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首页> 外文期刊>International Journal of Engineering & Technology >Nuclear policy-nuclear fuels for peaceful, safer co-generation and environmentally benign applications
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Nuclear policy-nuclear fuels for peaceful, safer co-generation and environmentally benign applications

机译:和平,更安全的公司和环境良好申请的核政策 - 核燃料

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Here, safer nuclear fuels which can sustain in the high temperature and fluence environment of the reactor core are investigated to utilize nuclear energy peacefully. At Nuclear Fuel Complex in Hyderabad, nuclear fuels are being manufactured which are best suited for high temperature and fluence environment of the reactor core even in accidental scenarios. In this paper, nuclear fuels manufactured at NFC, Hyderabad are presented. The developed nuclear fuels have higher equivalent hydraulic diameter and breeding capability to produce U^233. Nuclear fuels having higher equivalent hydraulic diameter reduce the reactor core temperature substantially. These fuels have negative temperature coefficient of reactivity. Thus, in case of an accident, the fuel temperature never exceeds the safety limit. Therefore, the thermal heat available across the secondary of a heat exchanger can be utilized for different industrial processes. This allows the development of key technologies, such as safer co-generation of electricity and Hydrogen. The Three-Stage Indian Nuclear Power Program has been explained for nuclear disarmament. The product Hydrogen gas has been utilized in many ways for different applications. Moreover, the processing of iron ore with the energy obtained from the IHX secondary side, eliminates the burning of coals and CO 2 emissions into the environment. Several radioisotopes have been developed for medical applications from spent fuel.
机译:这里,研究了能够维持在反应堆核心的高温和注速环境中的更安全的核燃料,并使核能平静地利用核能。在海德拉巴德的核燃料综合体中,正在制造核燃料,即使在意外情况下,也能够最适合对抗核心的高温和流量环境。本文提出了在Hyderabad的NFC中制造的核燃料。发达的核燃料具有更高的等效液压直径和育种能力,以产生U ^ 233。具有更高等效液压直径的核燃料基本上降低了反应器核心温度。这些燃料具有负温度的反应系数。因此,在发生事故的情况下,燃料温度永远不会超过安全极限。因此,热交换器中的次级可用的热量可用于不同的工业过程。这允许开发关键技术,例如更安全的电力和氢气产生。已经解释了三阶段印度核电计划以核裁军。产品氢气已经以许多方式用于不同的应用。此外,使用从IHX二级侧获得的能量的铁矿石的处理消除了煤炭和CO 2排放到环境中的燃烧。已经开发了来自废燃料的医疗应用的几种放射性同位素。

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