[J]. 水科学进展, 2013, 24(5): 642-650.
引用本文: 邓文平, 余新晓, 贾国栋, 李亚军, 刘玉洁. 北京西山鹫峰地区氢氧稳定同位素特征分析[J]. 水科学进展, 2013, 24(5): 642-650.
DENG Wenping, YU Xinxiao, JIA Guodong, LI Yajun, LIU Yujie. An analysis of characteristics of hydrogen and oxygen stable isotopes in Jiufeng Mountain areas of Beijing[J]. Advances in Water Science, 2013, 24(5): 642-650.
Citation: DENG Wenping, YU Xinxiao, JIA Guodong, LI Yajun, LIU Yujie. An analysis of characteristics of hydrogen and oxygen stable isotopes in Jiufeng Mountain areas of Beijing[J]. Advances in Water Science, 2013, 24(5): 642-650.

北京西山鹫峰地区氢氧稳定同位素特征分析

An analysis of characteristics of hydrogen and oxygen stable isotopes in Jiufeng Mountain areas of Beijing

  • 摘要: 以北京西山鹫峰低山区为研究对象,通过对降水、土壤水、泉水氢氧同位素的变化特征分析,研究低山区的降水-土壤水-泉水的转化关系。研究结果表明:该地区的雨季降水线与北京地区的地区降水线有明显区别,斜率和截距偏小;随降雨的进行氢氧同位素特征有时程变化和降雨量效应,而降雨的时程变化也对土壤水的同位素特征产生了影响;土壤水分同位素分布特征相对集中,蒸发线方程的斜率和截距相对于当地大气降水线和雨季降水线都偏小,栓皮栎混交林土壤水对于小雨量次降雨事件反应不敏感,而侧柏林的土壤水分运动较栓皮栎混交林快,说明林分类型和土壤特性对不同水体之间的转化有影响;泉水的同位素特征比较稳定,主要分布在地区降水线的右下方与雨季降水线的交点附近;不同水体中降雨的δD、δ18O变化范围较大,土壤水次之,泉水变化最小;而沿着大气降水-土壤水-地下水(泉水)这一水循环路径,水体中的δD、δ18O值总体上呈下降趋势。

     

    Abstract: The rocky mountain areas in Northern China are confronted with water resources scarceness due to the sustainable development and utilization of the precious resources. To effectively utilize limited water resources, the isotope techniques are widely used to study the movement of water in hydrological cycle. The study was conducted at the Jiufeng low mountain region of West Beijing. We identify the transforming relationships among those water sources in Jiufeng through analyzing the isotopic variations of precipitation, soil water and spring water. Results show that the water line in rainy season in Jiufeng is significantly different from the local meteoric water line in Beijing, both slope and intercept of the water line in rainy season are smaller than that of the local meteoric water line, along with the rain, the characteristics of D and 18O have scheduled changes and rainfall effect, and the scheduled changes in precipitation also affect the soil water isotopic characteristics. The isotopic compositions of soil water are relatively concentrated in the study region. Both slope and intercept of evaporation line equation are smaller than that of the local meteoric water line and the rainy seasonal water line. The soil in Quercus Variabilis Mixed Forest is not sensitive to small precipitation events. The soil water movement in Platycladus Oriatalis plots is faster than that in Quercus Variabilis Mixed Forest, which can account for the affection of forest types and soil characteristics to the conversion between different water sources. The isotopic composition of spring water is relatively stable, and they mainly distribute on the bottom right of the local meteoric water line, near the intersection point with the rainy seasonal water line. There have different isotope variations among different water sources. The largest variation is in rain water and the least is in spring water. The values of hydrogen and oxygen isotopes in different water sources decrease with the water cycle path from precipitation to soil water, and then to ground water.

     

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