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941.
М.Lebedeva 《山地科学学报》2009,6(2):132-138
Micromorphology of solonetz species with special attention to natric horizon was studied in microcatenas at the Dzhanybek Research Station (northwestern Caspian Lowland). The solonetzic (natric) horizon is easily identified, and it occurs at varying depths, which are the criteria for subdividing solonetzes into 4 species, namely, crusty, shallow, medium and deep. In this sequence, the depth of humus-accumulative horizons increases, and the upper boundary of salinity manifestations goes down. The following micromorphological features are assumed as typical for natric horizons: angular blocky microstructures with partially accommodated aggregates having sharp boundaries and narrow plane-like packing voids; b-fabric speckled in the aggregates' centers and monostriated at their peripheries merging into stress coatings; very few interpedal voids; organo-clay coatings; humus- enriched infillings; no calcite and gypsum pedofeatures. A complete set of "natric" features was found only in the crusty solonetz; the shallow solonetz lacks only illuviation coatings, while the medium and deep species have several modifications of fabric elements: blocky aggregates have a rounded shape and are penetrated by biogenic channels favoring their further biogenic reworking; plant residues became more abundant and diverse, and blackened tissues occur; illuviation clay coatings evolved into papules; stress coatings gave birth to striated bfabrics, thus maintaining a high plasma orientation. The thin sections of natric horizons made 50 and 20 years ago were examined to study the influence of environmental changes (increase in precipitation and rise of ground water table) on micropedofeatures. The following processes took place: (i) in the topsoil: humus accumulation and biogenic structurization; (ii) in the natric horizon - re-arrangement of clay coatings into micromass b-fabrics; and (iii) in the lower part of the natric horizon - development of pseudosand fabric, calcite and gypsum formation. The trends revealed are in good agreement with the environmental events. 相似文献
942.
《地球科学与环境学报》2009,31(3):F0003-F0003
薛春纪教授男,汉族,1962年4月出生于陕西省眉县。1983年于西北大学本科毕业,获岩石矿物学专业学士学位,同年5月加入中国共产党。1989年获得西北大学矿床学专业硕士学位,1999年获得成都理工大学矿物学、岩石学、矿床学博士学位。2001年在中国地质科学院地质学博士后流动站完成博士后研究。 相似文献
943.
T.V.Tursina 《山地科学学报》2009,6(2):125-131
A methodology for studying soil polygenesis and lithological homogeneity of soil profiles is suggested. This methodology is particularly important for mountain soils, where the lithological heterogeneity of the soil profiles created by denudation and accumulation processes is often observed. The methodology includes several stages: (a) the study of the lithological homogeneity/ heterogeneity of soil profiles by field and laboratory methods, (b) the stage-by-stage macro-, meso-, micro-, and submicromorphological analyses of soil profiles with additional use of the methods of neighboring sciences, and (e) the subdivision of soil features into the groups of recent and inherited (relict) features. In the latter group, the subgroups of lithorelict features inherited from the parent material and pedorelict features inherited from the previous stages of soil formation can be distinguished. Two major models of soil polygenesis are suggested. Simple models describe the soils, in which new features appear due to the changes in the environmental conditions in the course of soil evolution. Complex models describe the soils, in which such changes are combined with deposition of new portions of sediments onto the soil surface with the development of buried soil horizons (the synlithogenie pedogenesis). The models of continuous and discontinuous synlithogenic pedogenesis can be further distinguished. It is argued that the micromorphological method applied to the studies on soil mierofabrics, microforms of soil humus, soil porosity, coatings, and various pedo- and lithorelict features yields valuable information on polygenetic soils. 相似文献
944.
《地球科学与环境学报》2009,31(4):F0002-F0002
刘宝琚院士 男,生于1931年9月,天津市人,著名地质学家。1956年毕业于北京地质学院研究生班,1991年当选为中国科学院院士。先后在北京地质学院、成都地质学院、成都地质矿产研究所工作。曾任国际地科联“全球沉积委员会”领导成员和全球沉积地质计划中国委员会主席,多次组织并参与了国际有关全球沉积地质的研究工作。 相似文献
945.
946.
文登市国土资源局强化行风建设优化服务环境 总被引:3,自引:3,他引:0
近年来,文登市国土资源局认真贯彻落实科学发展观,按照“保护资源、保障发展、依法行政、维护权益”的要求,围绕全市经济发展大局,以提升管理和服务水平为主线,改进工作作风、改善行政管理、推进依法行政,着力优化服务环境,为全市经济又好又快发展提供了有力的资源保障。2008年,在市委组织的“环境创优”评议中,位居22个执法部门第2名,被文登市委、市政府授予“优化发展环境先进单位”。 相似文献
947.
2004 年夏初、秋末长江口外海区冲淡水及羽状锋的盐度特征 总被引:1,自引:1,他引:0
用国家海洋局东海环境监测中心2004年夏初(6月)和秋末(11月)对长江口外海区现场观测资料,用Matlab计算机编程语言对观测资料进行质量控制、插值网格化,绘制研究海区盐度立体分布图,显示夏初、秋末两季的盐度分布特征。将2004年夏、秋两季长江口外海区冲淡水和羽状锋的分布与以往观测研究结果对比,可得:(1)长江口外海区冲淡水的盐度值主要在5—31之间,冲淡水前缘盐度锋面的盐度值为18—28;盐度值20—28的盐度锋面基本体现该海区羽状锋的特征及变化。(2)夏初长江口外海区冲淡水范围明显大于秋末,夏初该海区以冲淡水为主,秋末冲淡水的范围收缩,紧贴沿岸一带。相应地,夏初该海区羽状锋呈倾斜锋面,占据较大的海区;秋末则为垂直锋面,介于122.50°E-122.70°E海区。 相似文献
948.
Requirements for monitoring the coastal zone environment are first summarized. Then the application of hyperspectral remote sensing to coast environment investigation is introduced, such as the classification of coast beaches and bottom matter, target recognition, mine detection, oil spill identification and ocean color remote sensing. Finally, what is needed to follow on in application of hyperspectral remote sensing to coast environment is recommended. 相似文献
949.
Sediment cores were collected from the subaqueous delta of the Changjiang Estuary. Sediment grain-size profiles and their fractal dimensions were analyzed, to elucidate responses to long-term sedimentary processes. In addition, the environmental sensitive populations of grain size have been extracted. The sediment cores can be divided into two parts, according to the sedimentary structures present. The upper part (0-12 cm) is interpreted as being the active layer, which is influenced frequently by changes i... 相似文献
950.
东海内陆架泥质沉积区全新世古环境变迁:有孔虫证据 总被引:4,自引:0,他引:4
对东海内陆架MD06-3040柱状样257个沉积物样品进行了有孔虫及其氧碳稳定同位素分析,应用底栖有孔虫组合和不同生态(表生/内生、内陆架/中外陆架)种的丰度,浮游有孔虫Globigerina.bulloides和Globigeri-noides.ruber的丰度及其稳定同位素记录,探讨了研究区全新世10.6cal.kaBP以来的古环境变迁。分析结果揭示了研究区全新世早期海面快速上升,沉积环境由滨岸内陆架(10.6~9.9cal.kaBP)、内陆架外缘(9.9~8.1cal.kaBP)转变至中陆架并达全新世最高海面(7.7~7.2cal.kaBP)。台湾暖流在8.0cal.kaBP起开始发育,并在6.0~2.8和0.7~0cal.kaBP两个时期派生出明显的上升流。台湾暖流及其所派生的上升流是造成东海陆架泥质快速沉积的最主要原因。采用浮游有孔虫G.bulloides的丰度变化,推测浙闽沿岸流在5.1cal.kaBP之前较弱,之后显著增强,其中在5.1~2.8cal.kaBP时期最为强盛。 相似文献