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The possibilities of obtaining long-range supplies of uranium, thorium, and other substances from igneous rocks

机译:从火成岩中获得铀,or和其他物质的长期供应的可能性

摘要

Most uranium and thorium which have been produced in the world thus far have been obtained from ores of relatively high grade. Such deposits are not very extensive and are found infrequently. When the high-grade deposits of these substances approach exhaustion, it may be that material containing these elements in low concentrations will be the ultimate source. An average granite contains about 4 ppm uranium and 12 ppm thorium. If all the uranium and thorium in 1 ton of average granite could be extracted and utilized by means of nuclear breeding, the energy output would be equivalent to that obtained by burning 50 tons of coal. Means are now available for relatively easy extraction of about one quarter of the uranium and thorium from average granite, with an energy profit per ton of rock processed equivalent to that obtained by burning 10 tons of coal. ududResults also indicate that a variety of both major and minor substances of industrial importance can be obtained as byproducts of uranium and thorium production from igneous rocks. The techniques required for extracting uranium and thorium from igneous rocks are wen within the realm of present mineral-dressing and industrial-chemical experience.
机译:迄今为止,世界上大多数铀和th都是从相对高品位的矿石中获得的。这种沉积物不是很广泛,很少发现。当这些物质的高级沉积物接近耗尽时,可能是含有低浓度这些元素的材料的最终来源。一个普通的花岗岩含有约4 ppm的铀和12 ppm的th。如果通过核育种可以提取和利用1吨普通花岗岩中的所有铀和th,则其能量输出将相当于燃烧50吨煤获得的能量输出。现在可以使用相对容易的方法从普通花岗岩中抽提约四分之一的铀和or,每加工一吨岩石所产生的能源利润就相当于燃烧10吨煤所获得的能源利润。 ud ud结果还表明,从火成岩中产生铀和or的副产品可以得到多种具有工业重要性的主要和次要物质。在目前的选矿和工业化学经验领域中,从火成岩中提取铀和or所需的技术是温床。

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