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41.
Ecological effects analysis of land use change in coal mining area based on ecosystem service valuing: a case study in Jiawang 总被引:3,自引:0,他引:3
Land use change is one of the uppermost driving forces of regional ecosystem change, and has a huge impact on the environmental balance. Mining areas with intensive resources exploitation and utilization have undergone different kinds of environmental influences, such as water pollution and land use cover change. The extensive coal mining in China has led to significant regional land use change resulting in major ecological damage. The objective of this study was to form a clearer picture of the regional ecological environmental situation for promoting ecological protection and improvement by ecosystem service valuing. The case study area was selected at Jiawang town, which has undergone extensive coal mine exploitation for many decades. The study investigated the relationship between land use change and ecological environment, and described the ecosystem service value variations in Jiawang, based on remote sensing and GIS technology. After modification of regional ecosystem service value coefficients, the method was used to evaluate the conditions in the study area from 1990 to 2005 based on the land use/cover information interpreted from TM/ETM+ images. The characters and changes of ecosystem service values were then analyzed both quantitatively and spatially. 相似文献
42.
43.
The layered intrusions in the Panzhihua-Xichang area may be grouped into two types: basic rock masses represented by the Panzhihua
rockbody and basic-ultrabasic rock masses represented by the Hongge rockbody. Their major difference lies in that the former
has poorly developed ultramafic facies, while the latter is characterized by well developed mafic facies and ultramafic facies.
There exists apparent rhythmic stratification in the rock masses, which can be basically divided into four grades in terms
of superimposition relationship and multicycle characters.
Both direct and indirect evidence suggest that the magma responsible for the layered intrusions in this area should be a transition-type
alkaline olivine basalt magma derived directly from partial melting of the upper mantle. In rhythmic cycles of various grades,
the magmatic evolution is characterized obviously by periodicity and early enrichment of Fe and Ti, which is evidently different
from the evolution of the Skaergaard magma in which Fe and Ti are enriched at the late stage. The FCA diagram can be used
to describe the unique evolutionary trend of magma in this area. It is demonstrated in this diagram that the enrichment of
Fe and Ti is consistent with the increase of basicity.
In the upper magmatic chamber, the evolutionary trend of magma is conditioned by the difference in pressure, and this enables
magma to form different types of rock assemblage. In the Fo-Di-An system, when the pressure exceeds 5 x 188 Pa, forsterite is incompatible with anorthite, and the rock facies sequence of Hongge type might form; when the pressure
is lower than 5 x 108 Pa, forsterite can coexist with anorthite, and the rock facies sequence of Panzhihua type is likely to form if the magma
is relatively rich in Mg and Fe components. 相似文献
44.
Here we report iron (Fe) isotopic data of three pure Fe solution standards (IRMM-014, GSB Fe, and NIST 3126a) and five widely used geological reference materials (RMs) from the United States Geological Survey and Geological Survey of Japan obtained on a Neptune Plus multi-collector–inductively coupled plasma–mass spectrometer (MC-ICP-MS) in our laboratory over the past 3 years. The instrumental mass bias was corrected by three independent methods: sample-standard bracketing (SSB), Ni doping?+?SSB, and 57Fe–58Fe double spike?+?SSB. Measurements reveal that both the Ni doping and double spike methods helped calibrate short-term fluctuations in mass bias. Collectively, almost all measurements of RMs yielded δ56Fe within?±?0.05 of recommended values, provided that each sample was measured four times on MC-ICP-MS. For the first time, new recommended values for NIST SRM3126a are reported (δ56Fe?=?0.363?±?0.006, 2SE, 95% CI; and δ57Fe?=?0.534?±?0.010, 2SE). 相似文献
45.
含铁闪锌矿热容的实验测定与分析 总被引:1,自引:0,他引:1
利用美国DuPont公司的9900型差示扫描量热仪对3个含铁闪锌矿样品的热容进行了实验测定,并讨论了定压摩尔热容实验值与实验温度的关系。实验结果表明,在实验条件下,含铁闪锌矿的定压摩尔热容与纯闪锌矿的定压摩尔热容存在显著差异,Fe置换Zn是造成这种差异的主要原因。 相似文献
46.
Dehydration-melting experiments were conducted on granulite and Al-gneiss,the two most representative rock-types of the khondalite series in the northern segment of the Helan Mountain.The critical melting fraction was determined to be 30% in volume,which is of great significance with respect to the P-T-t path of metamorphism and granite generation in the region. 相似文献
47.
48.
吉林中部石炭系出露较全,具有独特的区域大地构造环境,在吉林晚古生代褶皱带演化中具有特殊性。本文将吉中石炭系划分为6个岩石建造,每一建造各具特征,并以岩石建造为手段,进行区域大地构造分析,认为该区石灰纪是在弧后一大陆边缘基础上形成的裂谷一拗陷带的构造环境,具有由先期裂谷发展阶段转变为末期拗陷带的演化过程,从而表明该区石炭纪为一拉张的构造历史时期。 相似文献
49.
中国大陆科学钻探(CCSD)主孔地区岩石圈热结构 总被引:11,自引:2,他引:11
岩石圈热结构是指地球内部热量在壳幔的配分比例、温度以及热导率和生热率等热学参数在岩石圈中的分布特征。岩石圈的热结构直接影响着岩石的物理性质和流变学性质,同时还控制了化学反应的类型和速度,从而制约着岩石圈的发展和演化。本文在前人CCSD主孔岩石主、微量元素研究基础上,利用Rybach生热率公式计算了钻孔岩石的放射性生热率,并结合岩石热导率的测定研究了CCSD主孔100-2000m岩石的热结构和主孔榴辉岩在不同退变质程度下生热率、热导率的变化:钻孔中岩石的平均生热率为0.95μWm-3,平均热导率为2.96mWm-1K-1。,其中片麻岩生热率高迭1.01-1.7μWm-3,热导率为2.76-2.96mWm-1K-1;基性超基性岩石生热率最低(<0.21μWm-3),热导率则高达3.20mWm-1K-1以上;新鲜榴辉岩生热率、热导率居中,分剐为0.16-0.44μWm-3和3.31-3.85mWm-1K-1。钻孔中榴辉岩生热率、热导率变化主要受岩性控制:从新鲜榴辉岩到完全退变榴辉岩,热导率总体上降低,但从强退变榴辉岩到完全退变榴辉岩,岩石热导率升高;而在此过程中岩石生热率总体上升高,仅当从中等退变质榴辉岩退变为强退变质榴辉岩时,岩石生热率出现降低趋势。在综合研究的基础上预测CCSD主孔5000m深度处温度为139℃,温度范围为131-151℃。根据区域深部地球物理探测成果对CCSD主孔地区岩石圈热结构进行了研究:上地壳底部温度为256℃,中地壳底部温度为492℃,Moho面温度为683℃,岩石圈底部温度为1185℃,来自地幔的热流为44.1mWm-2,对地表热流的贡献率为58%。研究结果表明,由岩石物理方法获得的CCSD主孔地区岩石圈地温曲线与石榴石-二辉橄榄岩包体推断的中国东部地温曲线十分吻合,本文从实验岩石物理学角度为CCSD主孔地区岩石圈热结构研究提供了重要约束 相似文献
50.
地形对低空地转气流上重力惯性波稳定性的影响 总被引:3,自引:1,他引:3
研究指出,对西风地转气流,地形的南坡有利于重力惯性波的不稳定,北坡不利于波动的不 稳定发展;对东风气流,情况与此相反.重力惯性波不稳定的条件是(u+g~*A/f)~2≥g~*H. 相似文献