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西安地区S_4古土壤剖面中古水分指标与水环境研究 被引量:1
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作者 赵景波 马延东 +2 位作者 罗小庆 邵天杰 刘瑞 《地质学报》 EI CAS CSCD 北大核心 2017年第3期678-689,共12页
通过野外调查和实验分析,在西安蓝田安村黄土剖面S_4古土壤剖面中发现了具有指示当时土壤水分含量、地下水富集和水分循环的铁锰结核、针铁矿[α-FeO(OH)],在西安地区确定了风化淋滤黄土层和显著迁出了土壤黏化层的CaCO_3结核淀积层。... 通过野外调查和实验分析,在西安蓝田安村黄土剖面S_4古土壤剖面中发现了具有指示当时土壤水分含量、地下水富集和水分循环的铁锰结核、针铁矿[α-FeO(OH)],在西安地区确定了风化淋滤黄土层和显著迁出了土壤黏化层的CaCO_3结核淀积层。针铁矿呈褐黄色薄膜分布于土体表面,含量可达3.3%。铁锰结核呈黑褐色球形,电镜下多呈结晶粒状,铁锰成分含量很高。针铁矿和铁锰结核富集层厚0.6m,形成于紧靠地下水的位置。通过研究提出了铁锰结核和风化淋滤黄土层及CaCO_3结核淀积层可作为恢复土壤古水分含量的重要指标。针铁矿、铁锰结核和风化淋滤黄土层的形成以及CaCO_3结核与红色铁质胶膜的迁移深度指示,在S_4古土壤发育时期,西安地区为亚热带气候,当时年平均气温为15~16℃,年平均降水量在900~1000mm之间。那时秦岭失去了亚热带与温带气候分界线的作用。在S_4古土壤发育时期,西安地区土壤重力水分布深度达到了3.3m,当时土壤水在经过蒸发与蒸腾消耗之后,3.3m深度范围内剩余的土壤平均含水量一般为25%左右,在针铁矿和与铁锰结核发育层位含水量接近饱和(50%左右)。当时土壤水分非常充足,水分循环正常,水分平衡为正,有较多水分补给地下水,适于茂盛森林植被发育。本文所确定的古含水量指标为国内外第四纪土壤含水量、水分存在形式与水循环研究提供了标准和方法。 展开更多
关键词 S4古土壤 铁锰结核与针铁矿 古水循环 含水量指标 水分平衡 西安地区
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Effect of Perched Water Tables on Aluminosilicate Stability and Soil Genesis 被引量:4
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作者 ZHANG MIN , GONG ZITONG and A. D. KARATHANASIS College of Resources and Environment, Shandong Agricultural University, Tai’an 271018 (China) Institute of Soil Science, the Chinese Academy of Sciences, Nanjing 210008 (China) College of Agriculture, U 《Pedosphere》 SCIE CAS CSCD 2000年第3期247-256,共10页
The mineral stability and solute activities of soil solution extracted from selected horizons of seven studied pedons of Alfisols in Kentucky, USA, and the relationship between distribution of iron-manganese concretio... The mineral stability and solute activities of soil solution extracted from selected horizons of seven studied pedons of Alfisols in Kentucky, USA, and the relationship between distribution of iron-manganese concretions and the restrictive layers were investigated. The results showed that the genesis and development of these soils and mineral weathering trends were strongly influenced by the depth of bedrock and the presence of perched water tables at lithic (limestone) interfaces due to the dissolution and buffering effect of limestone bedrock. The extractable Mg/Ca ratio as depth function and soil depth above bedrock could be used as indices of weathering and degree of soil development. Maximum iron-manganese concretion accumulation was found to occur in the horizon overlying clay horizon (>40% clay) with a sharp increase in clay content (>10%), which suggested that zones of Fe-Mn concretion accumulation in soils of the Inner Bluegrass Region appeared to be a sensitive genetic indicator of argillic horizons with restrictive permeability. 展开更多
关键词 iron-manganese concretion perched water table soil environment soil genesD
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