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关中地区表层土壤碳储量问题的研究 被引量:2
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作者 王明霞 张小卫 +2 位作者 王会锋 卢婷 任蕊 《地球与环境》 CAS CSCD 北大核心 2013年第3期303-310,共8页
土壤碳储量问题是碳循环和全球变化研究的基本问题,关系到全球生态环境的发展、平衡与兴衰。论文利用多目标区域地球化学调查取得的大量数据,用实测方法计算出关中地区表层土壤(0~0.2m)全碳(TC)储量为1.50×108 t,平均储量为4994.1... 土壤碳储量问题是碳循环和全球变化研究的基本问题,关系到全球生态环境的发展、平衡与兴衰。论文利用多目标区域地球化学调查取得的大量数据,用实测方法计算出关中地区表层土壤(0~0.2m)全碳(TC)储量为1.50×108 t,平均储量为4994.16t/km2;其中,有机碳(TOC)储量为0.71×108 t,平均储量为2350.14t/km2。通过对研究区内表层单位土壤碳储量分布规律的研究发现,TOC储量在基岩山地和低山丘陵等植被覆盖较高的地区相对较高。对表层土壤的平均碳储量分别按照土壤类型、土地利用、地貌单元和成土母质类型进行分类统计,结果表明研究区内:粗骨土的平均有机碳和全碳储量均最高,风沙土均最低,黑垆土的平均无机碳(TIC)储量最高,棕壤最低;农用地中,林地的平均TOC和TC储量最高,TIC储量最低;各地貌单元平均TOC储量的大小顺序为:基岩山地﹥低山丘陵﹥平原﹥黄土高原﹥黄土塬;成土母质为山前洪冲积的土壤平均TOC储量最高,渭河冲洪积土壤最低。 展开更多
关键词 关中地区 多目标区域地球化学调查 实测计算方法 土壤储量 平均碳储量
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Carbon and Nitrogen Storage in Inner Mongolian Grasslands: Relationships with Climate and Soil Texture 被引量:8
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作者 HE Nian-Peng WANG Ruo-Meng +1 位作者 ZHANG Yun-Hai CHEN Quan-Sheng 《Pedosphere》 SCIE CAS CSCD 2014年第3期391-398,共8页
Understanding the spatial variability of soil carbon (C) storage and its relationship with climate and soil texture is critical for developing regional C models and for predicting the potential impact of climate cha... Understanding the spatial variability of soil carbon (C) storage and its relationship with climate and soil texture is critical for developing regional C models and for predicting the potential impact of climate change on soil C storage. On the basis of soil data from a transect across the Inner Mongolian grasslands, we determined the quantitative relationships of C and nitrogen (N) in bulk soil and particle-size fractions (sand, silt, and clay) with climate and soil texture to evaluate the major factors controlling soil C and N storage and to predict the effect of climate changes on soil C and N storage. The contents of C and N in the bulk soil and the different fractions in the 0 20 and 20 40 cm soil layers were positively correlated with the mean annum precipitation (MAP) and negatively correlated with the mean annual temperature (MAT). The responses of C storage in the soil and particle-size fractions to MAP and MAT were more sensitive in the 0-20 cm than in the 2(~40 cm soil layer. Although MAP and MAT were both important factors influencing soil C storage, the models that include only MAP could well explain the variation in soil C storage in the Inner Mongolian grasslands. Because of the high correlation between MAP and MAT in the region, the models including MAT did not significantly enhance the model precision. Moreover, the contribution of the fine fraction (silt and clay) to the variation in soil C storage was rather small because of the very low fine fraction content in the Inner Mongolian grasslands. 展开更多
关键词 mean annual precipitation mean annual temperature native grassland particle-size fraction soil organic matter
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