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BACK-END OF THE FUEL CYCLE - INDIAN SCENARIO

机译:燃油循环的后端-印​​度情景

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Nuclear power has a key role in meeting the energy demands of India. This can be sustained by ensuring robust technology for the back end of the fuel cycle. Considering the modest indigenous resources of U and a huge Th reserve, India has adopted a three stage Nuclear Power Programme (NPP) based on 'closed fuel cycle' approach. This option on 'Recovery & Recycle' serves twin objective of ensuring adequate supply of nuclear fuel and also reducing the long term radio-toxicity of the wastes. Reprocessing of the spent fuel by PUREX process is currently employed. High Level Liquid Waste (HL W) generated during reprocessing is vitrified and undergoes interim storage. Back-end technologies are constantly modified to address waste volume minimization and radio-toxicity reduction. Long-term management of HLW in Indian context would involve partitioning of long lived minor actinides and recovery of valuable fission products specifically cesium. Recovery of minor actinides from HLW and its recycle is highly desirable for the sustained growth of India's NPPs. In this context, programme for developing and deploying partitioning technologies on industrial scale is pursued. The partitioned elements could be either transmuted in Fast Reactors (FRs)/Accelerated Driven Systems (ADS) as an integral part of sustainable Indian NPP.
机译:核电在满足印度的能源需求方面具有关键作用。这可以通过确保在燃料循环后端使用可靠的技术来维持。考虑到U的本土资源有限且Th储量巨大,印度已采用基于“封闭式燃料循环”方法的三阶段核电计划(NPP)。 “回收和循环利用”的这一选择的双重目的是确保充足的核燃料供应,并减少废物的长期放射毒性。当前采用通过PUREX工艺对乏燃料进行后处理。在后处理过程中产生的高放废液(HL W)进行玻璃化并进行临时存储。不断对后端技术进行修改,以解决废物体积最小化和减少放射毒性的问题。在印度背景下,对高级别废物的长期管理将涉及对长寿命次要act系元素进行分区,并回收有价值的裂变产物,尤其是铯。从高放废物中回收次要act系元素并进行回收对于印度核电厂的持续增长非常必要。在这种情况下,追求用于在工业规模上开发和部署分区技术的程序。分区的元素可以在快速反应堆(FR)/加速驱动系统(ADS)中进行转换,作为可持续印度核电厂的组成部分。

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