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对宝石在偏光镜检测中经常出现的消光异常现象做了总结和解析,以帮助检测者更淮确地判断宝石光性。  相似文献   
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The tectonically stable central highlands of Sri Lanka and its alluvial valleys are the source areas and sinks, respectively, for one of the most prolific Quaternary gemstone provinces in the world. However, the known 10Be/26Al cosmogenic‐nuclide‐determined low natural (preanthropogenic) denudation rates of 2–11 mm kyr?1, and resulting sediment fluxes, are grossly inadequate to deliver the vast throughputs of overburden required to concentrate the known gemstone deposits. Basin‐wide, unstable, slow‐moving channelized landslides and debris flows, aided by biotic factors, are the dominant mechanisms of mass‐wasting on hill‐slopes and bulk delivery of sediment to the alluvial valleys and fluvial networks. Channelization ensures modulated sediment transfer and run‐out during an erosional–depositional continuum. In a selected inventory of landslides, mobilized sediment volumes ranged from less than 1000 cubic metres to a maximum of ~800 000 cubic metres per event. Monsoonal rainfall (both cumulative seasonal and total daily thresholds) is the primary external factor, which interacts with colluvium thickness and steep slopes in triggering landslides. There are three to five ‘threshold’ rainfall events per year in the highlands that can be expected to generate landslides. They can occur under conditions of decreasing daily rainfall as the seasonal total rainfall increases. GIS databases show a very significant spatial overlap and direct causal linkage between several hundred landslide occurrences and the innumerable gem pits and mines in the catchments of the best known mining region of Sri Lanka. Landslide‐associated mass movements, besides providing significant numbers of gemstones to the alluvial valleys over time, are also a fundamental factor in the geomorphic evolution of the rugged central highland landscape. Rainfall‐driven landslide activity may be a natural geological response affecting erosional equilibrium in high‐relief tectonically stable terrains. Climatically forced base level changes will, over time, control sediment storage, removal or reworking in the valleys. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   
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宝石的透明度   总被引:2,自引:0,他引:2  
1 宝石透明度的含义与分类宝石透明度与矿物的一样,均是指其透过可见光波的能力,主要与它们对光的吸收强弱有关,其大小可用透射系数来说明。宝石与矿物的区别也是显而易见的。矿物透明度仅划分为透明、半透明和不透明三类,并以0-03mm厚的矿物薄片透光能力作为划分的依据。而透明度是评价宝石质量的标准之一,细分为透明、半透明、亚透明、微透明、不透明五类。2 宝石透明度的影响因素宝石透明度的划分无厚度标准,既可以是不同厚度的戒指,也可以是不同厚度的雕件、挂件。而厚度是影响宝石透明度的因素之一,同种材料的宝石,…  相似文献   
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