• Uranium 235 — the fuel inside a nuclear reactorundergoes nuclear fission.

    235——反应堆中的燃料——经过核裂变

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  • When you split a uranium 235 atom you will create what we call fission fragments.

    你们235原子分离的时候,创造我们称为裂变碎片的。

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  • Now first of all we're gonna talk about the fundamentals of the neutron capture and what happens in the neutron capture of a uranium 235 atom.

    现在首先我们谈论中子捕获基本原理,235原子的,中子捕获方面发生了什么

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  • A neutron striking a uranium 235 atom, releasing some gammas and some neutrons, creating two fission fragments which themselves have a distribution of occurrence.

    一个撞击235原子中子释放出一些γ,一些中子创造出2个裂变碎片,它们自己出现分布

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  • There are different kinds, or isotopes, of uranium, and the type used in nuclear power plants is called uranium-235, because these atoms are easiest to split in two.

    许多不同种类称同位素核电站所使用235一类因为这些原子容易一分为二。

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  • To make fuel for electricity-generating reactors, uranium is enriched to less than 5 percent of the isotope U-235.

    燃料做成电能反应堆浓缩U-235同位素含量5%以下。

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  • It is made up of old fuel rods that have become sufficiently depleted of uranium-235, the isotope that drives a reactor’s main chain reaction, to be no longer useful.

    燃料完全耗尽-235燃料棒组成反应堆的链式反应就是由铀-235激发的。

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  • It is necessary to enrich the fuel by increasing the percentage concentration of uranium-235.

    必须提高235浓度百分比使燃料浓集。

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  • Nuclear fission can only occur in some types of heavy and unstable nuclei such as in the uranium -235 and plutonium -239.

    核裂变只能某种类型不稳定核素内发生- 235钚- 239。

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  • The prime example is the element uranium (U), which occurs naturally as two isotopes-the lighter, fissionable U-235 and the heavier, non-fissionable U-238.

    U元素就是一个很好的例子天然铀有种同位素;较轻的负235可以裂变,重的铀238则不会裂变。

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  • In the mid 1940s the process to produce uranium - 235 was scaled up from lab to plant with a scale-up factor of 1061. Obviously this is a big risk, but so were the perceived returns.

    40年代中期生产u- 235工艺实验室规模工厂规模放大系数1061显然是个冒险不过收到大回报。

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  • In the mid 1940s the process to produce uranium - 235 was scaled up from lab to plant with a scale-up factor of 1061. Obviously this is a big risk, but so were the perceived returns.

    40年代中期生产u- 235工艺实验室规模工厂规模放大系数1061显然是个冒险不过收到大回报。

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